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Physiology Based Approaches for Breeding of Next-Generation Food Legumes

机译:基于生理的下一代豆类食品育种方法

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Plant breeders and agricultural scientists of the 21st century are challenged to increase the yield potentials of crops to feed the growing world population. Climate change, the resultant stresses and increasing nutrient deficiencies are factors that are to be considered in designing modern plant breeding pipelines. Underutilized food legumes have the potential to address these issues and ensure food security in developing nations of the world. Food legumes in the past have drawn limited research funding and technological attention when compared to cereal crops. Physiological breeding strategies that were proven to be successful in cereals are to be adapted to legume crop improvement to realize their potential. The gap between breeders and physiologists should be narrowed by collaborative approaches to understand complex traits in legumes. This review discusses the potential of physiology based approaches in food legume breeding and how they impact yield gains and abiotic stress tolerance in these crops. The influence of roots and root system architectures in food legumes’ breeding is also discussed. Molecular breeding to map the relevant physiological traits and the potentials of gene editing those traits are detailed. It is imperative to unlock the potentials of these underutilized crops to attain sustainable environmental and nutritional food security.
机译:挑战21世纪的植物育种家和农业科学家,以提高农作物的增产潜力,以满足日益增长的世界人口的需求。气候变化,由此产生的压力和日益增加的养分缺乏是设计现代植物育种管道时要考虑的因素。未充分利用的豆类食品有潜力解决这些问题,并确保世界发展中国家的粮食安全。与谷物作物相比,过去的豆类食品获得的研究资金和技术关注都有限。已被证明在谷物中成功的生理育种策略将被用于改良豆类作物以发挥其潜力。育种者和生理学家之间的差距应通过协作方法来缩小,以了解豆类的复杂特征。这篇综述讨论了基于生理学方法在豆类食品育种中的潜力,以及它们如何影响这些作物的增产和非生物胁迫耐受性。还讨论了根和根系统架构对食用豆类育种的影响。详细介绍了绘制相关生理性状的分子育种以及基因编辑这些性状的潜力。必须释放这些未充分利用的农作物实现可持续的环境和营养粮食安全的潜力。

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