发展气候适应型作物品种的传统与现代育种方法综述

Q4 Immunology and Microbiology
Kruti Rajendra Prabhu, Ashutosh Kumar, Rufida Shahni Yumkhaibam, Harmeet Singh Janeja, Bal Krishna, Nilesh Talekar
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引用次数: 0

摘要

气候变化的威胁日益加剧,是对全球粮食安全的重大挑战。减轻其影响的方法之一是开发能够承受干旱、高温和盐度等环境压力的作物。植物育种家一直在采用传统和现代方法来培育适应气候变化的作物。气候适应型作物是指对生物和非生物胁迫表现出更强耐受性的作物和作物品种。这些作物在遭受干旱、洪水、高温、寒冷、冰冻和盐度等各种胁迫条件时,具有保持甚至增加产量的能力。传统育种需要选择和杂交具有理想性状的植物,而现代育种利用分子技术来识别和转移与抗逆性相关的特定基因。然而,这两种方法的有效性取决于作物种类和目标胁迫。CRISPER-cas9和基因组辅助育种等基因编辑技术的进步,为加速开发适应气候变化的作物提供了新的机会。这些新技术包括标记辅助选择、全基因组关联研究、突变育种、转录组学、基因组学等。这篇综述的结论是,这些尖端技术有可能提高培育能够承受气候变化带来的挑战的作物的速度和精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review on conventional and modern breeding approaches for developing climate resilient crop varieties
The escalating threat of climate change is a major challenge to global food security. One of the ways to mitigate its impact is by developing crops that can withstand environmental stresses such as drought, heat, and salinity. Plant breeders have been employing conventional and modern approaches to achieve climate-resilient crops. Climate-resilient crops refer to both crop and crop varieties that exhibit improved tolerance towards biotic and abiotic stresses. These crops possess the capacity to maintain or even increase their yields when exposed to various stress conditions, such as drought, flood, heat, chilling, freezing and salinity. Conventional breeding entails selecting and crossing plants with desirable traits, while modern breeding deploys molecular techniques to identify and transfer specific genes associated with stress tolerance. However, the effectiveness of both methods is contingent on the crop species and the targeted stress. Advancements in gene editing, such as CRISPER-cas9 and genomics-assisted breeding, offer new opportunities to hasten the development of climate-resilient crops. These new technologies include Marker Assisted Selection, Genome-Wide Association Studies, Mutation breeding, Transcriptomics, Genomics, and more. The review concludes that these cutting-edge techniques have the potential to enhance the speed and precision of developing crops that can endure the challenges posed by climate change.
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来源期刊
Journal of Applied and Natural Science
Journal of Applied and Natural Science Immunology and Microbiology-Immunology and Microbiology (all)
CiteScore
0.80
自引率
0.00%
发文量
168
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