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一个 CsTu-TS1 调控模块促进黄瓜果实瘤形成。

A CsTu-TS1 regulatory module promotes fruit tubercule formation in cucumber.

机构信息

Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, College of Horticulture, China Agricultural University, Beijing, China.

Beijing Vegetable Research Center (BVRC), Beijing Academy of Agricultural and Forestry Sciences, National Engineering Research Center for Vegetables, Beijing, China.

出版信息

Plant Biotechnol J. 2019 Jan;17(1):289-301. doi: 10.1111/pbi.12977. Epub 2018 Jul 22.

Abstract

The fruit epidermal features such as the size of tubercules are important fruit quality traits for cucumber production. But the mechanisms underlying tubercule formation remain elusive. Here, tubercule size locus CsTS1 was identified by map-based cloning and was found to encode an oleosin protein. Allelic variation was identified in the promoter region of CsTS1, resulting in low expression of CsTS1 in all 22 different small-warty or nonwarty cucumber lines. High CsTS1 expression levels were closely correlated with increased fruit tubercule size among 44 different cucumber lines. Transgenic complementation and RNAi-mediated gene silencing of CsTS1 in transgenic cucumber plants demonstrated that CsTS1 positively regulates the development of tubercules. CsTS1 is highly expressed in the peel at fruit tubercule forming and enlargement stage. Auxin content and expression of three auxin signalling pathway genes were altered in the 35S:CsTS1 and CsTS1-RNAi fruit tubercules, a result that was supported by comparing the cell size of the control and transgenic fruit tubercules. CsTu, a C H zinc finger domain transcription factor that regulates tubercule initiation, binds directly to the CsTS1 promoter and promotes its expression. Taken together, our results reveal a novel mechanism in which the CsTu-TS1 complex promotes fruit tubercule formation in cucumber.

摘要

果实表皮特征(如瘤状突起的大小)是黄瓜生产中重要的果实品质性状。但是,瘤状突起形成的机制仍然难以捉摸。在这里,通过图谱克隆鉴定出了瘤状大小位点 CsTS1,并发现它编码一个油体蛋白。在 CsTS1 的启动子区域鉴定到等位变异,导致 22 种不同的小疣或无疣黄瓜品系中 CsTS1 的表达均较低。高 CsTS1 表达水平与 44 种不同黄瓜品系中果实瘤状突起的增大密切相关。CsTS1 在转基因黄瓜植株中的转基因互补和 RNAi 介导的基因沉默表明,CsTS1 正向调节瘤状突起的发育。CsTS1 在果实瘤状突起形成和增大阶段的果皮中高度表达。在 35S:CsTS1 和 CsTS1-RNAi 果实瘤状突起中,生长素含量和三种生长素信号通路基因的表达发生改变,这一结果通过比较对照和转基因果实瘤状突起的细胞大小得到了支持。CsTu,一种调节瘤状突起起始的 C H 锌指结构域转录因子,直接结合到 CsTS1 启动子并促进其表达。总之,我们的结果揭示了一个新的机制,即 CsTu-TS1 复合物在黄瓜中促进果实瘤状突起的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53f3/11386637/014974bd144d/PBI-17-289-g002.jpg

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