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毛状体双折射样基因的全基因组特征分析为提高纤维产量提供了见解。

Genome-wide characterization of trichome birefringence-like genes provides insights into fiber yield improvement.

作者信息

Li Ziyin, Shi Yuzhen, Xiao Xianghui, Song Jikun, Li Pengtao, Gong Juwu, Zhang Haibo, Gong Wankui, Liu Aiying, Peng Renhai, Shang Haihong, Ge Qun, Li Junwen, Pan Jingtao, Chen Quanjia, Lu Quanwei, Yuan Youlu

机构信息

Engineering Research Centre of Cotton, Ministry of Education, College of Agriculture, Xinjiang Agricultural University, Urumqi, China.

School of Biotechnology and Food Engineering, Anyang Institute of Technology, Anyang, China.

出版信息

Front Plant Sci. 2023 Mar 15;14:1127760. doi: 10.3389/fpls.2023.1127760. eCollection 2023.

Abstract

Cotton is an important fiber crop. The cotton fiber is an extremely long trichome that develops from the epidermis of an ovule. The trichome is a general and multi-function plant organ, and () genes are related to trichome development. At the genome-wide scale, we identified in four cotton species, comprising two cultivated tetraploids ( and ) and two ancestral diploids ( and ). Phylogenetic analysis showed that the genes clustered into six groups. We focused on in group IV because it was located in a lint percentage-related quantitative trait locus. In addition, we used transcriptome profiling to characterize the role of in group IV in fiber development. The overexpression of in resulted in more trichomes on the stems, thereby confirming its function in fiber development. Moreover, the potential interaction network was constructed based on the co-expression network, and it was found that may interact with several genes to regulate fiber development. These findings expand our knowledge of family members and provide new insights for cotton molecular breeding.

摘要

棉花是一种重要的纤维作物。棉纤维是一种极其长的毛状体,由胚珠表皮发育而来。毛状体是一种普遍的多功能植物器官,()基因与毛状体发育相关。在全基因组范围内,我们在四个棉种中鉴定到了(相关基因),包括两个栽培四倍体(和)以及两个原始二倍体(和)。系统发育分析表明,(相关)基因聚为六组。我们聚焦于第四组中的(某个基因),因为它位于一个与皮棉百分率相关的数量性状位点上。此外,我们利用转录组分析来表征第四组中的(该基因)在纤维发育中的作用。(该基因)在(某种植物)中的过表达导致茎上产生更多毛状体,从而证实了其在纤维发育中的功能。此外,基于共表达网络构建了潜在的相互作用网络,发现(该基因)可能与几个基因相互作用来调节纤维发育。这些发现扩展了我们对(该)基因家族成员的认识,并为棉花分子育种提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be93/10050746/23ced5c2ee6f/fpls-14-1127760-g001.jpg

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