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动态时间转录组分析揭示葡萄VlMYB59调控模块控制坐果。

Dynamic temporal transcriptome analysis reveals grape VlMYB59- regulatory module controls fruit set.

作者信息

Shi Qiaofang, Li Xufei, Yang Shengdi, Zhao Xiaochun, Yue Yihan, Yang Yingjun, Yu Yihe

机构信息

College of Horticulture and Plant Protection, Henan University of Science and Technology, Luoyang 471023, Henan Province, China.

Fujian Agriculture and Forestry University, Fuzhou 350002, Fujian Province, China.

出版信息

Hortic Res. 2024 Jul 10;11(9):uhae183. doi: 10.1093/hr/uhae183. eCollection 2024 Sep.

Abstract

Fruit set is a key stage in determining yield potential and guaranteeing quality formation and regulation. N-(2-chloro-4-pyridyl)-N'-phenylurea (CPPU) has been widely applied in grape production, the most iconic of which is the promotion of grape fruit set. However, current studies still lack the molecular mechanism of CPPU-induced grape fruit set. Here, the dynamic, high-resolution stage-specific transcriptome profiles were generated based on two different treatments and five developmental periods during fruit set in 'Kyoho' grape ( L. × L.). Pairwise comparison and functional category analysis showed that phytohormone action cytokinin was significantly enriched during the CPPU-induced grape fruit set, but not the natural one. Value differentially expressed gene (VDEG) was a newly proposed analysis strategy for mining genes related to the grape fruit set. Notably, the cytokinin metabolic process was significantly enriched among up-regulated VDEGs. Of importance, a key VDEG related to the cytokinin metabolic process was identified as related to the grape fruit set. Overexpression of gene promoted the Arabidopsis plants that produce more and heavier siliques. The transcription factor VlMYB59 directly bound to the promoter of and activated its expression. Moreover, overexpression of gene also promoted the Arabidopsis fruit set. Overall, VlMYB59 responded to CPPU treatment and directly activated the expression of , thus promoting the fruit set. A regulatory pathway of the VlMYB59- module in the fruit set was uncovered, which provides important insights into the molecular mechanisms of the fruit set and good genetic resources for high fruit set rate breeding.

摘要

坐果是决定产量潜力以及保证品质形成和调控的关键阶段。N-(2-氯-4-吡啶基)-N'-苯基脲(CPPU)已在葡萄生产中广泛应用,其中最具代表性的是促进葡萄坐果。然而,目前的研究仍缺乏CPPU诱导葡萄坐果的分子机制。在此,基于‘巨峰’葡萄(Vitis vinifera L. × Vitis labrusca L.)坐果期间的两种不同处理和五个发育时期,生成了动态、高分辨率的阶段特异性转录组图谱。成对比较和功能类别分析表明,在CPPU诱导的葡萄坐果过程中,植物激素作用细胞分裂素显著富集,而自然坐果过程中则不然。价值差异表达基因(VDEG)是一种新提出的挖掘与葡萄坐果相关基因的分析策略。值得注意的是,细胞分裂素代谢过程在上调的VDEG中显著富集。重要的是,一个与细胞分裂素代谢过程相关的关键VDEG被鉴定为与葡萄坐果有关。基因的过表达促进了拟南芥植株产生更多、更重的角果。转录因子VlMYB59直接与基因的启动子结合并激活其表达。此外,基因的过表达也促进了拟南芥的坐果。总体而言,VlMYB59响应CPPU处理并直接激活基因的表达,从而促进坐果。揭示了坐果过程中VlMYB59-模块的调控途径,这为坐果的分子机制提供了重要见解,并为高坐果率育种提供了良好的遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6035/11374532/1dc37d30f972/uhae183f1.jpg

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