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首页> 外文期刊>Science China Life Sciences >Cotton GhMYB7 is predominantly expressed in developing fibers and regulates secondary cell wall biosynthesis in transgenic Arabidopsis
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Cotton GhMYB7 is predominantly expressed in developing fibers and regulates secondary cell wall biosynthesis in transgenic Arabidopsis

机译:棉花GhMYB7主要在发育中的纤维中表达,并调节转基因拟南芥中次生细胞壁的生物合成。

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摘要

The secondary cell wall in mature cotton fibers contains over 90% cellulose with low quantities of xylan and lignin. However, little is known regarding the regulation of secondary cell wall biosynthesis in cotton fibers. In this study, we characterized an R2R3-MYB transcription factor, GhMYB7 , in cotton. GhMYB7 is expressed at a high level in developing fibers and encodes a MYB protein that is targeted to the cell nucleus and has transcriptional activation activity. Ectopic expression of GhMYB7 in Arabidopsis resulted in small, curled, dark green leaves and also led to shorter inflorescence stems. A cross-sectional assay of basal stems revealed that cell wall thickness of vessels and interfascicular fibers was higher in transgenic lines overexpressing GhMYB7 than in the wild type. Constitutive expression of GhMYB7 in Arabidopsis activated the expression of a suite of secondary cell wall biosynthesis-related genes (including some secondary cell wall-associated transcription factors), leading to the ectopic deposition of cellulose and lignin. The ectopic deposition of secondary cell walls may have been initiated before the cessation of cell expansion. Moreover, GhMYB7 was capable of binding to the promoter regions of AtSND1 and AtCesA4 , suggesting that GhMYB7 may function upstream of NAC transcription factors. Collectively, these findings suggest that GhMYB7 is a potential transcriptional activator, which may participate in regulating secondary cell wall biosynthesis of cotton fibers.
机译:成熟棉纤维中的二次细胞壁含有90%以上的纤维素以及少量的木聚糖和木质素。然而,关于棉纤维中二次细胞壁生物合成的调控知之甚少。在这项研究中,我们表征了棉花中的R2R3-MYB转录因子GhMYB7。 GhMYB7在发育中的纤维中高水平表达,并编码靶向于细胞核并具有转录激活活性的MYB蛋白。 GhMYB7在拟南芥中的异位表达导致小而卷曲的深绿色叶子,也导致花序茎较短。基底茎的横断面分析显示,过表达GhMYB7的转基因品系中的血管和束间纤维的细胞壁厚度均高于野生型。 GhMYB7在拟南芥中的组成性表达激活了一组与次级细胞壁生物合成相关的基因(包括一些次级细胞壁相关的转录因子)的表达,从而导致纤维素和木质素的异位沉积。辅助细胞壁的异位沉积可能已在细胞扩增停止之前开始。此外,GhMYB7能够结合到AtSND1和AtCesA4的启动子区域,表明GhMYB7可能在NAC转录因子的上游起作用。总的来说,这些发现表明GhMYB7是潜在的转录激活因子,其可能参与调节棉纤维的次级细胞壁生物合成。

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