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首页> 外文期刊>Plant signaling & behavior >The expression of VvPHYA and VvPHYB transcripts is differently regulated by photoperiod in leaves and buds of grapevines
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The expression of VvPHYA and VvPHYB transcripts is differently regulated by photoperiod in leaves and buds of grapevines

机译:VvPHYA和VvPHYB转录本的表达受葡萄叶和芽中光周期的调控

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Light signals perceived by phytochromes (Phys) and crypto-chromes (Crys) play key roles in plant growth and development and in photoperiod dependant process such as flowering, tuber-ization, seasonal growth cessation and dormancy. The integration of the light signals with the endogenous circadian oscillator provides plants with a mechanism to monitor changes in photo-period or day-length. In a recent report, we established that in Vitis vinifera L. cv Thompson Seedless, photoperiod drives the entrance of buds into endodormancy (ED) and modifies the expression of VvPHYA and VvPHYB transcripts in grapevine leaves, suggesting that both VvPHYs could play crucial roles in SD-induced transition of bud into ED. Here, we aimed to establish whether the transition of grapevine buds into ED is a mere consequence of a decision taken in the leaf or whether the bud responds by itself to photoperiod. Results show that in defoliated grapevine canes, bud-ED development is delayed compared with non-defoliated control canes, and that under LD-photoperiod both VvPHYA and VvPHYB transcripts are highly expressed in grapevine buds, whilst under SD-photoperiod both VvPHYs are downregulated and expression can not be detected. Overall, the results suggest that grapevine bud behaves as semi-autonomous organ in sensing the photoperiod signal, and that VvPHYA and VvPHYB gene expression is differendy regulated by photoperiod in leaf and bud of grapevines.
机译:被植物色素(Phys)和隐色铬(Crys)感知的光信号在植物的生长和发育以及光周期相关的过程(例如开花,块茎化,季节性生长停止和休眠)中起着关键作用。光信号与内源性昼夜节律振荡器的集成为植物提供了监测光周期或日长变化的机制。在最近的一份报告中,我们确定在无籽葡萄中,光周期驱动芽进入内吸性(ED)并修饰葡萄叶中VvPHYA和VvPHYB转录本的表达,表明这两个VvPHYs均可在葡萄中发挥关键作用。 SD诱导的芽向ED过渡。在这里,我们旨在确定葡萄树芽向ED的过渡仅仅是叶片中决定的结果,还是芽对光周期本身做出反应。结果表明,在脱叶的葡萄藤中,芽ED的发育比未脱叶的对照藤茎延迟,并且在LD-光周期下,VvPHYA和VvPHYB转录本在葡萄芽中高表达,而在SD-光周期下,两个VvPHYs均被下调和无法检测到表达式。总体而言,这些结果表明,葡萄芽在感知光周期信号方面表现为半自治器官,并且VvPHYA和VvPHYB基因表达受到葡萄叶和芽中光周期的差异调节。

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