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Molecular Genetic Approaches for Environmental Stress Tolerant Crop Plants: Progress and Prospects

机译:耐环境胁迫作物的分子遗传学方法:进展与展望

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摘要

Background: Global food security is threatened by the severe environmental conditions that have reduced the worldwide crop yield. Plants possess inherent mechanisms to cope with the initial stress phase but to ensure their survival through harsh climate, the intervention of genetic engineering is desirable. Objective: We present a comprehensive review on the progress made in the field of developing environmental stress tolerant crops and the prospects that can be undertaken for achieving it. Methods: We review the effects of abiotic and biotic stresses on crop plants, and the use of different molecular genetic approaches to cope with these environmental stresses for establishment of sustainable agriculture. The various strategies employed in different crops have also been discussed. We also summarized the major patents in the field of plant stress tolerance that have been granted in the last five years. Results: On the basis of these analyses, we propose that genetic engineering of crops is the preferred approach over the traditional methods for yielding healthier and viable agriculture in response to the different stressful environments. The wild progenitors of cultivated crop species can prove to be highly potential genetic resources in this regard and can be exploited to produce better crops that are relatively tolerant towards various environmental stresses. Conclusion: Thus, elucidation of genetic loci and deciphering the underlying mechanisms that confer tolerance to plants against stressful conditions followed by its successful introgression into elite, high-yielding crop varieties can be an effective way to engineer the crops for sustainable agriculture.
机译:背景:全球粮食安全受到严峻的环境条件的威胁,这些条件已经降低了全球农作物的产量。植物具有应对初始胁迫阶段的内在机制,但为了确保其在恶劣气候下的存活,需要进行基因工程干预。目标:我们对开发耐环境胁迫的农作物领域取得的进展以及实现这一目标的前景进行了全面回顾。方法:我们回顾了非生物和生物胁迫对农作物的影响,以及使用不同的分子遗传学方法应对这些环境胁迫以建立可持续农业。还讨论了在不同作物中采用的各种策略。我们还总结了近五年来在植物抗逆性领域中的主要专利。结果:在这些分析的基础上,我们提出,与传统方法相比,农作物基因工程是应对不同压力环境而生产更健康,可行的农业的首选方法。在这方面,栽培作物物种的野生祖先被证明是极具潜力的遗传资源,可以被用来生产相对耐受各种环境胁迫的更好的作物。结论:因此,阐明基因位点并弄清赋予植物抗逆性的基本机制,然后成功地将其渗入优良的高产农作物品种,可以成为为可持续农业设计农作物的有效方法。

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