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时尚与科学的完美结合:先进的培育方法如何彻底改变纺织业。

Fashion meets science: how advanced breeding approaches could revolutionize the textile industry.

机构信息

Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana, India.

Department of Plant Pathology, ND State University, Fargo, ND, USA.

出版信息

Crit Rev Biotechnol. 2024 Dec;44(8):1653-1679. doi: 10.1080/07388551.2024.2314309. Epub 2024 Mar 7.

Abstract

Natural fibers have garnered considerable attention owing to their desirable textile properties and advantageous effects on human health. Nevertheless, natural fibers lag behind synthetic fibers in terms of both quality and yield, as these attributes are largely genetically determined. In this article, a comprehensive overview of the natural and synthetic fiber production landscape over the last 10 years is presented, with a particular focus on the role of scientific breeding techniques in improving fiber quality traits in key crops like cotton, hemp, ramie, and flax. Additionally, the article delves into cutting-edge genomics-assisted breeding techniques, including QTL mapping, genome-wide association studies, transgenesis, and genome editing, and their potential role in enhancing fiber quality traits in these crops. A user-friendly compendium of 11226 available QTLs and significant marker-trait associations derived from 136 studies, associated with diverse fiber quality traits in these crops is furnished. Furthermore, the potential applications of transcriptomics in these pivotal crops, elucidating the distinct genes implicated in augmenting fiber quality attributes are investigated. Additionally, information on 11257 candidate/characterized or cloned genes sourced from various studies, emphasizing their key role in the development of high-quality fiber crops is collated. Additionally, the review sheds light on the current progress of marker-assisted selection for fiber quality traits in each crop, providing detailed insights into improved cultivars released for different fiber crops. In conclusion, it is asserted that the application of modern breeding tools holds tremendous potential in catalyzing a transformative shift in the textile industry.

摘要

天然纤维因其理想的纺织性能和对人类健康的有益影响而受到广泛关注。然而,与合成纤维相比,天然纤维在质量和产量方面都存在不足,因为这些特性在很大程度上是由遗传决定的。本文全面概述了过去 10 年天然纤维和合成纤维的生产情况,特别关注了科学育种技术在提高棉花、大麻、苎麻和亚麻等主要作物纤维品质特性方面的作用。此外,本文还深入探讨了最新的基于基因组学的育种技术,包括 QTL 作图、全基因组关联研究、转基因和基因组编辑,以及它们在这些作物中提高纤维品质特性的潜在作用。本文提供了一个易于使用的 11226 个可用 QTL 和 136 项研究中得出的与这些作物中各种纤维品质特性相关的显著标记-性状关联的综合汇编。此外,还研究了转录组学在这些关键作物中的潜在应用,阐明了与提高纤维品质属性相关的独特基因。此外,还收集了来自不同研究的 11257 个候选/特征基因或克隆基因的信息,强调了它们在优质纤维作物发展中的关键作用。此外,本文还介绍了每种作物中纤维品质性状的标记辅助选择的当前进展,详细介绍了不同纤维作物发布的改良品种。总之,本文认为现代育种工具的应用具有巨大的潜力,可以推动纺织业的革命性转变。

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