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葡萄蔓枝细胞相关的 VvMYB60 转录因子参与调控气孔活动,并对 ABA 和渗透胁迫有差异表达。

The grapevine guard cell-related VvMYB60 transcription factor is involved in the regulation of stomatal activity and is differentially expressed in response to ABA and osmotic stress.

机构信息

Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Via Celoria 26, 20133 Milano, Italy.

出版信息

BMC Plant Biol. 2011 Oct 21;11:142. doi: 10.1186/1471-2229-11-142.

Abstract

BACKGROUND

Under drought, plants accumulate the signaling hormone abscisic acid (ABA), which induces the rapid closure of stomatal pores to prevent water loss. This event is trigged by a series of signals produced inside guard cells which finally reduce their turgor. Many of these events are tightly regulated at the transcriptional level, including the control exerted by MYB proteins. In a previous study, while identifying the grapevine R2R3 MYB family, two closely related genes, VvMYB30 and VvMYB60 were found with high similarity to AtMYB60, an Arabidopsis guard cell-related drought responsive gene.

RESULTS

Promoter-GUS transcriptional fusion assays showed that expression of VvMYB60 was restricted to stomatal guard cells and was attenuated in response to ABA. Unlike VvMYB30, VvMYB60 was able to complement the loss-of-function atmyb60-1 mutant, indicating that VvMYB60 is the only true ortholog of AtMYB60 in the grape genome. In addition, VvMYB60 was differentially regulated during development of grape organs and in response to ABA and drought-related stress conditions.

CONCLUSIONS

These results show that VvMYB60 modulates physiological responses in guard cells, leading to the possibility of engineering stomatal conductance in grapevine, reducing water loss and helping this species to tolerate drought under extreme climatic conditions.

摘要

背景

在干旱条件下,植物会积累信号激素脱落酸(ABA),这会诱导气孔迅速关闭以防止水分流失。这一事件是由保卫细胞内产生的一系列信号触发的,最终会降低其膨压。其中许多事件在转录水平上受到严格调控,包括 MYB 蛋白的控制。在之前的一项研究中,在鉴定葡萄 R2R3 MYB 家族时,发现了两个密切相关的基因 VvMYB30 和 VvMYB60,它们与拟南芥保卫细胞相关的干旱响应基因 AtMYB60 具有高度相似性。

结果

启动子-GUS 转录融合分析表明,VvMYB60 的表达仅限于气孔保卫细胞,并且对 ABA 有反应。与 VvMYB30 不同,VvMYB60 能够弥补 atmyb60-1 突变体的功能丧失,表明 VvMYB60 是葡萄基因组中 AtMYB60 的唯一真正同源物。此外,VvMYB60 在葡萄器官的发育过程中以及对 ABA 和干旱相关胁迫条件的反应中受到差异调控。

结论

这些结果表明,VvMYB60 调节保卫细胞的生理反应,有可能在葡萄中工程化气孔导度,减少水分流失,并帮助该物种在极端气候条件下耐受干旱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d645/3206852/9b723e0f297e/1471-2229-11-142-1.jpg

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