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热胁迫下的棉花:分子育种、基因组学和多组学策略的综合综述

Cotton under heat stress: a comprehensive review of molecular breeding, genomics, and multi-omics strategies.

作者信息

Luqman Tahira, Hussain Manzoor, Ahmed Syed Riaz, Ijaz Iram, Maryum Zahra, Nadeem Sahar, Khan Zafran, Khan Sana Muhy Ud Din, Aslam Mohammad, Liu Yongming, Khan Muhammad Kashif Riaz

机构信息

Nuclear Institute for Agriculture and Biology-Constituent College (NIAB-C), Pakistan Institute of Engineering and Applied Science Nilore, Islamabad, Pakistan.

Plant Breeding and Genetics Division, Cotton Group, Nuclear Institute for Agriculture and Biology, Faisalabad, Pakistan.

出版信息

Front Genet. 2025 Mar 18;16:1553406. doi: 10.3389/fgene.2025.1553406. eCollection 2025.

Abstract

Cotton is a vital fiber crop for the global textile industry, but rising temperatures due to climate change threaten its growth, fiber quality and yields. Heat stress disrupts key physiological and biochemical processes, affecting carbohydrate metabolism, hormone signaling, calcium and gene regulation and expression. This review article explores cotton's defense mechanism against heat stress, including epigenetic regulations and transgenic approaches, with a focus on genome editing tools. Given the limitations of traditional breeding, advanced omics technologies such as GWAS, transcriptomics, proteomics, ionomics, metabolomics, phenomics and CRISPR-Cas9 offer promising solutions for developing heat-resistant cotton varieties. This review highlights the need for innovative strategies to ensure sustainable cotton production under climate change.

摘要

棉花是全球纺织业至关重要的纤维作物,但气候变化导致的气温上升威胁着其生长、纤维品质和产量。热应激会扰乱关键的生理和生化过程,影响碳水化合物代谢、激素信号传导、钙以及基因调控与表达。本文综述探讨了棉花抵御热应激的防御机制,包括表观遗传调控和转基因方法,重点关注基因组编辑工具。鉴于传统育种的局限性,全基因组关联研究(GWAS)、转录组学、蛋白质组学、离子组学、代谢组学、表型组学和CRISPR-Cas9等先进的组学技术为培育耐热棉花品种提供了有前景的解决方案。本文综述强调了需要创新策略以确保在气候变化下棉花的可持续生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/430a/11959566/a3279325385d/fgene-16-1553406-g001.jpg

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