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改善作物农艺性状对多种胁迫的影响:现代生物技术和组学方法。

Ameliorating the effects of multiple stresses on agronomic traits in crops: modern biotechnological and omics approaches.

机构信息

Genome Engineering and Societal Biotechnology Lab, Division of Plant Biotechnology, SKUAST-K, Shalimar, Srinagar, Jammu and Kashmir, 190025, India.

Plant Breeding Institute, School of Life and Environmental Sciences, Faculty of Science, Sydney Institute of Agriculture, The University of Sydney, Eveleigh, Australia.

出版信息

Mol Biol Rep. 2023 Dec 29;51(1):41. doi: 10.1007/s11033-023-09042-8.

Abstract

While global climate change poses a significant environmental threat to agriculture, the increasing population is another big challenge to food security. To address this, developing crop varieties with increased productivity and tolerance to biotic and abiotic stresses is crucial. Breeders must identify traits to ensure higher and consistent yields under inconsistent environmental challenges, possess resilience against emerging biotic and abiotic stresses and satisfy customer demands for safer and more nutritious meals. With the advent of omics-based technologies, molecular tools are now integrated with breeding to understand the molecular genetics of genotype-based traits and develop better climate-smart crops. The rapid development of omics technologies offers an opportunity to generate novel datasets for crop species. Identifying genes and pathways responsible for significant agronomic traits has been made possible by integrating omics data with genetic and phenotypic information. This paper discusses the importance and use of omics-based strategies, including genomics, transcriptomics, proteomics and phenomics, for agricultural and horticultural crop improvement, which aligns with developing better adaptability in these crop species to the changing climate conditions.

摘要

虽然全球气候变化对农业构成了重大的环境威胁,但人口增长是粮食安全的另一个大挑战。为了解决这个问题,开发具有更高生产力和对生物及非生物胁迫耐受性的作物品种至关重要。培育者必须确定能够在环境挑战不一致的情况下确保更高和更稳定产量的性状,具有对新出现的生物及非生物胁迫的恢复力,并满足客户对更安全、更营养膳食的需求。随着基于组学的技术的出现,分子工具现在与育种相结合,以了解基于基因型的性状的分子遗传学,并开发更好的适应气候变化的作物。组学技术的快速发展为作物物种提供了生成新数据集的机会。通过将组学数据与遗传和表型信息相结合,鉴定负责重要农艺性状的基因和途径成为可能。本文讨论了基于组学的策略(包括基因组学、转录组学、蛋白质组学和表型组学)在农业和园艺作物改良中的重要性和应用,这与提高这些作物品种对不断变化的气候条件的适应能力是一致的。

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