Transgenic Crops-Biosafety Concerns and Regulations in India Introduction Biosafety concerns Regulatory Mechanisms in India ...
Transgenic
Crops-Biosafety Concerns and Regulations in India
Plant
genetic engineering methods were developed over 30 years ago, and since then,
genetically modified (GM) crops or transgenic crops have become commercially
available and widely adopted in many countries. In these plants, one or more
genes coding for desirable traits have been inserted. The genes may come from
the same or another plant species, or from totally unrelated organisms. The
traits targeted through genetic engineering are often the same as those pursued
by conventional breeding. However, because genetic engineering allows for
direct gene transfer across species boundaries, some traits that were
previously difficult or impossible to breed can now be developed with relative
ease.
The
first-generation GM crops have improved traits like Herbicide-resistant crops
(soybeans and maize, Pest resistance (Cotton and corn). Second-generation
GM crops involve enhanced quality traits, such as higher nutrient content.
“Golden Rice,” one of the very first GM crops, is biofortified to address
vitamin A deficiency. Other biofortification projects include corn, sorghum,
cassava, and banana plants, with enhanced minerals and vitamins. Crops can also
be modified to ward off plant viruses or fungi. Even though the seed is more
expensive, these GM crops lower the costs of production by reducing inputs of
machinery, fuel, and chemical pesticides. Important environmental benefits,
such as controlling farm runoff that otherwise pollutes water systems, are
associated with reduced spraying of chemical insecticides and highly toxic
herbicides.
Now-a-days
with the rapid advance research and development in agricultural biotechnology,
countries are approving many genetically modified crops for commercial release
and agricultural production. ISAA reported in 2017, the 21st year of
commercialization of biotech crops, 189.8 million hectares of biotech crops
were planted by up to 17 million farmers in 24 countries. From the initial
planting of 1.7 million hectares in 1996 when the first biotech crop was
commercialized, the 189.8 million hectares planted in 2017 indicates ~112-fold
increase.
In India,
Bt cotton was approved by Government of India in March 2002 as the first
transgenic crop for commercial cultivation for a period of three years. Apart
from cotton, there are more than 20 crops under research and development in
about 50 public and private sector organizations in India. Out of these,
13 crops have been approved for contained limited field trials in India.
Though,
it is widely claimed that transgenic crops offers dramatic promise for meeting
some of greatest challenges but like all new technologies, it also poses
certain risks, because of the fact that transgenic crops can bring together new
gene combinations which are not found in nature having possible harmful effects
on health, environmental and non-target species. However, as more and more
transgenic crops are being released for field-testing and commercialization,
concerns have been expressed about the potential risks associated with their
impact to human health, environment and biological diversity.
As more
and more transgenic crops are released for field-testing and commercialization,
concerns have been expressed regarding potential risks to both human health and
environment. Biosafety describes the principles, procedures and policies to be
adopted to ensure the environmental and personal safety. Recognizing the need
of biosafety in GE research and development activities, an international
multilateral agreement on biosafety “the Cartagena Protocol on Biosafety (CPB)”
has been adopted by 167 parties, including 165 United Nations countries, Niue,
and the European Union. The Protocol entered into force on 11 September 2003,
and its main objectives are:
- To set up the procedures for
safe trans-boundary movement of living modified organisms
- Harmonize principles and
methodology for risk assessment and establish a mechanism for information
sharing through the Biosafety Clearing House (BCH).
Research
work in the area of GE and GMOs requires prior approval from the appropriate
regulatory authorities of the country. Following guidelines provided for
minimizing biosafety issues is mandatory. The primary regulatory body at
research institute level is the Institutional Biosafety Committee (IBSC) or its
equivalent body consisting of experts from different relevant disciplines. The
IBSC ensures existence of the basic biosafety equipment required as per the
safety level of the experiments to be conducted. There has been increasing
awareness among the researchers, producers and users of GMOs, administrators,
policy makers, environmentalists and general public about biosafety all over
the world. Transgenic crops are not toxic nor are likely to proliferate in the
environment. However, specific crops may be harmful by virtue of novel
combinations of traits they possess. This means that the concerns associated
with use of GMOs can differ greatly depending on the particular gene organism
combination and therefore a case-by-case approach is required for risk
assessment and management.
The major
biosafety concerns falls into these categories:
Bio-safety
of human and animal health
- Risk of toxicity, due to the
nature of the product or the changes in the metabolism and the composition
of the organisms resulting from gene transfer.
- Newer proteins in transgenic
crops from the organisms, which have not been consumed as foods, sometimes
has the risk of these proteins becoming allergens.
- Genes used for antibiotic
resistance as selectable markers have also raised concerns regarding the
transfer of such genes to microorganisms and thereby aggravate the health
problems due to antibiotic resistance in the disease causing organisms.
Ecological
concerns
- Gene flow due to cross pollination
for the traits involving resistance can result in development of tolerant
or resistant weeds that are difficult to eradicate.
- GM crops could lead to erosion
of biodiversity and pollute gene pools of endangered plant species.
- Genetic erosion has occurred as
the farmers have replaces the use of traditional varieties with
monocultures.
Environmental
concerns
- Effect of transgenic plants on
population dynamics of target and non-target pests, secondary pest
problems, insect sensitivity, evolution of new insect biotypes,
environmental influence on gene expression, development of resistance in
insect population, development of resistance to herbicide
- Gene escape into the
environment- accidental cross breeding GMP plants and traditional
varieties through pollen transfer can contaminate the traditional local
varities with GMO genes resulting in the loss of traditional varieties of
the farmers.
Public
attitude
- Consumer response depends on
perceptions about risks and benefits of genetically modified foods. The
media, individuals, scientists and administrator, politicians and NGO have
the responsibility to educate the people about the benefits of GM foods.
Socio
economic and ethical consideration
- Potential benefits to the
consumers and farmers. Due to increasing seed market, the developing
countries may get dependent on few suppliers.
- GURT: Gene Use Restriction
Technologies. India has totally banned the use of GURT in plant variety
for registration under PPV & FRA, 2001
Biosafety
regulations cover assessment of risks and the policies and procedures adopted
to ensure environmentally safe applications of biotechnology. The regulatory
framework for transgenic crops in India consists of the following rules and
guidelines.
a) Rules
and policies
- Rules, 1989 under Environment
Protection Act (1986)
- Seed Policy, 2002
b)
Guidelines
- Recombinant DNA guidelines,
1990
- Guidelines for research in
transgenic crops, 1998
The two
main agencies identified for implementation of the rules are the Ministry of
Environment, Forests and Climate Change and the Department of Biotechnology,
Government of India. The rules have also defined competent authorities and the
composition of such authorities for handling of various aspects of the rules.
There are six competent authorities as per the rules.
- Recombinant DNA Advisory
Committee (RDAC)
- Review Committee on Genetic
Manipulation (RCGM)
- Genetic Engineering Approval
Committee (GEAC)
- Institutional Biosafety
Committees (IBSC)
- State Biosafety Coordination
Committees (SBCC)
- District Level Committees
(DLC).
Out of
these, the three agencies that are involved in approval of new transgenic crops
are:
- IBSC - set-up at each institution for monitoring institute
level research in genetically modified organisms.
- RCGM - set-up at DBT to monitor ongoing research activities
in GMOs and small scale field trials.
- GEAC - set-up in the Ministry of Environment, Forests and
Climate Change to authorize large-scale trials and environmental release
of genetically modified organisms.
The
Recombinant DNA Advisory Committee (RDAC) constituted by DBT takes note of
developments in biotechnology at national and international level and prepares
suitable recommendations. The State Biotechnology Coordination Committees
(SBCCs) set up in each state where research and application of GMOs are
contemplated, coordinate the activities related to GMOs in the state with the
central ministry. SBCCs have monitoring functions and therefore have got powers
to inspect, investigate and to take punitive action in case of violations.
Similarly, District Level Committees (DLCs) are constituted at district level
to monitor the safety regulations in installations engaged in the use of GMOs
in research and application.
References
- ISAA.org (http://www.isaaa.org)
- Biosafety Issues related to
transgenic crops with focus on Bt cotton 2005. Biotech Consortium India
Limited, New Delhi
- Suresh Kumar, 2014. Biosafety
Issues of Genetically modified organisms. Biosafety, 3:2, 1000e150.
- Alan MCHughen, 2012.
Introduction to the GM crops special issue on biosafety, food and GM
regulation. GM Crops and Food: Biotechnology in Agriculture and the Food
Chain, 3:1, 6-8.
Source: Usha
Kiran Betha, ICAR-Indian Institute of Oilseeds Research, Rajendranagar,
Hyderabad
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