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棉花 XLIM 蛋白(GhXLIM6)通过维持动态 F-actin 细胞骨架和调节纤维素生物合成来促进纤维发育。

The cotton XLIM protein (GhXLIM6) is required for fiber development via maintaining dynamic F-actin cytoskeleton and modulating cellulose biosynthesis.

机构信息

Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, 430079, China.

出版信息

Plant J. 2018 Dec;96(6):1269-1282. doi: 10.1111/tpj.14108. Epub 2018 Oct 29.

Abstract

LIM domain proteins are cysteine-rich proteins, and are often considered as actin bundlers and transcription factors in plants. However, the roles of XLIM proteins in plants (especially in cotton) remain unexplored in detail so far. In this study, we identified a cotton XLIM protein (GhXLIM6) that is preferentially expressed in cotton fiber during whole elongation stage and early secondary cell wall (SCW) synthesis stage. The GhXLIM6-silenced transgenic cotton produces shorter fibers with thinner cell walls, compared with wild-type (WT). GhXLIM6 protein could directly bind F-actin and promote actin polymerization both in vitro and in vivo. It also acts as a transcription factor to suppress GhKNL1 expression through binding the PAL-box element of GhKNL1 promoter, and subsequently regulate the expression of CesA genes related to cellulose biosynthesis and deposition in SCWs of cotton fibers. The cellulose content in fibers of GhXLIM6RNAi cotton is lower than that in WT. Taken together, these data reveal the dual roles of GhXLIM6 in fiber development. On one hand, GhXLIM6 functions in fiber elongation through binding to F-actin to maintain the dynamic F-actin cytoskeleton. On the other hand, GhXLIM6 fine-tunes fiber SCW formation, probably through directly suppressing transcription of GhKNL1 to promote cellulose biosynthesis.

摘要

LIM 结构域蛋白富含半胱氨酸,通常被认为是植物中的肌动蛋白结合蛋白和转录因子。然而,到目前为止,XLIM 蛋白在植物(尤其是棉花)中的作用还没有被详细研究。在本研究中,我们鉴定了一个棉花 XLIM 蛋白(GhXLIM6),它在整个伸长阶段和早期次生细胞壁(SCW)合成阶段在棉花纤维中优先表达。与野生型(WT)相比,GhXLIM6 沉默的转基因棉花产生的纤维更短,细胞壁更薄。GhXLIM6 蛋白可以直接结合 F-肌动蛋白,并在体外和体内促进肌动蛋白聚合。它还作为转录因子,通过结合 GhKNL1 启动子的 PAL 盒元件来抑制 GhKNL1 的表达,从而调节与纤维素生物合成和沉积相关的 CesA 基因在棉花纤维次生细胞壁中的表达。GhXLIM6RNAi 棉花纤维中的纤维素含量低于 WT。总之,这些数据揭示了 GhXLIM6 在纤维发育中的双重作用。一方面,GhXLIM6 通过结合 F-肌动蛋白来维持动态的 F-肌动蛋白细胞骨架,从而在纤维伸长中发挥作用。另一方面,GhXLIM6 精细地调节纤维 SCW 的形成,可能通过直接抑制 GhKNL1 的转录来促进纤维素的生物合成。

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