Importance of Plant Genetic Resources to Crop Breeders.
Abstract
Plant genetic resources are the gene pools of the plants and they play an important role in improving production and quality of food. For improvement of any crop it needs lot of germplasm with variation. This is used to bring the desirable changes in the cultivable cultivars. To breed the varieties with resistance against the biotic and a biotic stresses it is must to have the good source of germplasm. Due to urbanization many traditional cultivars are on the way to extinct so it has become necessary to conserve the natural varieties for future use. Ex-situ and in- situ are two different kinds of conservations system where plants are grown out of natural and in natural habitat respectively. Fast growing human population put forth the challenge to produce food at higher rate. Many institutes like ICRISAT, have larger gene bank and they contribute significantly in production of agricultural crops. Despite of some limitations PGR still remain important factor in crop improvement. Besides this biotechnology is considered as a ray of hope.
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Agriculture has always been the major profession for the many people of the world since times immemorial. In order to take qualitative and quantitative production from the field the farmers have to consider many important factors viz. planting material, seed quality, land, cropping pattern, intercultural practices, crop protection methods, marketing etc. Among all these, the more importance is given to the pure and genetically fulfilled plant material. Before few centuries, the growing food to feed per capita was not an issue, but today on the eve of new millennium it is a challenge before the farmers and scientists to produce the food to feed the fast increasing population with the rate of160 people per minute. Approximately more than 90% of the population is living in developing countries where agriculture is a main profession but still there are many hurdles to achieve the desired food production. It is estimated that we need to produce food during coming 40-50 years as we had produced since the evolution of agriculture and of course we are now in the race between growing population and food production ( cropwildrelatives.com)
Growing populations and pressure for social and economic development are leading to increasing rate of destruction and degradation of natural habitat, including forests and woodlands ( J.P. Lanly, FAO). As more emphasises is given to the urban development rather than the agriculture, in most of the countries it is causing loss of genetic material which is considered an important and a key element for adaption and improvement of plant species under cultivation. Besides this less resources, including financial and manpower are also overcoming a major constraints in field of production. Plant genetic resources are associated with the different levels of diversity that exist in nature, from ecosystem to species, population, individuals and genes.(R.H. Kemp, G.Namkoong and F.H. Wadsworth). The conventional agriculture would be the primary option while considering the different plans to produce food at higher rate and for the foreseeable future. According to the prediction made by International Food Policy Research Institute, the consumption of rice and wheat in developing countries will account around 96% and 60% respectively by year 2020. It will play a major role in feeding the poors of those nations. This prediction shows that how genetic material of wheat and maize will help to meet their requirement in developing countries.
As per Agrodictionary.com the plant genetic resources are defined as, the gene pool of plants, especially the plants which are regarded as high value to human beings for food or pharmaceuticals. The genetic resources are always been considered as one of the important constituents of natural(specially Agro) biodiversity. The Plant genetic resources includes primitive forms of cultivated plant species and landraces, modern cultivars, breeding lines and genetic stocks, weedy types and related wild species ( IPGR 1993). Due to introduction of new varieties in agriculture, urbanization, many species are on the way to extinct, so the PGR are vulnerable and finite to losses because of these reasons. The PGR helps to provide the basic raw material to plant species improvement and ultimately its production.
How to conserve Plant genetic resources?
The immense importance has been given to the conservation of plant species especially wild ones, germplasm for the future use and different kinds of conservation systems i.e in situ and ex situ conservation.
In- Situ method of conservation.
In situ type of conservation is like ‘on-site conservation’. The desired plant species are grown and conserved in natural habitat, for example forest genetic resources. During this process the plant species are protected from their natural predators. The main advantage behind the in situ conservation is that, it helps in maintaining the population in the surrounding where they have developed with their original and distinctive properties. Besides this it help the plant species to adjust and adapt with their own environment. Most of the wild life and livestock conservation is also based on this kind of conservation. And in other hand it helps to enhance the scientific knowledge of production technology of particular native and traditional varieties.
Ex situ conservation.
Ex- situ kind of conservation also called as “off-site conservation”. Unlike the in situ conservation, the plants species are grown outside of their natural habitat. It means the plant species of particular variety are introduced to different climate, geographical location where they never have grown before. Ex- situ conservation comprises one of the best and oldest methods of conservation. Some laboratory methods are also involved in ex situ conservation.
Botanical gardens are the best example of this kind of conservation. Keeping the educational view in the mind, many species are introduced from different parts of world. Ex- situ conservation works where in-situ is not possible and this would be the major advantage of ex- situ conservation over in situ. But some time it becomes a challenge before man to transfer the plant species to new environment without harming them. In addition to this in many cases it is impossible to recreate the habitat as a whole. Ex- situ type of conservation are often found costly. Seed bank and germplasm are another option to conserve the endangered plant species. The term seed bank sometimes refers to a cryogenic laboratory facility in which the seeds of certain species can be preserved for up to a century or more without losing their fertility. It can also be used to refer to a special type of arboretum where seeds are harvested and the crop is rotated.( Encyclopaedia).
Showy Indian clover, Trifolium amoenum, is an example of a species that was thought to be extinct, but was rediscovered in 1993[4] by Peter Connors in the form of a single plant at a site in western Sonoma County.[5] Connors harvested seeds and grew specimens of this critically endangered species in a controlled environment.
Germplasm Collection and Conservations.
Germplasm is important to access the relationship between the genetic resources and agricultural production. Germplasm with genetic abnormalities are important to plant breeders for specific purposes and also they are widely used in basic research programmes at different research institutes. The International crops Research Institute for the Semi Arid Tropics(ICRISAT) is one of the 15 CGIAR institutes( Consultative Group on International Agriculture Research) which has established its own genetic resources for the purpose of assembly, characterization, evaluation, maintenance, conservation, documentation and distribution of germplasm of sorghum ( Sorghum bicolour), pearl millet ( Pennisetum glaucum). chickpea ( Cicer arietinum), pigonpea (Cajanus cajan), ground nut (Archis hypogaea)etc (HD Upadhya). ICRISAT was established in 1972, and effort were made to assemble the germplasm of its mandatory crops that existed with various research institute in India and other countries (Journal, ICRISAT 2008).
The fundamental objective of collecting PGR is to capture the maximum amount of genetic variation in the smallest number of samples.( Marshal and brown 1975). The development of efficient strategies depends on the extent of available information on the type of genetic variation in target population and their distribution in the target geographical region(Allard1970).Current collection at ICRISAT shows 70-80% diversity. The Geographical information system (GIS) is used to analyse available diversity and also it facilitate identification of gaps to launch targeted collections. At present in ICRISAT gene bank conserves 118,882 accessions of five mandate crops and six small millets from 144 countries. ( HD Uppadya)
| Germplasm holding in ICRISAT genebank. |
| Crop Active collection Base collection Accessions held in trust |
| Sorghum 37,904 34,313 36,771 Pearl millet 21,594 20,343 21,563 Chickpea 20,140 16,977 17,124 Pigeon pea 13,632 11,794 12,389 Ground nut 15,419 12,640 14803 Finger millet 5,949 4,620 5,949 Foxtail millet 1,535 1,054 1,535 Proso millet 842 576 835 Little millet 466 384 462 Kodo millet 658 630 656 |
| Barnyard millet 743 487 743 Total 118,882 103,818 113,830 |
The natural resources in the earth are very finite and vulnerable. Many countries have pledged to stem the rapid loss of biodiversity and sustain these vital resources for the present and future generations. The research instaurations have created the plant genetic diversity in farmer’s field since many years and it is complemented by diversity present in wild relatives of the crop species.
Adequate characterization for agronomic and morphological traits is necessary to facilitate utilization of germplasm by the breeders( HD Uppadhye). To achieve this, germplasm accessions of all crops are characterized for morphological and agronomic traits over the years. It is necessary to screen the genetic material against biotic and abiotic stress and it is done by scientist team. Characterization of germplasm is nothing but the recording of distinctly identifiable heritable characteristics. Objective behind the characterization of germplasm is
§ To describe and establish the diagnostic of conserved germplasm.
§ To classify them properly.
§ To develop the interrelationship between the traits and cultivars.
§ To identify the accessions with agronomic traits.
It is also an important to regenerate the germplasm as the seed loose its viability even though under favourable storage conditions.Germplasm is generally conserved in the form of seeds to maintain the integrity of the material conserved to the highest standards over a long period of time. The standards must be set on the basis of scientific knowledge with latest technologies for the proper storage and handling of seed in seed bank.In the table given above at ICRISAT, India, the active collections are kept for medium time period in aluminium plastic cans at 4 ºc, and whereas the base collection are kept for long time period in vacuum aluminium foils at -20 ºc.( IRISAT). Documentation is a necessary for efficient and effective use of germplasm in any gene bank. Information always play an important role in germplasm conservation and therefore the correct documentation of evaluation and characterization is necessary.
Contribution of wheat genetic resources.
Wheat is grown globally and it is consumed throughout the world. The genus of wheat “Triticum ”was originated 10,000 years ago in middle east (cropwildrelatives.org). Thousands of wheat species were collected and at present they are stored in different genetic resource centres and one of them is at Mexico (CIMMYT). Some of the studies during collection are attempted to estimate their contribution to wheat improvement. The role of genetic resources in wheat improvement was examined by Chapman(5) but he found it difficult to estimate it. He made a conclusion that those material were used in approximately 10% of all crosses based on the pedigree of recently released cultivars. The CIMMYTS also has taken an effort to develop a full databases of global wheat genetic resources. The study found that number of different landraces in pedigree of modern wheat are increased steadily since last 30 years. Going beyond rather general and poorly defined contributions to modern varieties, several specific genes that have made major impacts on wheat can be directly traced to contributions from genetic resources. Till date it is found that the fungal pathogens has been responsible for many plant diseases, for example rust pathogen which causes major crop failure in almost every season. From genetic resources many genes have been found with resistance to the plant diseases. (Source- www.cropwilevarity.com).
Since past some years the trend of the application of intellectual property rights (IPR) of the agriculture products as well as plant variety has been increasing. it is treated as a global progress. In 1983, Food and Agricultural organization (FAO) established the international undertaking on plant genetic resources with view to protect them. The rule of free interchange of germplasm was subscribed for the “heritage for mankind”. To include the compensation and ownership of genetic resources, that undertaking was again modified in 1989 and 1991.
Many examples can be quoted to describe the role of plant genetic resources in the improvement of present (Modern) cultivar. The biotechnology could substantially enhance this use e.g.the molecular genetics allows the routine analysis of any characteristics of interest. Under the process of fingerprinting, DNA markers have been used to characterize the germplasm and it helps to evaluate the genetic relationships among the diversity. Besides this it also provide the information about ecology, population genetics and evolution.
In 17th century due to industrial revolution, the overall face of traditional agriculture was changed. Agricultural productivity could have become possible because of the work of Mendel in the field of genetics but the traditional cultivars were replaced by the modern varieties. Challenge came before us to increase the agriculture food productivity to meet the food requirement of fast growing population. Plant genetic resource stored in different part of world would have become the principle way to enhance the food productivity. Most of the genetic resources had resistance power against pest disease and harsh environment. In fact in many research programme the PGR were not introduced by researchers because of the difficulty in evaluation of materials with respect of height, growth and other morphological characters of plant. Despite of this limitation they were remain important factor in plant improvement. The hopes are kept towards the biotechnology to overcome the limitation. Biotechnology is the tool to use the genes governing the desirable characters to induce the qualitative changes and also the resistance against the stresses from wild species.
Only Plant genetic resources or any single technology will not help us to produce healthy agriculture production. To face the enormous challenge of food production to growing population, we need to work with all different technology with keeping PGR as an important factor. It is also important to conserve the wild species for future use. This is a time to commit ourselves to feed our future generations with healthy and eco friendly food.
References.
· H.D. Upadhyaya, CLL Gowda
· Cropwildrelatives.org
· Plant genetic resources management: Journal, ICRISAT India.
· Conservation of genetic resources in the tropical forest management.
Principle and concepts, by FAO.