Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, College of Horticulture, China Agricultural University, Beijing, China.
USDA-ARS, Vegetable Crops Research Unit, Horticultural Department, University of Wisconsin-Madison, WI, USA.
J Exp Bot. 2018 Apr 9;69(8):1887-1902. doi: 10.1093/jxb/ery047.
Fruit epidermal features such as the number and size of trichomes or spines are important fruit quality traits in cucumber production. Little is known about the molecular mechanisms underlying fruit spine formation in cucumber. Here, we report functional characterization of the cucumber CsMYB6 gene, which encodes a MIXTA-like MYB transcription factor that plays an important role in regulating fruit trichome development. Spatial-temporal expression analyses revealed high-level expression of CsMYB6 in the epidermis of cucumber ovaries during fruit spine initiation, which was similar to the expression of CsTRY, a homolog of the Arabidopsis TRY gene that also plays a key role in trichome development. Overexpression of CsMYB6 and CsTRY in cucumber and Arabidopsis revealed that CsMYB6 and CsTRY act as negative regulators of trichome initiation in both species, and that CsMYB6 acted upstream of CsTRY in this process. CsMYB6 was found to bind to the three MYB binding sites inside the promoter region of CsTRY, and protein-protein interaction assays suggested that CsTRY also directly interacted with CsMYB6 protein. The results also revealed conserved and divergent roles of CsMYB6 and its Arabidopsis homolog AtMYB106 in trichome development. Collectively, our results reveal a novel mechanism in which the CsMYB6-CsTRY complex negatively regulates fruit trichome formation in cucumber.
果实表皮特征,如毛状体或刺的数量和大小,是黄瓜生产中重要的果实品质性状。然而,关于黄瓜果实刺形成的分子机制知之甚少。在这里,我们报告了黄瓜 CsMYB6 基因的功能特征,该基因编码一个类似于 MIXTA 的 MYB 转录因子,在调节果实毛状体发育中起着重要作用。时空表达分析显示,CsMYB6 在黄瓜果实刺起始时的表皮中高水平表达,与拟南芥 TRY 基因的同源物 CsTRY 的表达相似,TRY 基因也在毛状体发育中起关键作用。过表达 CsMYB6 和 CsTRY 在黄瓜和拟南芥中发现,CsMYB6 和 CsTRY 作为两种物种毛状体起始的负调节剂起作用,并且在这个过程中 CsMYB6 作用于 CsTRY 的上游。发现 CsMYB6 结合到 CsTRY 启动子区域内的三个 MYB 结合位点,并且蛋白-蛋白相互作用试验表明 CsTRY 还直接与 CsMYB6 蛋白相互作用。结果还揭示了 CsMYB6 及其拟南芥同源物 AtMYB106 在毛状体发育中的保守和分歧作用。总之,我们的结果揭示了 CsMYB6-CsTRY 复合物负调控黄瓜果实毛状体形成的新机制。