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bHLH95(一种基本螺旋-环-螺旋转录因子家族成员)的过表达通过调节番茄中的赤霉素生物合成来影响毛状体的形成。

Overexpression of bHLH95, a basic helix-loop-helix transcription factor family member, impacts trichome formation via regulating gibberellin biosynthesis in tomato.

作者信息

Chen Yao, Su Dan, Li Jie, Ying Shiyu, Deng Heng, He Xiaoqing, Zhu Yunqi, Li Ying, Chen Ya, Pirrello Julien, Bouzayen Mondher, Liu Yongsheng, Liu Mingchun

机构信息

Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, Sichuan, PR China.

Department of Metabolic Biology, John Innes Centre, Norwich Research Park, Norwich, UK.

出版信息

J Exp Bot. 2020 Jun 22;71(12):3450-3462. doi: 10.1093/jxb/eraa114.

Abstract

Trichomes are epidermal protuberances on aerial parts of plants known to play an important role in biotic and abiotic stresses. To date, our knowledge of the regulation of trichome formation in crop species is very limited. Through phenotyping of the Solanum pennellii×S. lycopersicum (cv. M82) introgression population, we identified the SlbHLH95 transcription factor as a negative regulator of trichome formation in tomato. In line with this negative role, SlbHLH95 displayed a very low expression in stems where trichomes are present at high density. Overexpression of SlbHLH95 resulted in a dramatically reduced trichome density in stems and a significant down-regulation of a set of trichome-related genes. In addition to the lower trichome density, overexpressing lines also showed pleiotropic alterations affecting both vegetative and reproductive development. While most of these phenotypes were reminiscent of gibberellin (GA)-deficient phenotypes, expression studies showed that two GA biosynthesis genes, SlGA20ox2 and SlKS5, are significantly down-regulated in SlbHLH95-OE plants. Moreover, in line with a decrease in active GA content, the glabrous and dwarf phenotypes were rescued by exogenous GA treatment. In addition, yeast one-hybrid and transactivation assays revealed that SlbHLH95 represses the expression of SlGA20ox2 and SlKS5 via direct binding to their promoters. Taken together, our study established a link between SlbHLH95, GA, and trichome formation, and uncovered the role of this gene in modulating GA biosynthesis in tomato.

摘要

毛状体是植物地上部分的表皮突起,已知在生物和非生物胁迫中起重要作用。迄今为止,我们对作物物种中毛状体形成调控的了解非常有限。通过对彭氏茄×栽培番茄(品种M82)渐渗群体进行表型分析,我们鉴定出SlbHLH95转录因子是番茄中毛状体形成的负调控因子。与这种负向作用一致,SlbHLH95在毛状体高密度存在的茎中表达极低。SlbHLH95的过表达导致茎中毛状体密度显著降低,并使一组与毛状体相关的基因显著下调。除了较低的毛状体密度外,过表达系还表现出影响营养和生殖发育的多效性改变。虽然这些表型大多让人联想到赤霉素(GA)缺乏的表型,但表达研究表明,两个GA生物合成基因SlGA20ox2和SlKS5在SlbHLH95过表达植株中显著下调。此外,与活性GA含量降低一致,无毛和矮化表型通过外源GA处理得以恢复。此外,酵母单杂交和反式激活试验表明,SlbHLH95通过直接结合SlGA20ox2和SlKS5的启动子来抑制它们的表达。综上所述,我们的研究建立了SlbHLH95、GA和毛状体形成之间的联系,并揭示了该基因在调节番茄GA生物合成中的作用。

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