Thursday, July 30, 2015
Excelling the PAIN
Saturday, February 21, 2015
Earthworms – Heroes of Organic Farming
Earthworms are hermaphrodites. Each worm has both male and female organs. They are small tube like organisms who tirelessly work to turn the earth from lowest strata of earth to top. Worms tunnel deeply in the soil and bring subsoil closer to the surface mixing it with the topsoil. This makes the formation of multitude of linear tunnels minute in diameter but deeper below the subsurface. These tunnels last long even after the worms are dead. These tunnels facilitate infiltration of water into subsurface, reduce runoff, help in harvesting rainwater. Such stored moisture is slowly released to crop at summer season. In this process of tunneling it also maintains the soil structure and enables the processes of aeration. This act makes EARTHWORM as a Real Farmer who toils day long tilling the fields. In the fields of organic cultivation we could see the reserve moisture throughout the year. The latent hard work of a large number of worms helps the crop survive when the other areas are parched.Earthworms live on what we call WASTE. Yes, they feed on the vegetable wastes we throw; leaves shed from trees and any form of organic matter available in soil, and living organisms such as nematodes, protozoans, rotifers, bacteria, fungi which are harmful to plant growth. Their intake per day is one third of their body weight.
The organic matter the earthworms consume gets digested in their bodies and gets excreted in the form of casts, a type of soil aggregate rich in nutrition. Thus Earthworms facilitate improving soil fertility and deposits on the surface. Their role gains significance because they convert larger organic matter into simple accessible form. This is also the Nutrition cycle. Slime, a secretion of earthworms, contains nitrogen. Nitrogen is an important nutrient for plants. The sticky slime helps to hold clusters of soil particles together in formations called aggregates. These have greater role in porosity which helps in aeration and physical property of soil. The micro-tunnels provide good root growth as they are lined with readily available nutrients and make it easier for roots to penetrate deep into the soil.
Three months back there was a fertilizer scarcity in our place as well as throughout Tamil Nadu State. Farmers were ready to pay twice or thrice to purchase a bag of UREA and DAP. The MRP cost of it was around Rs. 2000 (both). They were running between pillars in search of availability of fertilizers. Some innovative organic growers were at peace, not worrying about the fertilizer scarcity.
They just scooped the vermicompost produced in their backyard and just spread (broadcasted) in the fields. Compared to the fields with chemical fertilizers, organic fields were outstanding and the yield comparatively higher. Vermicompost supplied many minerals needed for the complete crop growth. The pest load was very less due to available farmers’ friends (natural predators and parasites) which took care of the pest control. The farmer had no need to go for any pesticide spray as the pests were below Economic Threshold Level. These were the visible advantages. Beyond this there were more advantages like the vegetables had longer shelf life, tasted better, and many more…
In an organic field, earthworm multiplication becomes natural and nutrition cycle is in full swing and the field is not limited with any nutrition. The web of life is perfect in Organic Farming and Earthworm has a great role to play in this; be it cycling of nutrients, micro-flora and fauna population. It also becomes a prey to birds and it goes on. The load of earthworm in a field is directly proportionate to the nature friendly living (ORGANIC).

Due to the chemical farming methods, the earth worm population is greatly reduced. The trend is to turn back to nature and regain the earthworm population farmers are rearing in the valuable Vermicompost pits, either with permanent structures or temporary structures made of Silpauline sheets. When vermicompost (the casts collected from the pit), a rich source of nutrition, is applied to fields, the crop stand is very good due to supply of multiple nutrients. Often the field itself becomes a vermicompost unit as the applied vermicompost contains inoculums of cocoons, from which earthworms’ population increases. Sometimes segments of earthworm reach the field with vermicompost as earthworms have the ability to regenerate lost segments, the population increases. After prolonged use of vermicompost the lost microbial load is regained and so is the quality of food we get from fields.
Monday, November 3, 2014
Integrated Farming System ensures Biodiversity
His farm house is
surrounded with good number of trees
which provides an aesthetic environment
to live in and the temperature in
his niche is 3 – 5o C than that of the village. Soil erosion is avoided and fertility is maintained due to the
flora and its humus decomposition and its microclimate. The microbial load of
the soil makes the physical, chemical and biological properties of the soil.
This in turn increases the fertility of soil and enables life like earthworm
and some beneficial insects. The availability of such organisms facilitates decomposition
of plant residues and converts them into organic manures at rapid phase. Hence proper
residue recycling and leads in sustainable soil fertility. Trees also meet the construction wood requirements.
Integration of allied
activities results in the availability of nutritious food enriched with
protein, carbohydrate, fat, minerals and vitamins for all the lives involved in
this “web of life” including humans. Integrated farming helps in environmental
protection through effective recycling of waste from animal activities. Reduced
production cost of components through input recycling from the byproducts of
allied enterprises makes him get regular stable income through the products
throughout the year though one or two enterprise fail due to vagaries of monsoon.
Integrated Farming system ensures financial security and biodiversity. When
biodiversity ensured at farm, it is a beginning to conserve biodiversity in a
longer perspective for a GREENER EARTH.
Mr. Sasidharan of
Ilayankudy, Karaikal can be in touch with through mobile -9345766233
Labels:
IFS,
Nature,
Organic Farming,
Stall fed goat rearing
Friday, August 29, 2014
Pests of Pests – Farmers’ Friends
Any crop
ecosystem contains a balance of community of organisms living in harmony with
the environmental factors. Community of organism is the food web prevailing in
the place in order to facilitate decomposition and nutritional cycle. The
balance is maintained according to the non-biological factors like temperature
and moisture. The process of adaptation and survival of the fittest are in full
swing. In agriculture, the natural balance is disturbed and importance is given
to the prolific growth of any one or more crop which is of economic importance
or human interest. In such situations, a new ecosystem is developed for any
particular cultivation – Paddy ecosystem, pulse ecosystem, wheat ecosystem.
Paddy ecosystem consists
of Paddy crop, the soil, the microbes dwelling in the soil which decomposes the
crop residues and determines the fertility level of the field, group of insects
– live on paddy for their survival (Pests) and organisms feed on pests. Pest is
any organism causes economic damages and hindrances for the existence of crop
or human being. Pests in agriculture causes damage to the crop growth and
either kills the plant or create economic loss by drastically reducing the
yield.
By encouraging
the growth organisms which feed on pests we can effectively keep the pests in
control in a natural way. They are called Natural Enemies. They are the real
heroes in keeping the agricultural scenario pesticides-free. They facilitate death, weakening, or reduced reproductive potential of harmful
pests. The commonly visible natural enemies are insects and spiders, they feed
on plant feeding insects and protect crop from economic loss. Natural enemies
can be classified into two broad types – Predators and Parasitoids.
Predators
Predators
consume one or more living prey insects. Predatory behavior is common in
insects, spiders and mites. Common predators are spiders, mites, ladybird
beetles, dragon fly, and bugs. The diversity of predators in agro-ecosystem is
enough to keep pests in control. When predators could not keep pest population
below economically damaging levels, they actually slow down the rate of pest
population increase. But the pesticide usages have disturbed the balance of
such Biological shields of crop. Predatory insects, spiders and mites feed on
any or all stages of their prey, by killing, disabling eggs, larvae, nymphs,
pupae or adults.
- Beetles chew their prey.
- Bugs inject toxins into their prey and immobilize, later suck their juices.
- Dragon flies catch their prey in flight
- Praying Mantis wait for their prey, camouflaged and catch their prey by surprise.
- Spiders trap many pests with their web and consume later.
- Hover flies hover and dart in flight.
Parasitoids
Parasitoids live
in or on the body of their host insect during at least part of their life
cycle. Parasitoid is the term used to describe an insect that parasitizes and
kills its insect host. Endoparasites insert
their eggs into a host’s body. Ectoparasites
lay their eggs and their larvae
develop on the outside of the host’s body.
A typical female
parasitoid searches

Field release of
egg parasitoid Trichogramma japonicum at weekly intervals during egg laying
stage of rice borer in very effective as the parasitoid kills the pest in the
egg stage itself before the pest could cause any damage to the crop.
Trichogramma chilonis at weekly intervals keep leaf folders on control as the
parasitoids lay its egg in stem borer larvae hence kill the pest, multiplies
themselves and spread rapidly. It is very economical as the Tricho-cards are
low cost inputs. Cost involved to control the pest otherwise is detrimental
both economically and environmentally. Let us choose a GREENER way of pest
control to live longer healthily.
Sunday, June 22, 2014
Bio-Agents for Organic Farming
Organic Farming is a
method of cultivation done in line with nature. For a cultivation which
facilitates Biodiversity a cost effective method is to involve Bio-agents. Bio-agents
include Biofertilizers, Bio-Pesticides and Bio-Control Agents. This piece deals
with Biofertilizers – its types, uses and advantages. These are low cost inputs
which helps farmers at both ends. In expenditure end, it is very cheap so
affordable even to poor farmers at income end, the produces excels in quality
compared to the chemically produces ones. Hence farmers gets premium price. As
a bonus to the ecosystem and environment, the microbial load is increased, the
farmers’ friends (insects like spider, earthworm and many beneficial insects) and
their food web are protected.
For increased yield the
farmer should main the fertility of the soil. Only when the soil is fertile,
the crop can absorb the nutrients from soil. Nutrient transfer from source to
sink decides the quality and quantity of the produce. Biofertilizers are
eco-friendly means of supplying nutrients to the soil. Biofertilizers are ready
to use live formulates of such beneficial microorganisms which on application
to seed, root or soil mobilize the availability of nutrients by their biological
activity in particular, and help build up the micro-flora and in turn the soil
health in general.
Biofertilizers:
With intensive
agriculture farmers have dumped a lot of chemicals in the name of fertilizers
which are actually salts which have drastically reduced the microbial load of
the soil. Also fertilizers being a derivative of fossil fuels, make us more
dependent on sources out of farm. Biofertilizers are a good alternative to the
chemical fertilizers. Use of biofertilizers in crop cultivation helps in
safeguarding the soil health and also the quality of crop products. It increases
the crop yield by 20-30% as it stimulates plant growth.
For increasing the
Nitrogen content, Rhizobium is used for legume crops like black gram, green
gram, red gram, chick pea and so on. Azotobacter and Azospirillum are used for
non-legume crops and Acetobacter for Sugarcane only. Blue-Green Algae (BGA) and
Azolla are suitable for low land paddy only. There are biofertilizers to
solubilize Phosphorus, Potash and Zinc.
To use biofertilizers,
the farmer has to mix it with either farmyard manure or vermicompost and
broadcast in field. Biofertilizers are inoculums which feed on the decomposed
farm residues. On their decomposition it provides nutrition or it converts from
one form to another (its excreta or exudes) which make the soil fertile by
enriching with the needed nutrients. The texture of the soil is altered from
hard to fragile which facilitates root penetration and facilitates the root
system to perform better.
With the soaring price
if chemical fertilizers, the farmers can use biofertilizers as an alternative
and can keep agriculture going in a profitable way both economically and
eco-friendly.
Azospirillum is a nitrogen fixing biofertilizer. Nitrogen is a major nutrient for all plants. Azospirillum lipofereum is a very useful soil and root bacterium. It is an associative symbiotic nitrogen fixing bacteria. It is found in the soil around plant roots and root surface. It also produces growth-promoting substances like indole acetic acid (iaa), gibberellins, pantothenic acid, thiamine and niacin and it promotes root proliferation and it improve the plant growth yield. It increases the rootlet density and root branching resulting in the increased uptake of mineral and water. Azospirillum is recommended for rice millets, maize, wheat sorghum etc. and it fixes 20-40 kg N/hectare.
The aerobic bacteria, Azotobacter chroococcum is known to fix
considerable quantity of nitrogen in the range of 20-40 kg of nitrogen / ha in
the rhizosphere in non-leguminous crops. The lack of organic matter in the soil
is a limited factor in the proliferation of Azotobacter in the soil. The
bacterium induces hormones that help plants in better germination, early
emergence and better root development.
Azolla
is a water fern. It fixes atmospheric nitrogen into the soil with the help of
blue green algae by symbiosis process. Its application improves soil health and
soil fertility. Azolla suppresses weed growth, reduces loss of applied chemical
Nitrogen fertilizer. Azolla biofertilizer technology is simple, economic and
ecofriendly. In rice field Azolla grown once before or after planting can
produce upto 25 tons of fresh biomass and contribute upto 50 kg N/ha. Azolla
grown once during the cropping season can easily supply 20-40 kg N/ha. Azolla
can be used as a feed for poultry, duckery, fish and cattle. It is suitable for
flooded condition which fixes upto 40-80 kg N/hectare. When applied in desired
quantity. Around 10 q of Azolla is required for a hectare of land.
BGA
is an algae, fixes 20-30 kg N/hectare. Its application to rice increases yield
by 15-20%.
Rhizobium
is a nitrogen fixing biofertilizer. Rhizobium sp. is the symbiotic nitrogen
fixer which assimilates atmospheric nitrogen and fixes in the root nodule,
formed in the roots of leguminous plants. These bacteria infect the roots of
leguminous plants, leading to the formation of “lumps” or “nodules” where the
nitrogen fixation takes place. The bacterium also produces enzymes
(nitrogenase) that supply a constant source of reduced nitrogen to the host
plant. Rhyzobium is suitable for Ground nut, Black gram, Green gram, Red gram,
Cow pea, Bengal gram, Mustard, Soy bean, French bean, Cluster bean, Lab-lab,
Sesbania sp, Leguminous trees etc.
- Rhizobium
+ Phosphobacteria at 200 gm each per 10 kg of seed as seed treatment are
recommended for pulses such as pigeonpea, green gram, black gram, cowpea
etc, groundnut and soybean.
- Azotobacter
+ Phosphobacteria at 200 gm each per 10 kg of seed as seed treatment are
useful for wheat, sorghum, maize, cotton, mustard etc.
- For
transplanted rice, the recommendation is to dip the roots of seedlings for
8 to 10 hours in a solution of Azospirillum + Phosphobacteria at 5 kg each
per ha.
- Rhizobium
is used for pulse legume. It fixes 50-100 kg N/hectare with legumes. For
different pulse crops specific rhizobium cultures are required.
Applications:
Seed
treatment: 200 g of nitrogenous biofertilizer and 200 g of Phosphobacteria
are suspended in 300-400 ml of water and mixed thoroughly. Ten kg seeds are
treated with this paste and dried in shade. The treated seeds have to be sown
as soon as possible.
Seedling
root dip: For rice crop, a bed is made in the field and
filled with water. Recommended biofertilizers are mixed in this water and the
roots of seedlings are dipped for 8-10 hrs.
Soil
treatment: 4 kg each of the recommended biofertilizers are
mixed in 200 kg of compost and kept overnight. This mixture is incorporated in
the soil at the time of sowing or planting.
Phosphorous plays the
key role in the integrated nutrient management to plants next to nitrogen. It
is the key factor for the crop productivity. It is one of the major essential
macronutrients for plants and is applied to soil in the form of phosphate
fertilizers. However, a large portion of soluble inorganic phosphate which is
applied to the soil as chemical fertilizer is immobilized rapidly and becomes
unavailable to plants.
Phosphobacteria
solubilizes the available source of phosphate in the soil and made readily available
to the plant and improves soil properties in turn sustains soil fertility as it
aids utilization of Potash and other nutrients. It stimulates the growth of the
plant. Hence it results in plumpness and succulence of fruits and grains with
increased protein percentage. An increase in yield from 10% to 20% is
documented. Such produces fetches good price.
Phosphorus is a major
nutrient for plants inducing vigorous growth and also contributing to their
disease resistance. Phosphorous helps in root formation and plant growth. The
plants utilize only 10–15% of phosphate applied. The balance 85 – 90% remains
in insoluble form in the soil. The bio promoter has highly efficient phosphate
solubilizing bacteria (Bacillus megaterium) that grow and secrete organic
acids, which dissolve this unavailable phosphate into soluble form and make it
available to the plants. Thus, the residual phosphate fertilizers in the soil
can be well utilized and external application can be optimized. It facilitates root
formation and plant growth, improves soil quality with subsequent uses.
Potash Mobilizer is a
beneficial bacterium capable of mobilizing Potassium available in soil into the
root zone of plants. It works well in all types of soil. Use of such bacteria
in powder form can increase the availability of more potash in usable form to
the plants. When applied to soil, potash mobilizing bacterium multiplies, and
helps to mobilize potassium fixed in soil. This mobilized potassium is easily
available to the plants and reduces Potassium application. The mobilizing power
is so high that it can save upto 50-60% of the chemical potassium fertilizer. Potash
mobilized is immediately available to the plants. It stimulates flowering and
fruiting. It improves soil properties and sustains soil fertility. It encourages
plumpness and succulence of fruits and grains and increases brix level. Increases
the yield from 10% - 20% and it improves the quality of produce and thus
fetches good price.
Zinc
Mobilizer is a bio-fertilizer made of pure cultures of
naturally occurring soil-borne zinc solubilizing bacterium. Zinc solubilizing
bacterium multiplies, secrete organic acids and helps to solubilize insoluble
and chelated zinc fixed in the soil. This mobilized zinc is easily available to
the plants.
Ref:
ORGANIC FARMING
Organic Farming is a
method of cultivation done in line with nature. Food, fodder and livestock are
raised in an integrated way. Natural balance remains undisturbed even after
many years of Organic Farming. In other words, the web of life is integrated
which results in conservation of Biodiversity.
Indian farmers were
cultivating and “Farm Husbanding” using natural way of cultivation for
generations, which are evident from the remains of Mohenjo-daro and Harappa. A
typical Indian farmer had a minimum of 50 pairs of livestock. Some of them used
to help with the farm activities like ploughing, pulling carts, water lifting
and so on. Some of them supplied milk and meat. The farm wastes were converted
to farmyard manure. The goats and sheep were their mobile banks (could sell
whenever they need instant money). The value of a farmer was estimated with the
herd they possessed. The hens gave egg and meat. Vegetable were grown in their
backyard. People ate farm-fresh food so remained hale and healthy. There was a
network of LIVES.
With modernization and
mechanization we lost our treasure. With the entry of tractors, the farmers
preferred to lose cattle. The microbial load of beneficial microorganisms was
not fed to the fields. The minimum microbial load present in the Indian soil
was killed with the fresh supply of chemical fertilizers which was introduced
in the name of Green revolution.
Over years of advanced
agriculture, we lost our traditional varieties which were pest resistant,
disease resistant, saline resistant and which could withstand water stagnation
and all possible natural vagaries. Yes, OUR rich and varied collection of gene
pool was lost as farmers are forced to cultivate short duration varieties and
high yielding varieties.
A typical field has a
good number of insects. There is a mix of beneficial and harmful insects.
Beneficial insects include natural enemies, which kills harmful insects. A
natural enemy is organisms which kill, harm and cause disease in other living
organisms. There are three types - predators, parasites and pathogens.
Predators kill other organisms. Parasites enter or attach to the bodies of
their victims and feed on their tissues and fluids ultimately kill them.
Pathogens are microorganisms which cause diseases. On application of pesticides
to the field the farmers’ friend “beneficial insects” are the first where as
the harmful insects get resistance to the pesticide and gains resurgence which
require higher dose of insecticides to kill them. The pest management was wisely
done by encouraging the natural enemies. Cow’s urine was used to manage various
crop diseases. Herbal extracts like neem oil and neem based products were used
to control pests and diseases. The use of Panchakavya dates back to Vedic era.
These methods also helped in multiplication of the microbial load of the soil
and made them fertile.
Now it is time to seek
old wine in new bottle - The traditional agriculture in the name of Organic
Farming. Organic farming uses crop rotations and cover crops which help in
balance of nutrient supply. Cover crops and composted manure are used to
maintain soil organic matter and fertility. Balanced host/predator
relationships were encouraged for pest and disease management without any
external factor. Organic residues and nutrients produced on the farm are
recycled back to the soil. Organic farming protects the environment, minimize
soil degradation and erosion, decrease pollution, and optimize biological
productivity.
Organic Farming is
gaining importance to gain back what we lost - A healthy life, a sustainable
economy and integrated development. In this age of globalization, an organic
certification helps to reach the global market. The developed countries consume
organic foods but sells to developing countries like India, genetically
modified seeds, fertilizers and pesticides which they produce. It is time to
get up and make use of this marketing game.
This field gained its flush green due to the use of Azospirillum, a nitrogen fixing biofertilizer. This field had a lot of beneficial insects (which kills the harmful insects called pest). There were dragonflies, a natural predator that eats eggs and adults of many paddy pests. There were many lady ladybird beetles and different types of spiders. These insects were acting as a bio-shield protecting the field. There were pests too, bu the number of natural enemies were more than the pest. So, this field needed no pesticides to control the harmful insects. This was possible because this field is an Organic field. If any form of chemical was used, the first ones to be destroyed would be the beneficial insects, which acts as guard.
This field gained its flush green due to the use of Azospirillum, a nitrogen fixing biofertilizer. This field had a lot of beneficial insects (which kills the harmful insects called pest). There were dragonflies, a natural predator that eats eggs and adults of many paddy pests. There were many lady ladybird beetles and different types of spiders. These insects were acting as a bio-shield protecting the field. There were pests too, bu the number of natural enemies were more than the pest. So, this field needed no pesticides to control the harmful insects. This was possible because this field is an Organic field. If any form of chemical was used, the first ones to be destroyed would be the beneficial insects, which acts as guard.
Sunday, September 22, 2013
Seed Treatment Campaign
Seed treatment campaign was
conducted in many places in Karaikal. I conducted at two villages - Subrayaburam and Thennangudy. It was an awareness creation programme. As the agriculture season is picking up, it was a low cost technology which helps the crop to gain resistance to root borne diseases and facilitates Organic farming.
Seed treatment is similar to immunization programme for children. Like we have an injection within 5 days of child birth is this seed treatment. Giving the immunization at the earliest stage of life. If the farmer has missed the seed treatment, he can broadcast the bio-control agent in nursery field. It is like an injection at 45th day. If the farmer plans his transplanting he can go for seedling root dipping. Its like an injection at 65th day. If the farmer has already transplanted he can very well broadcast in the field twice or thrice, its like polio vaccination for children under 5 years old every year. We know the importance of immunization to children and now it is time to treat our agricultural crops also as children and give maximum care that too in organic way. This will help us to have a better future and make the Earth a better place to live through ORGANIC AGRICULTURE.
Seed treatment is a process of
application of chemicals or protectants (with fungicidal, insecticidal,
bactericidal or nematocidal properties) to seeds that prevent the carriage of
insect or pathogens in or on the seeds. In the campaign various benefits and
importance of seed treatment with Pseudomonas fluorescens was detailed. It
helps in effective control Blast, Bacterial leaf blight, sheath blight of
paddy. It paves way for organic rice production.
Pseudomonas fluorescens is a
common Gram-negative, rod-shaped bacterium. It belongs to the Pseudomonas
genus; 16S rRNA analysis has placed P. fluorescens in the P. fluorescens group
within the genus, to which it lends its name.
The method demonstration conducted was “Seed Treatment of Paddy seeds with
Pseudomonas fluorescens using seed treating drum”. Five kilo paddy seed
was placed in the seed treating drum. As the rate of Pseudomonas to be used for
treatment are 10 gms per kilo of Paddy seeds. 50 gms of Pseudomonas was added
to the seeds in the drum. The drum was closed and rotated 5 times in clockwise
and anticlockwise directions each. The treated seeds were collected in a
vessel. Such treated seeds can be used for soaking the seeds for enhancing
germination. When the Pseudomonas treated seeds are soaked, while germination
the rupture created when plumule and radicle emerges acts as an entry point for
the bacteria to enter the seed and the full system gets the inoculum.
The other methods taught in the
seed treatment campaign were
- Using rice gruel: Pseudomonas was added (at the rate of 10 gms / kg of paddy seeds) to the cooled rice gruel. It was mixed uniformly and then it was mixed with the seeds. The treated seeds should be shade dried and can be used for soaking to facilitate germination.
- Using Water: Pseudomonas was added (at the rate of 10 gms / kg of paddy seeds) in 1 litre of water. It was mixed uniformly and then it was mixed with the seeds. The treated seeds should be shade dried and can be used for soaking to facilitate germination.
- In soaking pit / pond / tank: Pseudomonas was added (at the rate of 10 gms / kg of paddy seeds) in the water available in soaking pit / pond / tank. The gunny bags containing seeds should be soaked in Pseudomonas treated water for more than 12 hours. Then remove the seed bags and cover them with dark tarpaulin sheet to facilitate germination. The Pseudomonas would enter the entire system of the plant from the initial stage itself. Then the remaining treated water used for the soaking should be added to the nursery itself.
For those farmers who have taken
up sowing either in nursery of direct sowing, the other ways of using
Pseudomonas were detailed.
Seedling root dipping: Apply 2.5kg of Pseudomonas to the water
stagnated in an area of 25 sq.m. The seedlings after pulling out from the
nursery should be placed in stagnated water containing the bacteria. A minimum
period of 30 minutes is necessary for soaking the roots and prolonged soaking
will enhance the efficiency.
Soil application: Apply the product @ 2.5kg/ha mixed with 50 Kgs of
well decomposed farmyard manure (FYM) or sand at 30 days after transplanting.
Foliar application: Spray the product @ 0.2% concentration (1Kg/ha)
commencing from 45 days after transplanting at 10 days interval for 3 times
depending on the disease intensity. If there is no disease incidence, a single
spray is sufficient.
Labels:
Agriculture,
Organic Farming,
Pseudomonas,
Seed Treatment
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