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首页> 外文期刊>Frontiers in Plant Science >Abnormal Endogenous Repression of GA Signaling in a Seedless Table Grape Cultivar with High Berry Growth Response to GA Application
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Abnormal Endogenous Repression of GA Signaling in a Seedless Table Grape Cultivar with High Berry Growth Response to GA Application

机译:对GA应用具有高浆果生长响应的无籽食用葡萄品种中GA信号的内源性抑制异常

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Gibberellin (GA) application is routinely used in the table grape industry to increase berry size and cluster length. Although grapevine cultivars show a wide range of growth responsiveness to GA_(3)application, the reasons for these differences is unclear. To shed light on this issue, two commercial grapevine cultivars with contrasting berry response to GA were selected for comparative analysis, in which we tested if the differences in response: (1) is organ-specific or cultivar-related; (2) will be reflected in qualitative/quantitative differences in transcripts/proteins of central components of GA metabolism and signaling and levels of GA metabolites. Our results showed that in addition to the high response of its berries to GA, internodes and rachis of cv. Black finger (BF) presented a greater growth response compared to that of cv. Spring blush (SB). In agreement, the results exposed significant quantitative differences in GA signaling components in several organs of both cultivars. Exceptionally higher level of all three functional VvDELLA proteins was recorded in young BF organs, accompanied by elevated VvGID1 expression and lower VvSLY1b transcripts. Absence of seed traces, low endogenous GA quantities and lower expression of VvGA20ox4 and VvGA3ox3 were also recorded in berries of BF. Our results raise the hypothesis that, in young organs of BF, low expression of VvSLY1b may be responsible for the massive accumulation of VvDELLA proteins, which then leads to elevated VvGID1 levels. This integrated analysis suggests causal relationship between endogenous mechanisms leading to anomalous GA signaling repression in BF, manifested by high quantities of VvDELLA proteins, and greater growth response to GA application.
机译:食用葡萄行业通常使用赤霉素(GA)来增加浆果的大小和丛集的长度。尽管葡萄品种对GA_(3)的使用表现出广泛的生长响应能力,但这些差异的原因尚不清楚。为了阐明这一问题,我们选择了两个商业浆果品种,它们对GA的浆果反应形成了鲜明对比,以进行比较分析,其中我们测试了响应的差异:(1)是器官特异性还是品种相关; (2)将反映在GA代谢,信号转导和GA代谢物的主要成分的转录本/蛋白质的质/量差异上。我们的结果表明,除了浆果对GA,cv的节间和轴的高响应。与cv相比,黑手指(BF)表现出更大的生长反应。弹簧腮红(SB)。一致地,结果暴露了两个品种的几个器官中GA信号传导成分的显着定量差异。在年轻的高炉器官中记录到所有三种功能性VvDELLA蛋白的异常高水平,同时伴随着VvGID1表达的升高和VvSLY1b转录物的降低。高炉浆果中也没有种子痕迹,低内源GA量以及VvGA20ox4和VvGA3ox3的较低表达。我们的结果提出了一个假设,即在高炉的年轻器官中,VvSLY1b的低表达可能是VvDELLA蛋白大量积累的原因,然后导致VvGID1水平升高。这项综合分析表明,内源性机制之间的因果关系导致了BF中GA信号异常的抑制,这表现为大量的VvDELLA蛋白和对GA应用的更大的生长响应。

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