The row over Bt Brinjal, a genetically modified version of the plant, provoked the government into imposing a moratorium on the commercial cultivation of the plant in India.  The debate has revolved around issues of economic efficacy, human health, consumer choice and farmers’ rights. Jairam Ramesh, the Minister of State for Environment and Forests, made public his views on the subject, a gist of which is given below:

  • The Genetic Engineering Approvals Committee (GEAC) report recommended commercial cultivation of Bt Brinjal but qualified it by stating that since the issue has important policy implications at the national level, the government should take a final view on the matter.
  • Most of the state governments have expressed concern and have sought to ban the use of Bt Brinjal, or all GM crops.
  • Pesticides have harmful effect on human health and Bt technology is one way of reducing pesticide use.  However, other routes such as non-pesticide pest management can be explored.  For example, about 6 lakh farmers in Andhra Pradesh practice non-pesticide pest management over an area of about 20 lakh acres.
  • Safety is a concern since the kind of tests that have been done is not specific or stringent enough to detect toxins.  Also, tests have only been carried out by the developers of the product, Maharashtra Hybrid Seeds Company Ltd. (Mahyco).  (The results of the biosafety tests are available on the GEAC website).
  • There is no large-scale public funded biotechnology effort toward agriculture, which could compete with Mahyco.  Monsanto is the main producer of Bt Brinjal, and Mahyco is owned to the extent of 26% by Monsanto.
  • While two government owned agricultural universities -- University of Agricultural Sciences, Dharwad and Tamil Nadu Agricultural University (TNAU), Coimbatore – have produced Bt Brinjal along with Mahyco, doubts have been raised about how Bt related research in these universities have been funded.
  • There are apprehensions that there will be diversity loss in the variety of Brinjal if Bt Brinjal is introduced, and this fear cannot be glossed over.
  • While Bt Cotton and Bt Brinjal are not comparable, the introduction of Bt Cotton in India has made India the second largest grower of cotton in the world.  Over 90% of cotton farmers in India cultivate Bt Cotton.  Many farmers support Bt Cotton on economic grounds but some did express doubts.
  • The Central Institute of Cotton Research, Nagpur has developed a Bt cotton variety (Bikaneri Nerma) whose seeds can be kept by farmers for planting during the next season.  The Director of the Institute while expressing support for Bt Brinjal has mentioned that resistance development is a serious issue.  Therefore, more tests that are well-designed, widely-accepted and independently conducted are necessary.
  • The GEAC process has been questioned by  Dr P.M. Bhargava, the Supreme Court nominee on GEAC.  He opposed the recommendation on the ground that all necessary tests had not been carried out before coming to a decision.  The 2006 committee of the GEAC had asked for several tests to be conducted which were not taken into account by the second expert committee.  All GEAC reports (including additional tests) of tests conducted with regard to Bt Brinjal are in the public domain.
  • There is some evidence that the GEAC not followed global regulatory norms of which India is a party.  For example, the Cartagena Protocol on Biosafety, Rio Declaration on Environment and Development etc.
  • Some international scientists have raised doubts about Bt Brinjal and the way the tests were conducted.
  • Many Indian scientists have supported commercialization of Bt Brinjal such as Dr G. Padmanabhan of the Indian Institute of Science; Dr Deepak Pental, Vice Chancellor of Delhi University; and Dr Raj Bhatnagar of the International Centre for Genetic Engineering and Biotechnology, New Delhi.  However, even they have mentioned the need for a statutory body with regulatory powers and R&D capabilities to govern all aspects of GM crops.
  • The Indian Council of Agricultural research and a number of farmer’s groups have come out in support of the move to introduce Bt Brinjal.

In order to understand the process followed by GEAC before giving the green signal to Bt Brinjal, we have made a timeline in which the plant was approved and the bodies involved in the process.

2000-2005 Scientific tests carried out by Mahyco on Bt Brinjal
2006 Mahyco submits bio-safety data to GEAC (regulatory body under the Ministry of Environment and Forests). Seeks permission for large scale trials.
  Supreme Court stops ongoing field trials of GM crops due to a PIL filed by civil society representatives.
2007 The expert committee 1 set up by GEAC, submits its report.  Recommends seven more studies on bio-safety be repeated for reconfirmation of data generated during confined multi-location trials but approves large scale trials.
  Supreme Court lifts ban on GM crop field trials subject to conditions such as isolation distance etc.
  As per GEAC direction, Indian Institute of Vegetable Research (IIVR) takes up the responsibility of large scale trails of Mahyco's Bt Brinjal trials at 10 research institutions across the country in 2007 and 11 in 2008.
2009 Jan: IIVR submits the results of the large scale trails. Due to concerns raised by several stakeholders, GEAC constitutes another expert committee to look into adequacy of biosafety data generated as well as the concerns raised by all stakeholders.
  Oct 8: Expert-committee 2 submits its report. States benefits of Bt Brinjal far outweigh the perceived and projected risks.
  Oct 14: GEAC approves the environmental release of Bt Brinjal containing the event EE1 (with one dissent note from P.M. Bhargava).
  Oct 15: Jairam Ramesh announces a nationwide consultation in January and February of 2010 pending a final decision on this issue.
2010 Jan 13 to Feb 6: Public meetings were organized on the Bt Brinjal issue. The summary of the consultations is available on the Ministry’s website.
  Many states announce ban on commercial cultivation of Bt Brinjal including Uttarakhand, Himachal Pradesh and Karnataka.
  Feb 9: Jairam Ramesh decides to halt the commercialization of Bt Brinjal.

Recently, there have been reports of price crashes and distress sales in case of farm produce, such as tomatoesmangoes, and garlic.  In some cases, farmers have dumped their produce on roads.  Produce such as fruits and vegetables are perishable and therefore have a short shelf life.  Further, due to inadequate storage facilities and poor food processing infrastructure farmers have limited options but to sell the produce at prevailing market prices.  This can lead to distress sales or roadside discards (in some cases to avoid additional cost of transportation).

Food processing allows raw food to be stored, marketed, or preserved for consumption later.  For instance, raw agricultural produce such as fruits may be processed into juices, jams, and pickles.  Activities such as waxing (for preservation), packaging, labelling, or ripening of produce also form part of the food processing industry.

Between 2001-02 and 2016-17, production of food grains grew annually at 1.7% on average.  Production of horticulture crops surpassed food grains with an average growth rate of 4.8%.  While production has been increasing over the years, surplus produce tends to go waste at various stages such as procurement, storage, and processing due to lack of infrastructure such as cold storages and food processing units.

Source: Horticulture Statistics at a Glance 2017, Union Budget 2018-19; PRS.

Source: Horticulture Statistics at a Glance 2017, Union Budget 2018-19; PRS.

Losses high among perishables such as fruits and vegetables

Crop losses ranged between 7-16% among fruits and around 5% among cereals in 2015.  The highest losses were witnessed in case of guava, followed by mango, which are perishable fruits.  Perishables such as fruits and vegetables are more prone to losses as compared to cereals.  Such crop losses can occur during operations such as harvesting, thrashing, grading, drying, packaging, transportation, and storage depending upon the commodity.

It was estimated that the annual value of harvest and post-harvest losses of major agricultural products at the national level was Rs 92,651 crore in 2015.  The Standing Committee on Agriculture (2017) stated that such wastage can be reduced with adequate food processing facilities.

Sources: Annual Report 2016-17, Ministry of Food Processing Industries; PRS.

Sources: Annual Report 2016-17, Ministry of Food Processing Industries; PRS.

Inadequate food processing infrastructure

As previously discussed, perishables such as fruits and vegetables are more prone to damages as compared to cereals.  Due to inadequate processing facilities in close proximity, farmers may be unable to hold their produce for a long time.  Hence, they may be forced to sell their produce soon after harvest, irrespective of the prevailing market situations.  Expert committees have recommended that agri-logistics such as cold chain infrastructure and market linkages should be strengthened.

Cold chain infrastructure: Cold chain infrastructure includes processing units, cold storages, and refrigerated vans.  As of 2014, out of a required cold storage capacity of 35 million metric tonnes (MT), almost 90% (31.8 million MT) of the capacity was available (see Table 1).  However, cold storage needs to be coupled with logistical support to facilitate smooth transfer of harvested value from farms to distant locations.  This includes: (i) pack-houses for packaging and preparing fresh produce for long distance transport, (ii) refrigerated transport such as reefer vehicles, and (iii) ripening chambers to ripen raw produce before marketing.  For instance, bananas which are harvested raw may be ripened in these chambers before being marketed.

While there are sufficient cold storages, there are wide gaps in the availability of other associated infrastructure.  This implies that even though almost 90% (32 million tonnes) of cold storage capacity is available, only 15% of the required refrigerated transport exists.  Further, the shortfall in the availability of infrastructure necessary for safe handling of farm produce, like pack-houses and ripening chambers, is over 90%.

Table 1:  Gaps in cold chain infrastructure (2014)

Facility Required Available Gap % gap
Cold storage
(in million MT)

35.1

31.8 3.2

9.3%

Pack-houses

70,080

249 69,831

99.6%

Reefer vehicles

61,826

9,000 52,826

85.4%

Ripening chambers

9,131

812 8,319

91.1%

Source: Standing Committee on Agriculture 2018; PRS.

To minimise post-harvest losses, the Standing Committee (2017) recommended that a country-wide integrated cold chain infrastructure network at block and district levels should be created.  It further recommended that a Cold Chain Coordination and Monitoring Committee should be constituted at the district-level.  The Standing Committee also recommended that farmers need to be trained in value addition activities such as sorting, grading, and pre-cooling harvested produce through facilities such as freezers and ripening chambers.

Between 2008 and 2017, 238 cold chain projects were sanctioned under the Scheme for Integrated Cold Chain and Value Addition Infrastructure.  Grants worth Rs 1,775 crore were approved for these projects.  Of this amount, Rs 964 crore (54%) has been released as of January 2018.  Consequently, out of the total projects sanctioned, 114 (48%) are completed.  The remaining 124 projects are currently under implementation.

Transport Facilities:  Currently, majority of food grains and certain quantities of tea, potato, and onion are transported through railways.  The Committee on Doubling Farmers Income had recommended that railways needs to upgrade its logistics to facilitate the transport of fresh produce directly to export hubs.  This includes creation of adjoining facilities for loading and unloading, and distribution to road transport.

Mega Food Parks: The Mega Food Parks scheme was launched in 2008.  It seeks to facilitate setting up of food processing units.  These units are to be located at a central processing centre with infrastructure required for processing, packaging, quality control labs, and trade facilitation centres.

As of March 2018, out of the 42 projects approved, 10 were operational.  The Standing Committee on Agriculture noted certain reasons for delay in implementation of projects under the scheme.  These include: (i) difficulty in getting loans from banks for the project, (ii) delay in obtaining clearances from the state governments and agencies for roads, power, and water at the project site, (iii) lack of special incentives for setting up food processing units in Mega Food Parks, and (iv) unwillingness of the co-promoters in contributing their share of equity.

Further, the Standing Committee stated that as the scheme requires a minimum area of 50 acres, it does not to promote smaller or individual food processing and preservation units.  It recommended that smaller agro-processing clusters near production areas must be promoted.  The Committee on Doubling Farmers Income recommended establishment of processing and value addition units at strategic places.  This includes rural or production areas for pulses, millets, fruits, vegetables, dairy, fisheries, and poultry in public private-partnership mode.