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Molecular characterization and expression analysis of the Rop GTPase family in Vitis vinifera

机译:葡萄中Rop GTPase家族的分子表征和表达分析

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摘要

Rop/Rac GTPases are plant-specific signalling proteins with multiple roles, some of which have implications in plant development and in hormone signal transduction. Using expressed sequence tag (EST) and gene database analyses, members of the Rop family were characterized for the first time in a perennial species (Vitis vinifera). The grapevine genome was found to contain seven expressed VvRops. The phylogenetic analyses indicated that VvRops could be distributed into four groups, as described in the literature for model plants. Genetic mapping was successfully performed for five VvRops, which were localized on independent linkage groups. Conserved and divergent regions were identified on the protein sequences. The results of VvRop expression obtained by real-time quantitative reverse transcription-PCR analyses indicated that all the organs investigated displayed VvRop expression, however with different patterns. Whereas no total organ specificity for VvRop expression could be evidenced, VvRop9 displayed high expression in developing berries only. During berry development, the transcript profile was generally similar for all the VvRops, i.e. displaying a peak early in the herbaceous phase followed by a decline towards veraison and thereafter. Western blotting gave a similar expression profile for VvRop proteins. Response to growth regulators was generally specific to each VvRop. The potential involvement of specific VvRops in grapevine development is discussed.
机译:Rop / Rac GTPases是具有多种作用的植物特异性信号蛋白,其中一些对植物发育和激素信号转导有影响。使用表达的序列标签(EST)和基因数据库分析,首次在多年生物种(Vitis vinifera)中对Rop家族的成员进行了表征。发现葡萄的基因组包含七个表达的VvRops。系统发育分析表明,VvRops可以分为四类,如有关模型植物的文献所述。对五个VvRops成功进行了遗传定位,它们位于独立的连锁群上。在蛋白质序列上鉴定了保守和不同的区域。通过实时定量逆转录-PCR分析获得的VvRop表达的结果表明,所研究的所有器官均显示VvRop表达,但是具有不同的模式。尽管无法证明VvRop表达的全部器官特异性,但VvRop9仅在发育中的浆果中显示高表达。在浆果发育过程中,所有VvRops的转录本特征通常都相似,即在草本期早期显示一个峰值,然后在veraison下降,此后下降。蛋白质印迹法给出了VvRop蛋白的相似表达谱。对生长调节剂的反应通常针对每个VvRop。讨论了特定VvRops在葡萄发育中的潜在参与。

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