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功能分化的GL2相互作用阻遏物1同源基因调控陆地棉表皮毛发育。

Functionally differentiated GL2-interacting-repressor 1 homoeologs regulate epidermal hair development of Gossypium hirsutum.

作者信息

Yu Li, Zhao Xuan, Hua Langjing, Yuan Rong, Wei Yiting, Luo Kun, Ma Long-En, Hu Xin, Feng Shengjun, Du Xiongming, Wu Gang, He Shoupu, Guan Xueying, Cao Yuefen, Ding Mingquan, Rong Junkang

机构信息

College of Advanced Agricultural Sciences, Zhejiang A&F University, Linan, Hangzhou, Zhejiang 311300, China.

Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, Zhejiang 310058, China.

出版信息

Plant Physiol. 2025 May 30;198(2). doi: 10.1093/plphys/kiaf184.

Abstract

Cotton (Gossypium. spp) stem trichomes and seed fibers are unicellular epidermal hairs regulated by relevant molecular networks. Genetic analysis of the glabrous stem landrace (Palmeri37) of Gossypium hirsutum L. has pinpointed GL2-interacting-repressor 1 (GhGIR1D), featuring a RING-like zinc finger domain, as the candidate gene underlying the stem glabrous trait. Overexpressing and silencing experiments confirm GhGIR1D as a negative regulator specifically for stem trichome initiation, without influencing leaf trichome or seed fiber. High endogenous expression of GhGIR1D is associated with a SNP-573 T/G variation within the promoter region, and GhGIR1D Hap I confers the absence of stem trichomes. The homoeologous protein, GhGIR1A, inhibits trichome and fuzz fiber initiation by disrupting the GhHD1D-GhHOX3A module (a complex of 2 Homeodomain-Leucine Zipper IV transcription factors, HD-ZIP IV), and repressing downstream transcription of GhRDL1. Trichome density was enhanced in GhHD1A overexpression transgenic lines but reduced in ghhd1a mutants, demonstrating the positive regulatory role of GhHD1A on stem trichome initiation. GhHD1 displays distinct effects on stem trichome and fuzz fiber initiation due to its tissue-specific dosage. In the ghhd1a mutants, repression of GhGIR1D restores the wild-type pubescent phenotype, suggesting the presence of a potential negative feedback loop between GhGIR1D and GhHD1A, or that GhGIR1D and GhHD1A may function within the same regulatory pathway with opposite functions in regulation of trichome development. These findings enhance our comprehension of the GhGIR1-GhHD1-GhHOX3 interaction module in epidermal hair initiation and development.

摘要

棉花(棉属物种)的茎毛状体和种子纤维是由相关分子网络调控的单细胞表皮毛。对陆地棉无毛茎地方品种(Palmeri37)的遗传分析已确定具有类RING锌指结构域的GL2相互作用阻遏物1(GhGIR1D)为茎无毛性状的候选基因。过表达和沉默实验证实GhGIR1D是茎毛状体起始的特异性负调控因子,不影响叶毛状体或种子纤维。GhGIR1D的高内源表达与启动子区域内的SNP-573 T/G变异相关,并且GhGIR1D单倍型I导致茎上没有毛状体。同源蛋白GhGIR1A通过破坏GhHD1D-GhHOX3A模块(由2个同源异型域-亮氨酸拉链IV转录因子HD-ZIP IV组成的复合物)并抑制GhRDL1的下游转录来抑制毛状体和绒毛纤维的起始。在GhHD1A过表达转基因系中叶毛状体密度增加,但在ghhd1a突变体中降低,表明GhHD1A对茎毛状体起始具有正向调控作用。由于其组织特异性剂量,GhHD1对茎毛状体和绒毛纤维起始表现出不同的影响。在ghhd1a突变体中,抑制GhGIR1D可恢复野生型有毛表型,这表明GhGIR1D和GhHD1A之间可能存在潜在的负反馈环,或者GhGIR1D和GhHD1A可能在毛状体发育调控的同一调控途径中发挥相反功能。这些发现增强了我们对表皮毛起始和发育中GhGIR1-GhHD1-GhHOX3相互作用模块的理解。

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