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棉花GhTUA9基因在纤维中特异性表达并参与细胞伸长的分子特征分析

Molecular characterization of cotton GhTUA9 gene specifically expressed in fibre and involved in cell elongation.

作者信息

Li Li, Wang Xiu-Lan, Huang Geng-Qing, Li Xue-Bao

机构信息

College of Life Sciences, HuaZhong Normal University, Wuhan 430079, China.

出版信息

J Exp Bot. 2007;58(12):3227-38. doi: 10.1093/jxb/erm167. Epub 2007 Aug 30.

Abstract

The microtubule cytoskeleton may play an important role in the polarized growth of fibre cells that are single-cell trichomes on the surface of cotton ovules. To investigate whether the high expression levels of alpha-tubulin genes are correlated with fibre elongation, nine GhTUA genes (cDNAs) encoding alpha-tubulins with 449-451 amino acid residues were isolated and characterized in cotton. The GhTUA genes share high sequence homology at the nucleotide level (62-93% identity) in the coding region and at the amino acid level (89-99% identity), and can be classified into two subgroups. Real-time quantitative RT-PCR analysis revealed that seven out of the nine GhTUA genes are predominantly expressed in developing fibres. Among them, GhTUA9 displays the highest level of expression, revealing its fibre specificity. The GhTUA9 transcripts in fibres reached its peak value between 5-10 DPA, and dramatically declined to undetectable levels as the ovule matured further, suggesting that its expression is developmentally-regulated in fibres. The GhTUA9 gene including the promoter region was isolated from the cotton genome. To demonstrate the specificity of the GhTUA9 promoter, the 5'-flanking region, including the promoter and 5'-untranslated region, was fused with the GUS gene. Histochemical assays demonstrated that the GhTUA9:GUS gene was specifically expressed in elongating fibres. Overexpression of GhTUA9 in fission yeast (Schizosaccharomyces pombe) promoted atypical longitudinal growth of the host cells by 1.4-1.7-fold, indicating that the GhTUA9 gene is involved in cell elongation. Given all the above results, it is proposed that the GhTUA9 gene may play an important role in fibre elongation.

摘要

微管细胞骨架可能在棉胚珠表面单细胞毛状体即纤维细胞的极性生长中发挥重要作用。为了研究α-微管蛋白基因的高表达水平是否与纤维伸长相关,从棉花中分离并鉴定了9个编码含有449 - 451个氨基酸残基的α-微管蛋白的GhTUA基因(cDNA)。GhTUA基因在编码区的核苷酸水平(同一性为62 - 93%)和氨基酸水平(同一性为89 - 99%)具有高度序列同源性,可分为两个亚组。实时定量RT-PCR分析表明,9个GhTUA基因中有7个主要在发育中的纤维中表达。其中,GhTUA9表达水平最高,显示出其纤维特异性。纤维中的GhTUA9转录本在开花后5 - 10天达到峰值,随着胚珠进一步成熟急剧下降至检测不到的水平,表明其表达在纤维中受发育调控。从棉花基因组中分离出包含启动子区域的GhTUA9基因。为了证明GhTUA9启动子的特异性,将包括启动子和5'-非翻译区的5'-侧翼区域与GUS基因融合。组织化学分析表明,GhTUA9:GUS基因在伸长的纤维中特异性表达。在裂殖酵母(粟酒裂殖酵母)中过表达GhTUA9可使宿主细胞的非典型纵向生长提高1.4 - 1.7倍,表明GhTUA9基因参与细胞伸长。综合上述所有结果,推测GhTUA9基因可能在纤维伸长中发挥重要作用。

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