PRINCIPLES OF ORGANIC FARMING (WITH THEORY AND PRACTICALS)

authored by: E. Somasundaram, D. Udhaya Nandhini & M. Meyyappan
Language: English | Imprint: NIPA

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ISBN: 9789387973718 | Year of Publication: 2019 | Pages: 412
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Principles of Organic Farming is a practical oriented text to organic crop management that provides background information as well as details of ecology-improving practices. This book is meant to give the reader a holistic appreciation of the principles and importance of organic farming and to suggest ecologically sound practices that help to develop and maintain sustainable agriculture. This book represents a current and updated look at what we know about organic farming practices and systems, primarily from the Indian perspectives. This book is intended as a professional basic textbook for undergraduate level students and will specifically meet out the requirement of the students of organic farming being taught in all the agricultural universities across the globe. In addition, the purpose of this work is to spread the basic concepts of organic farming in order to; guide the production systems towards a sustainable agriculture and ecologically safe, obtain harmless products of higher quality, contribute to food security, generating income through the access to markets and improve working conditions of farmers and their neighborhoods. This book provides attention of one and all concerned to promote organic farming as a measure to provide the elites to posterity and to save our farm land that inherited from forefathers from being degraded and made in to wastelands through our excessive interventions.

E. Somasundaram, Professor and Head of the Department of Sustainable Organic Agriculture, Directorate of Crop Management, and PRO of Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India

D. Udhaya Nandhini, Post Doctoral Fellow, Centre of Excellence in Sustaining Soil Health, ADAC & RI, Tamil Nadu Agricultural University, Trichy,Tamil Nadu, India

M. Meyyappan B.Sc. (Ag.), M.Sc. (Ag.) Agronomy and Ph.D in Agronomy from Annamalai University, Annamalai Nagar, Chidambaram, Tamil Nadu 608 002, India

Foreword

Preface

Chapter 1: Exordium

Definition

Concepts of organic farming

Objectives of organic farming

Key Principles of Organic Agriculture

Principle of health

Principle of ecology

Principle of fairness

Principle of care

Benefits of organic agriculture

1. Provides multifunctional benefits

2. Biodiversity

3. Recycles plant nutrients

4. Employ, natural and biological control of pests and diseases

5. Integrates animal husbandry into the production system

6. Improves and conserve soil conditions

7. Lower negative environmental impacts

8. Better Water Quality

9. Stable soils – less prone to erosion

10. Carbon sequestration

Sustainability of organic farming

The organic agriculture techniques are known to be ecologically sustainable by:

Social sustainability

Economic sustainability

Organic versus conventional farming

Components of organic farming

Organic conversion challenges

A. Climate-related challenges to conversion

B. Social and cultural challenges to conversion

C. Economic challenges to conversion

Which crops to grow during conversion?

Criteria for crop selection during conversion

Characteristics of an ideal organic farm

a. The ecological goal

b. The social goal

c. The economic goal

Prospects of organic farming

Chapter 2: Scenario of Organic Farming

Historical Perspective of Organic Farming

Agriculture during the sangam age

Agricultural Implements

Land Preparation

Crops and Varieties

Seeds and Sowing

Cropping Systems

Weed Management

Soil Fertility

Irrigation Management

Plant Protection

Harvesting and Threshing

Developmental Era of Organic Farming

Era of Emergence (1924–1970) - Pre-World War II

Era of Development Post-World War II (1970–1990)

Era of Growth – Twenty first century

World Scenario of organic farming

Organic agricultural land

Global market

Africa

Asia

Europe

Latin America and the Caribbean

North America

Oceania

Indian scenario

Tamil Nadu scenario

Organic farming in Tamil Nadu

Chapter 3: Government Initiatives and Research Institutes

Government Initiatives and Research Institutes

Government Initiatives to Promote Organic Farming

i) National Project on Organic Farming

ii) Capital Investment Subsidy for Setting up of Organic InputsProduction

iii) National Project on Management of Soil Health and Fertility (NPMSHF)

iv) Network Project on OrganicFarming by ICAR

v) National Horticulture Mission

vi) Rashtriya Krishi Vikas Yojna

vii) ICAR Contribution in Promoting Organic Farming

viii) Paramparagat Krishi Vikas Yojana (PKVY)

Objectives

GoI Budget 2018-19 – Operation Green

Agencies and institutions related to organic farming

Chapter 4: Biodiversity and Organic Farming

The diversity of agro-ecosystems

a) Genetic Diversity

b) Species diversity

c) Ecosystem diversity

Methods of measuring Biodiversity

Important uses of biodiversity

Consumptiveuse value

Social values

Source of Food and Improved Varieties

Drugs and Medicines

Aesthetic and Cultural Benefits

Megacenters of biodiversity and hot spots

India’s biodiversity

Threats to biodiversity

a) Habitat Loss and Fragmentation

b) Disturbance and Pollution

c) Introduction of Exotic Species

d) Extinction of Species

Conservation of biodiversity

A. In situ Conservation Strategies

B. Ex-situ Conservation Strategies

Biodiversity conservation in India

Provisions of Act.

Functions of Authority

Agrobiodiversity

What is happening to agrobiodiversity?

100 years of agricultural change:Trends and figures related to agrobiodiversity

Organic agriculture and biodiversity

Conservation of cultivars and livestock breeds

Enhances Pollinator Populations

Enhances Bird and Beneficial Spider Populations

Enhances Natural Enemy Populations

Enhances soil biodiversity

Chapter 5: Good Agricultural Practices (GAP)

Risk Minimizing Measures following GAP

a) Pre-planting Measures

i. Site Selection

ii. Manure handling and field application

iii. Manure storage and sourcing

iv. Timely application of manure

v. Selection of appropriate crops

b) Production measures

i. Irrigation water quality

ii. Irrigation Methods

iii. Field sanitation

iv. Worker facilities and hygiene

c) Harvest Measures

i. Clean harvest Aids

ii. Worker hygiene and training

d) Post-harvest Measures

i. Worker hygiene

ii. Monitor wash water quality

iii. Sanitize packing house and packing operations

iv. Pre-cooling and cold storage

v. Transportation of produce from farm to produce

Chapter 6: Organic Sources of Plant Nutrients & Its Management

Properties of a fertile soil

Essential plant nutrients

Soil organic matter

Identifying sources of biomass

Feed the Soil Approach

Manures

Farmyard manure

Improving the value of farm yard manure

Sheep and Goat Manure

Poultry Manure

Concentrated organic manures

Other Concentrated Organic Manures

Compost

Why composting is necessary?

Advancing of Composting

The Phases of Composting Process

Methods of composting

The Benefits of Using Composts to Agriculture

A. Improves the Physical Properties of Soils

B. Enhances the Chemical Properties of Soils

C. Improves the Biological Properties of Soils

Economic and Social Benefits of Composting

Vermicomposting

Materials for preparation of vermicompost

Selection of suitable earthworm

Steps for vermicompost preparation

Coir pith composting

Sugarcane trash composting

Collection of trash

TNAU biomineralizer

Crop residue composting

Compost enrichment

Tricho-composting

Biofertilisers

Working Principles of Bio-fertilizer

Application of Biofertilizers

Seed treatment

Seedling root dip

Main field application

A. Nitrogen fixers

Rhizobium spp.

Uses

Methods to use

Azospirillum

Uses

Methods to use

Seed treatment

For transplanted crop

Seedling root tip

For trees

Azotobacter

Blue Green Algae

Uses

Method of application

Azolla

Uses

Method of application

B. Phosphate solubilizers

C. P Mobilizing Biofertilizers

Mycorrhizal fungi

Uses

Method to use

AM Inoculation

Advantages of Using Biofertilizers in Agriculture

Multi varietal seed technique (Navathaniyam)

1. Cereals: Any four crops under this category

2. Pulses: Any four crops under this category

3. Oilseeds: Any four crops under this category

4. Green manures: Any four crops under this category

5. Spices and condiments: Any four crops under this group

Green manuring

Benefits of using green manuring

Erosion

Deposition of Sediment

Compaction

Soil aggregation at the surface

Infiltration

Improved soil moisture

Soil Crusting

Nutrient Loss or Imbalance

Adding organic matter to the soil

Organic Matter

Biological Activity

Ameliorating problem soils

Fertility improvement of soils

Improvement in crop yield and quality

Improvement of soil tilth

Disease control

Addition of Nitrogen

Types of green manures

Legumes

Non Legumes

Selecting which green manures to use

Green manures

Cowpea (Vigna unguiculata)

Dhaincha (Sesbania aculeata)

Sesbania speciosa

Sunnhemp (Crotalaria juncea)

Manila agathi (Sesbania rostrata)

Wild indigo (Tephrosia purpurea)

Indigo (Indigofera tinctoria)

Pillipesara (Phaseolus trilobus)

Gliricidia (Gliricidia maculata)

Karanj (Pongamia glabra)

Calotropis (Calotropis gigantca)

Panchagavya – An effective on farm input

Method of preparation

Modified panchagavya

Method of preparation

Methods of application

As foliar spray

Through Flow/irrigation system

As Seed/seedling treatment

For seed storage

Enriched Panchagavya (for one acre quantity required 200 kg)

EM – Technology in organic farming

How to use EM

EM-1 formulation

EM-5 formulation for control of insects and pests

Fermented Plant Extracts (FPE)

Application of EM formulations

EM- Bokashi

Biogas slurry applications

Conservation Tillage

No-Till

Strip-Till

Agro-industrial wastes

Types of agro-industrial wastes

Agricultural residues

When Crop Residue Incorporated in to Field it Helps in Improving

Crop residue management

Mulching

Animal feed

Composting

Crop Rotation

Chapter 7: Organic Crop Protection

Insect management

Components of organic insect management

1. Preventive practices

2. Habitat diversification

Intercropping system

Trap cropping

Ecological engineering

Ecological engineering for pest management Above ground

Ecological engineering for pest management – Below ground

3. Cultural practices

Crop rotation

Organic manure

Depth and Timing of Seeding

Water Management

Tillage

Summer ploughing

Companion Planting

Biofumigation

4. Physical control

A. Manipulation of temperature

B. Manipulation of moisture

C. Manipulation of light

D. Manipulation of air

E. Use of irradiation

Use of greasing material

Bird perches

Rope method

Use of effigies

Use of Abrasive dusts

5. Mechanical control

Mechanical force

Mechanical exclusion

Appliances in controlling the pests

6. Biological control

Techniques in biological control

Important conservation measures are

Qualities of a Successful Parasitoid in Biological Control Programme

Trichogramma

Predators and Predatism

Insect predator qualities

Predatism

Beneficial insects

Scavengers

Red Ants for control of tea mosquito

Rearing of red ants

Wild birds

The black-kneed capsid

Lacewings

Ladybird beetle

Carabid beetles

Mites and spiders

Wasps

Microbial control

Properties of Bt

7. Farmers wisdom in pest management

Community level practices

8. Use of plant products / botanicals

Use of Cycas flowers

Five leaf extract

In a mud pot, any five of the below mentioned plant leaves pound well

To this add

Turmeric rhizome extract

Cow dung extract

Fermented curd water

Herbal Pesticide formulation

Neem-cow urine extract

PUSH-PULL strategy for insect pest management

How push-pull strategy works

Benefits of push-pull strategy

Disease management

What Organisms Causes Disease?

What types of symptoms can you expect from these organisms?

Principles of Plant Disease Control

1. Preventive practices

2. Cultural Control

A healthy crop

Choice of tolerant or resistant crops and varieties

Field hygiene and sanitation

Eradication of alternate and collateral hosts

Choice of geographic area

Dry areas

Disease History

Soil Drainage

Selection of field

Crop rotation

Manures

Mixed cropping

Soil amendments

Plant spacing

Irrigation

Amount of irrigation

Soil pH

Rouging

Compost application

3. Physical methods

Hot water treatment

Mulching

4. ITK in disease control

Weed management in organic farms

What Weeds are doing in my field beyond competition?

Weeds are an indicator of a soil’s health

1. Weed Management during Transition

2. Preventive methods: Preventing or denying establishment or entry of a new weed species into an area

3. Cultural or Agronomic methods

Field Preparation

Pasturing

Sowing time and density

Planting in narrow rows

Planting direction

Plant density

Planting Method

Stale seed bed

Cover Crop

Intercropping

Crop rotation

Choice of crops and varieties

Water management techniques

Pre-germination of weeds

Planting to moisture

Buried drip irrigation

4. Eradicative method (Physical method)

Deep digging

Hand weeding

Hand hoeing

Digging

Mowing

Cutting

Dredging and Chaining

5. General techniques

6. Mulching

Living mulch

Organic mulches

Pebble mulch

7. Mechanical methods

8. Thermal weed control methods

Flamers

Freezing

Infrared Weeders

Soil solarization

9. Biological methods

Bioherbicide approach

10. Naturally occurring bio herbicides

Allelopathy in bio-control programmes

What other factors might need to be taken into account?

11. ITK’s in weed management

12. Navathaniyam

Control of Nut grass weed in the crop field

13. Recent approaches

14. Herbicide / Kalaikolli

Nematode management

The nematode control methods are

1. Regulatory control

Exclusion

2. Cultural control

Selection of healthy seed material

Adjusting the time of planting

Fallowing

Deep summer ploughing

Manuring

Flooding

Trap cropping

Antagonistic crops

Removal and destruction of infected plants

Use of resistant varieties

3. Physical control

Heat treatment of soil

Hot water treatment of planting material

Washing process

Seed cleaning

4. Biological control

For the control of Root knot nematodes: Meloidogyne incognita & M. enterolobii

Predacious fungi

Non-constricting rings

Endozoic fungi

Rodent and bird pests management

Rat control

Eli viratti (Rat control)

Eli kattuppaduthuthal (Rat control)

Neekalpoduthal (Rat control in rice field)

Rat control method in coconut

Extract of Ipomoea fistulosa

Rat control in field

Birds perching sticks

Prevention of Rodents

Control of Field Rats

Using Mud pots

Paravaithangi (Bird perch)

Tying palmyra fronds

Tying unused recordable tapes

Tying polythene sheet and beating drums

Use of small flags

Inverted coconut fronds

Owl perches

Bird scaring in maize using tin and stick

Wild boar control

Chapter 8: ITK’s in Organic Farming

Indigenous Technical Knowledge (ITK)

Rational and Principles of ITK’s

Soil and water management

Preparatory cultivation

Manures and manuring

Weed management

Pest and disease management

Storage Pest Management

Rainfall

Chapter 9: Organic Crop Production Techniques

General guidelines for Organic Crop Production

Choice of crops and varieties

Conversion period

Diversity in crop production

Manurial Policy

Pests, diseases and weed management

Pest and disease control

Weed control

Contamination control

Soil and water conservation

Organic Crop Production Techniques

Rice

Pulses

Redgram

Blackgram

Cowpea

Banana

Mango

Vegetables

Brinjal

Cucurbits

Snake Gourd

Ribbed Gourd

Bitter Gourd

Pumpkin

Bottle Gourd

Cabbage

Tuber crops

Radish

Beetroot

Carrot

Potato

Aromatic crops

Red Oleander

Pepper

Cardamom

Garlic

Coconut

Ginger

Chapter 10: Integrated Organic Farming System

The following strategies should be followed for adoption of integrated organic farming

1. Site Selection/land consolidation

2. Cooperative/community approach

3. Availability of organic inputs

4. Selection of crops and cultivars

5. Quality of organic inputs

6. Cropping system approach

7. Developmental and promotional activities

8. Certification and accreditation

9. Sales and marketing

10. Subsidize organic inputs and produce

11. Develop organic farming clusters of villages

12. Increase public awareness and build capacity

Design of integrated farming system model

Before you start your design

Characteristics of an ideal integrated organic farm

The ecological goal

Important environmental goals are:

The social goal

Important social goals include

The economic goal

Important economic goals include

Strategies to improve long-term productivity of the integrated organic farm

Integrated organic Farm Model using 2.5 acres (1.0 ha) land

Challenges

Benefits of integrated organic farming system

Usefulness of Organic Farming in the context of System Approach

Chapter 11: Organic Certification and Legislation of Organic Food

Purpose of certification

The certification process

National Programme on Organic Production

National Standards for Organic Production (NSOP)

Conversion Requirements

Crop production

Food processing and handling

Packaging

Labelling

Storage and transport

General requirement for certification

Application for certification

Review of application

Scheduling of inspection

Verification during inspection

Continuation of certification

Fair trade

Appeal

Initiating organic farming

1. Development of organic farming practices

2. Imparting training on organic farming

3. Identification of areas and villages for organic farming

4. Facility creation for organic farmers

5. Organic certification

Participatory Guarantee System

Guiding Principles for Organic Participatory Guarantee System In tune with the international trends and IFOAM’s PGS Guidelines,

1. Participation

2. Shared Vision

3. Transparency

4. Trust

5. Horizontality

National networking

Advantages of PGS over third party certification system

Limitations of PGS

Operational Structure

Organic Food Regulations in India

Objectives

India Organic Logo- Certification mark of NPOP

PGS-India Organic Logo- Certification mark of PGS-India

Food Safety and Standards (Organic Foods) Regulations, 2017

Salient Features of the Food Safety and Standards (Organic Foods) Regulations, 2017:

Chapter 12: Post Harvest Management of Organic Produces

Maturity index for fruits and vegetables

a) Skin colour

b) Optical methods

c) Shape

d) Size

e) Aroma

f) Fruit opening

g) Leaf changes

h) Abscission

i) Firmness

j) Juice content

k) Sugars

m) Acidity

Planning for Postharvest Quality

Influence of Pre-harvest Factors on Postharvest Quality

a) Soil Factors

b) Nitrogen

c) Phosphorus and Potassium

d) Calcium

e) Soil Texture

f) Irrigation

g) Insect Pests

h) Selection of Vegetable Varieties

i) Other Production Considerations

Harvest Handling

Harvesting time

Local weather conditions could affect the harvesting time

Harvesting technique and operations

Fruits

Plucking methods vary according to the kind of produce being harvested:

Vegetables

Flower structure vegetables

Root and tuber crops

Post-harvest transport

Field and farm transport

Transport from the farm

Postharvest handling

Packing and packaging materials

Cardboard and paper

Plastic

Glass

Metal

Storage

Storage potential

Organs of survival

Edible reproductive parts

Fresh fruits and vegetables

Recommended storage temperatures

Marketing

What is value addition?

What is value added agriculture?

Need for value addition

Market forces for product differentiation and value addition

Horticulture as a mean for value addition

Value addition as new product development

Some of the areas of achievement

Choice for value addition

Chapter 13: Problem Soil Reclamation

Multi Varietal seeds sowing techniques

Crop mixture for sowing

Under normal soil conditions

Under inert / dead soil conditions

Methodology

Soil management

Different methods for soil conservation

Problem soils

Physical problems

Slow permeable soils

Management

Excessively Permeable Soils

Management

Sub soil hardening /hard pan

Management

Surface crusting

Management

Fluffy paddy soils

Shallow soils

Saline soils

Management of saline soils

1. Crop management

2. Soil/cultural management

3. Fertilizer Management

4. Irrigation management

Sodic soils

Reclamation of sodic soils

Physical

Biological

Chapter 14: Organic Agriculture and Climate Change

The emission reduction potential of Organic Agriculture

The sequestration potential of Organic Agriculture

Mitigation

Adaptation

Annexures

Annexure 1: Certification Agencies In India

Annexure 2: Traditional Crop Varieties

Annexure 3: Traditional Livestock Breeds

Colour Plates

Index

0 Start Pages

Preface The quantitative sufficiency of food in our country has led into think the maintenance of soil health and crop husbandry techniques, which maintain the nature’s balance. Organic agriculture (OA) can be seen as pioneering efforts to create sustainable development based on other principles than mainstream agriculture. Practices of organic farming are resilient and becoming increasingly important due to pressing needs to protect the air, soils, and water; to improve socioeconomic conditions of farmers, farm workers, and rural communities; and to provide healthy, safe, and nutritious horticultural products to a rapidly increasing world population. Organic agriculture has always been India’s inherent advantage and strength. The shift in the global consumption patterns, health awareness among the consumers and the increasing significance of sustainability is now putting Indian organic products to the forefront both internationally as well as in the domestic market. Principles of Organic Farming is a practical oriented text to organic crop management that provides background information as well as details of ecology-improving practices. This book is meant to give the reader a holistic appreciation of the importance of organic farming and to suggest ecologically sound practices that help to develop and maintain sustainable agriculture. This book represents a current look at what we know about organic farming practices and systems, primarily from the Indian perspectives. This book is intended as a professional basic textbook for undergraduate level students and will specifically meet out the requirement of the students of Organic Farming being taught at many of the universities. In addition, the purpose of this work is to spread the basic concepts of organic farming in order to; guide the production systems towards a sustainable agriculture and ecologically safe, obtain harmless products of higher quality, contribute to food security, generating income through the access to markets and improve working conditions of farmers and their neighbourhoods. This book provides attention of one and all concerned to promote organic farming as a measure to provide the elutes to posterity and to save our farm land that inherited from forefathers from being degraded and made in to wastelands through our excessive interventions. The authors thank Dr. K. Ramasamy, then Vice-Chancellor, Tamil Nadu Agricultural University for providing necessary guidelines for bringing out this book. The authors thank their family members for their help, physical and moral support for their sincere efforts in bringing out this book in time.

 
1 Exordium

Organic farming system in India is not new and is being followed from ancient time. It is a method of farming system which primarily aimed at cultivating the land and raising crops in such a way, as to keep the soil alive and in good health by use of organic wastes (crop, animal and farm wastes, aquatic wastes) and other biological materials along with beneficial microbes (biofertilizers) to release nutrients to crops for sustainable production. Presently the farming situation urges need to develop farming techniques, which are sustainable from environmental, production, and socio-economic points of view. Modern agricultural production throughout the world does not appear to be sustainable in the long run. Sustainable agricultural development “is the management and conservation of the natural resource base and the orientation of technological and institutional change in such a manner to assure the attainment and continued satisfaction of human needs for the present and future generations”. Such sustainable development in the agriculture, forestry and fishery sectors, conserves land, water, plant and animal genetic resources, is environmentally non-degrading, technically appropriate, economically viable and socially acceptable. Consequently these concerns imparted a way to organic farming. It is the need of the day to understand the prospects and problems of organic farming to launch a successful and flawless organic production programme in the farm environment. There are many explanations and definitions for organic agriculture but all converge to state that it is a system that relies on ecosystem management rather than external agricultural inputs. It is a system that begins to consider potential environmental and social impacts by eliminating the use of synthetic inputs, such as fertilizers and pesticides, veterinary drugs, genetically modified seeds and breeds, immunity booster preservatives, additives and irradiation. These are replaced with site-specific management practices that maintain and increase long-term soil fertility and prevent pest and diseases.

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2 Scenario of Organic Farming

Agriculture in India is not of recent origin, but has a long history dating back to Neolithic age (7500–6500 B.C). It changed the life style of early man from nomadic hunter of wild berries and roots to cultivator of land. Agriculture is benefited from the wisdom and teachings of great saints. The wisdom gained and practices adopted have been passed down through generations. The traditional farmers have developed the nature friendly farming systems and practices such as mixed farming, mixed cropping, crop rotation etc. The great epics of ancient India convey the depth of knowledge possessed by the older generations of the farmers of India. The modern society has lost sight of the importance of the traditional knowledge, which had been subjected to a process of refinement through generations of experience. The ecological considerations shown by the traditional farmers in their farming activities are now a days is reflected in the resurgence of organic agriculture. Historical Perspective of Organic Farming The available ancient literature includes the four Vedas, nine Brahnanas, Aranyakas, Sutra literature, Susruta Samhita, Charaka Samhita, Upanishads, the epics Ramayana and Mahabharata, eighteen Puranas, Buddhist and Jain literature, and texts such as Krishi-Parashara, Kautilya’s, Artha-sastra, Panini’s Ashtadhyahi, Sangam literature of Tamils, Manusmirit, Varahamihira’s Brahat Samhita, Amarkosha, Kashyapiya-Krishisukti and Surapala’s Vriskshayurveda. This literature was most likely to have been composed between 6000 B.C. and 1000 A.D. The information related to the biodiversity and agriculture (including animal husbandry) is available in these texts. Rig-Veda is the most ancient literary work of India. It believed that Gods were the foremost among agriculturists. According to ‘Amarakosha’, Aryans were agriculturists. Manu and Kautilya prescribed agriculture, cattle rearing and commerce as essential subjects, which the king must learn. According to Patanjali the economy of the country depended on agriculture and cattle-breeding. Plenty of information is available in ‘Puranas’, which reveals that ancient Indians had intimate knowledge on all agricultural operations. Some of the well known ancient classics of India are namely, Kautilya’s‘Arthashastra’; Panini’s ‘Astadhyayi’; Patanjali’s ‘Mahabhasya’; Varahamihira’s ‘Brahat Samhita’; Amarsimha’s ‘Amarkosha’ and Encyclopedic works of Manasollasa. These classics testify the knowledge and wisdom of the people of ancient period. Technical book dealing exclusively with agriculture was Sage Parashara’s ‘Krishiparashara’ in 1000 A.D. Other important texts are Agni Purana and Krishi Sukti attributed to Kashyap (500 A.D.).

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3 Government Initiatives and Research Institutes

The Tenth Five Year Plan (GoI 2002), for 2002 through 2007, has put emphasis on natural resource management through rainwater harvesting, groundwater recharging measures and controlling groundwater exploitation, watershed development, treatment of waterlogged areas. With regard to application of agricultural inputs like fertilizer and pesticides, the Plan stated that factors such as imbalanced use of nitrogenous (N), phosphatic (P) and postassic (K) fertilisers, increased deficiency of micronutrients and decreased soil organic carbon would be addressed through a holistic agri-environmental approach stressing Integrated Plant Nutrient and Pest Management. Further, the Tenth Plan document recognizes organic farming as a ‘thrust area’ in the sustainable use and management of resources in agriculture. The trajectory of Indian agriculture and its associated environmental problems has brought about recognition that future agricultural growth and productivity will have to occur simultaneously with environmental sustainability. The environmental challenges, especially in terms of land degradation and groundwater depletion, water logging and excessive use of chemical inputs are posing problems for the future of Indian agriculture. To address the problems, policies have laid emphasis on promoting sustainable agriculture including organic farming. Differential approaches and policy instruments, however, will be required to address these problems. The shift from input-intensive to sustainable, particularly organic farming is a difficult task as it involves a number of policy measures dealing with a variety of issues ranging from the transfer of information and technology to the development of markets. Another difficult task, and perhaps more difficult, relates to marginal and small farmers – which comprise a substantial part of Indian agriculture. Although these marginal and small farmers have been considered organic by ‘default’, severe resource constraints make a shift to the modern sense of organic farming prohibitive. The Indian government has been undertaking measures to promote organic farming with the aim to improve soil fertility and help to double the farmers’ incomes by the year 2022. The Prime Minister had visited Sikkim—which is India’s first organic state—and encouraged other states to replicate the “Sikkim model”. Some of the policy initiatives to promote organic farming and exports include development of an organic regulation for exports by the Agricultural and Processed Food Products Export Development Authority (APEDA), removal of quantitative restriction on organic food exports, providing subsidies to farmers under the Paramparagat Krishi Vikas Yojana (PKVY) in partnership with the state governments, and other schemes such as the Mission Organic Value Chain Development for North Eastern Region. Despite these initiatives, a recent survey-based study covering 418 organic farmers across different states of India suggests that a move to organic farming methods may not be that easy and organic farmers are not getting the expected premium price for their produce.

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4 Biodiversity and Organic Farming

The word biodiversity refers to the variety of living organisms (flora and fauna). Biodiversity or Biological diversity is defined as the variability among all living organisms from all sources, including terrestrial, marine and other aquatic ecosystems and ecological complexes of which they are part. Wilson, 1988 defined ‘Biological diversity’ or ‘biodiversity’ as that part of nature which includes the differences in genes among the individuals of a species, the variety and richness of all the plant and animal species at different scales in space i.e. local, regional, country wise and global, andvarious types of ecosystems- both terrestrial and aquatic-within a defined area. The diversity of agro-ecosystems Biological diversity deals with the degree of nature’s variety in the biosphere. This variety can be observed at three levels i.e., genetic, species and ecosystem. a) Genetic Diversity Genetic diversity refers to the variation at the level of individual genes. Tremendous amount of genetic diversity exists within individual species. This genetic variability is responsible for the different characters in species. Genetic diversity is the raw material from which new species arise through evolution. Today, the genetic diversity is made use to breed new crop varieties, disease resistant crops. Organic producers, on the other hand, are looking for varieties that are suited to their local climatic and soil conditions and are not susceptible to disease and pest attack. Research has shown that in general these characteristics are more likely to be found in the older native cultivars. For example, conventional wheat grown in an organic system will have reduced protein content, whereas the selection of a variety suitable for the particular growing conditions will provide higher protein, and thus higher baking quality wheat to be grown. Research has also indicated that yields and disease resistance are better in native cultivars as opposed to modern varieties for vegetables (tomato, cucumber and melon) grown in an organic system.

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5 Good Agricultural Practices (GAP)

The increasing awareness of the deleterious effects of indiscriminate use of artificial inputs in agriculture such as chemical fertilizers and pesticides hasled to the adoption of organic farming as an alternative method for conventional farming. Farmers are adopting organic farming due to the advantages like, It is self-sustaining and socially and ecologically superior over the conventional farming. It makes use of cost effective management practices involving the use of farm inputs produced within the farm. It is less expensive. It is environment friendly as there is no pollution of soil and water. It enriches the soil and the local ecology. The produce is free of contamination from chemical residues has better taste, flavour and nutritional value. Seeds have more vitality and are good for successive generations. Growing markets for safe food

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6 Organic Sources of Plant Nutrients & Its Management

Soil is a living system and soil fertility is the key to agricultural productivity. Any input that destroys this living system and undermines soil health basically undermines the agricultural productivity. The maintenance of the fertility of soil is the primary step in any permanent system of agriculture. Fertile land and sufficient water are vital for sustaining agriculture and livelihoods. Fertility of a soil is defined by its ability to provide all essential nutrients in adequate quantities and in the proper balance for the growth of plants – independent of direct application of nutrients – when other growth factors like light, temperature and water are favorable. This ability does not depend on the nutrient content of the soil only, but on its efficiency in transforming nutrients within the farm’s nutrient circle. In transformation of nutrients soil organisms play a key role. They break down biomass from crop residues, green manures and mulch and contribute to build up of soil organic matter, including humus, the soil’s most important nutrient reservoir. They also play an essential role in transferring nutrients from the soil organic matter to the mineral stage, which is available to plants. Soil organisms also protect plants from disease and make the soil crumbly. A fertile soil is easy to work, absorbs rainwater well, and is robust against siltation and erosion. It filters rain water and supplies us with clean drinking water. It neutralizes (buffers) acids, which pass through contaminated air to the soil surface, and decomposes pollutants such as pesticides rapidly. And last but not least a fertile soil is an efficient storage for nutrients and CO2. In this way a fertile soil prevents the eutrophication of rivers, lakes and oceans and contributes to the reduction of global warming. In the context of biological agriculture soil fertility is thus primarily the result of biological processes, not of chemical nutrients. A fertile soil is in active exchange with the plants, restructures itself and is capable of regeneration. The biological properties can be observed in the soil’s conversion activity, in the presence and the visible traces of the organisms in it. The communities of microorganisms are robust and active at the right moment. In the self-regulating ecological equilibrium animals, plants and microorganisms all work for each other. It is the responsibility of farmers to understand soil ecology to the point that they can create or restore the conditions for a robust balance in the soil. If a soil does not regularly bring good yields, farmers should investigate the reasons for it.

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7 Organic Crop Protection

From an ecological perspective all organisms are part of nature, irrespective of what they do. To a farmer, all organisms that reduce the yields of their crops are considered pests, diseases or weeds. Insects, birds or other animals are also pests whenever they cause damage to crops or stored produce. Fungi, bacteria and viruses are also recognized as disease causing organisms when they lead to conditions that interrupt or modify the vital functions of growing plants or stored produce. All unwanted plants that grow within crops and compete with them for nutrients, water and sunlight are considered weeds. Such plants can also be hosts for pests and diseases.Presence of these organisms in crop fields is not a problem until their numbers increase beyond a level where they attack, and cause substantial reductionin field crop yields or quality of harvested and stored produce. The organic approach to plant pest, plant disease and weed management makes reference to the four principles of organic agriculture: the principle of health, the principle of ecology, the principle of fairness, and the principle of care. Generally, organic farmers aim at sustaining and enhancing the health of their soils, plants, animals, humankind and—in the widest sense—the planet. The health of individuals and communities cannot be separated fromthe health of ecosystems. Therefore, by providing healthy soils and a diversified natural environment, farmers are able to produce healthy crops that foster the health of animals and people. Healthy plants are also able to resist and tolerate physiological disruption and damage from disease-causing organisms and pests. Thus, organic farmers aim at optimizing the growing conditions for their crops to make them strong and competitive. At the same time they encourage natural control mechanisms to prevent pests, diseases and weeds to develop in a way that they cannot damage the crops. They, therefore, give priority to preventive measures to prevent and limit the spread of infections, instead of relying on direct control measures. Direct control measures are mainly applied when pathogens have already developed.

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8 ITK’s in Organic Farming

Agricultural scientists and policy makers have understood that continuation of modern agriculture might lead to severe ecological and economic problems. We are also convinced that modern agriculture may not be able to meet the requirements of the ever increasing population in the future. So, we are searching for alternative technologies. Several alternatives have been proposed such as low external input agriculture, sustainable agriculture, organic farming, biodynamic farming etc. However, they require, some times little or considerable external inputs whose availability may be uncertain in future. Hence for the developing countries, the other alternative viz., traditional methods have special advantages over modern agricultural techniques. Also the capital and technological skill requirements in the use of traditional technologies are generally low and their adoption often requires little restructure of the traditional societies. The traditional technologies are nothing but indigenous technical knowledge. By adopting such indigenous knowledge, our ancestors did not face any problem of large-scale pest out break or economic crisis unlike the today’s farmers.

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9 Organic Crop Production Techniques

Organic farming is a crop production method respecting the rules of the nature, targeted to produce nutritive, healthy and pollution free food. It maximizes the use of on -farm resources and minimizes the use of off – farm inputs. The general guidelines on organic production of crops are prepared based on National Programme for Organic Production (NPOP) launched by Government of India. These guidelines enable the growers to attain more or less the same level of the productivity of conventional farming within a few years and at the same time maintain the fertility of the soil and protect the ecological balance.

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10 Integrated Organic Farming System

Farming system approach addresses itself to each of the farmer enterprises; inter relationship among enterprises and between the farm and environment. Thus farming system research has the objective of increasing productivity of various enterprises in the farm. Farming system approach introduces a change in farming technique for high production from a farm as a whole with the integration of all the enterprises. The farm produce other than the economic products for which the crop is grown can be better utilized for productive purposes in the farming system approach. A judicious mix of cropping system with associated enterprises like dairy, poultry, piggery, fishery, sericulture etc. suited to the given agro-climatic conditions and socio economic status of farmers would bring prosperity to the farmer. Combination of Integrated farming system (IFS) along with organic farming so called integrated organic farming system (IOFS)appear to be the possible solution to the continuous increase of demand for food production, stability of income and improvement of nutrition for the small and marginal farmers with limited resources. Integration of different enterprises with crop activity as base will provide ways to recycle products and waste materials of one component as input through another linked component and reduce the cost of production of the products which will finally raise the total income of the farm. This becomes quite essential as crop cultivation is subjected to a high degree of risk and provides only seasonal, irregular and uncertain income and employment to the farmers. With a view to mitigate the risk and uncertainty in agriculture, IOFS serves as an informal insurance. Production of agricultural crops, vary in response to changes of the seasons. In the recent period stable income of agricultural crops has become unstable. Redressing these by integrating crops with agro-based industries like livestock farming is essential. An integrated organic farming system applies the concept of “Low External Input Sustainable Agriculture” (LEISA) and this system develops the livestock business and the crop business in one location or area using local resources to optimize inputs. Designing a farming system to tie together principles of sustainability and productivity is complex. Organic farmers must consider how the various components of their system - rotations, pest and weed management, and soil health - will maintain both productivity and profitability. This section outlines the major principles incorporated into organic farming systems.

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11 Organic Certification and Legislation of Organic Food

In general, any business directly involved in food production can be certified, including seed suppliers, farmers, food processors, retailers and restaurants. Requirements vary from country to country, and generally involve a set of production standards for growing, storage, processing, packaging and shipping organic certification ensures: Avoidance of synthetic chemical inputs (e.g. Fertilizer, pesticides, antibiotics, food additives, etc) and genetically modified organisms; Use of farmland that has been free from chemicals for a number of years (often, three or more); Keeping detailed written production and sales records (audit trail); Maintaining strict physical separation of organic products from non-certified products and Undergoing periodical on-site inspections. In some countries, certification is overseen by the government, and commercial use of the term organic is legally restricted. Certified organic producers are also subject to the same agricultural, food safety and other government regulations that apply to non-certified producers.

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12 Post Harvest Management of Organic Produces

Optimal quality organic produce that combines the desired textural properties, sensory shelf-life, and nutritional content results from the careful implementation of recommended production inputs and practices, careful handling at harvest, and appropriate postharvest handling and storage. This section will focus on an overview of general postharvest handling considerations unique to the marketing of registered or certified organic produce. Maturity index for fruits and vegetables The principles dictating at which stage of maturity a fruit or vegetable should be harvested are crucial to its subsequent storage and marketable life and quality. Post-harvest physiologists distinguish three stages in the life span of fruits and vegetables: maturation, ripening and senescence. Maturation is indicative of the fruit being ready for harvest. At this point, the edible part of the fruit or vegetable is fully developed in size, although it may not be ready for immediate consumption. Ripening follows or overlaps maturation, rendering the produce edible, as indicated by taste. Senescence is the last stage, characterized by natural degradation of the fruit or vegetable, as in loss of texture, flavour, etc. (senescence ends at the death of the tissue of the fruit). Some typical maturity indexes are described in following sections.

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13 Problem Soil Reclamation

Regeneration capacity of the soil is enhanced with the sowing of MVS which provides ideal condition for regeneration. It creates green cover / dry leaf cover in the top soil (35-40 cm height) which will facilitate the multiplication of inoculated beneficial microbes in the soil. Multi Varietal seeds sowing techniques MVS contains seeds of three to four crops belonging to each category viz., cereals, pulses oilseeds, nitrogen fixing green manures and spices and condiments. The seeds of above crops may be mixed in different proportion based on their growth habit and seasonal requirement. For example in the summer the following mixture can be practiced with each of 1-1.5 kg each.

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14 Organic Agriculture and Climate Change

Climate change mitigation is urgent, and adaptation to climate change is crucial, particularly in agriculture, where food security is at stake. The gases contributing to the greenhouse effect mainly include carbon dioxide (CO2), nitrous oxide (N2O) and methane (CH4). These gases have varying global warming potentials, which can be expressed in CO2 equivalents. Agriculture, currently responsible for 2030% of global greenhouse gas emissions (counting direct and indirect agricultural emissions), can however contribute to both climate change mitigation and adaptation. The main mitigation potential lies in the capacity of agricultural soils to sequester CO2 through building organic matter. This potential can be realized by employing sustainable agricultural practices, such as those commonly found within organic farming systems. Examples of these practices are the use of organic fertilizers and crop rotations including legume leys and cover crops. Mitigation is also achieved in organic agriculture through the avoidance of open biomass burning, and the avoidance of synthetic fertilizers, the production of which causes emissions from fossil fuel use. Organic agriculture is associated with higher carbon sequestration as many organic practices help to improve soilquality and carbon sequestration. The most common organic practices that increase soil organic carbon are the use of organic fertilizers (such as the composted waste products from livestock husbandry), crop rotation involving legumes and the planting of cover crops. Organic farming offers several ways to mitigate climate change when compared to conventional agriculture: Primarily, organic farming, through its key practices of organic fertiliser use and crop rotations with forage legumes, tends to increase soil organic carbon levels resulting in carbon sequestration.This contributes to climate change mitigation, as it absorbs CO2 from the atmosphere and stores the additional carbon in the soil. However, depending on soil type and climatic conditions, this process usually comes to a halt after some decades, when soil organic carbon levels have reached a new equilibrium and soils arethus saturated with respect to organic carboncontents. Furthermore, this storage of organiccarbon is reversible and the carbon can again be released into the atmosphere as carbon dioxide when switching to unsustainable practices.

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15 End Pages

Annexure 1: Certification Agencies In India IMO Control Pvt. Ltd. Mr. Umesh Chandrasekhar Director No. 1314, Double Road Indiranagar 2nd Stage Bangalore-560 038. (Karnataka) Tel.: 080-25285883, 25201546Fax: 080-25272185 Email:imoind@vsnl.com Bureau Veritas Certification India Pvt.Ltd. (Formerly Known as BVQI (India) Pvt. Ltd.) Mr. R. K. Sharma Director Marwah Centre, 6th Floor Opp. AnsaIndustrial Estate Krishanlal Marwah Marg Off Saki-Vihar Road Andheri (East) Mumbai-400 072 (Maharashtra) Tel.: 022-56956300, 56956311 Fax No. 022-56956302 / 10 Email: scsinfo@in.bureauveritas.com

 

organic farming, educational text, crop management, ecology-improving practices, sustainable agriculture, ecologically sound practices, indian perspective, undergraduate students, food security, high-quality products, farmers' working conditions, farmland preservation, degradation prevention, community support, future generations

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