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从辣椒果实中分离出的一个类似GH3的基因CcGH3受生长素和乙烯调控。

A GH3-like gene, CcGH3, isolated from Capsicum chinense L. fruit is regulated by auxin and ethylene.

作者信息

Liu Kede, Kang Byoung-Cheorl, Jiang Hui, Moore Shanna L, Li Hanxia, Watkins Christopher B, Setter Tim L, Jahn Molly M

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agriculture University, 430070, Wuhan, Hubei Province, China.

出版信息

Plant Mol Biol. 2005 Jul;58(4):447-64. doi: 10.1007/s11103-005-6505-4.

Abstract

Auxin, which has been implicated in multiple biochemical and physiological processes, elicits three classes of genes (Aux/IAAs, SAURs and GH3s) that have been characterized by their early or primary responses to the hormone. A new GH3-like gene was identified from a suppressive subtraction hybridization (SSH) library of pungent pepper (Capsicum chinense L.) cDNAs. This gene, CcGH3, possessed several auxin- and ethylene-inducible elements in the putative promoter region. Upon further investigation, CcGH3 was shown to be auxin-inducible in shoots, flower buds, sepals, petals and most notably ripening and mature pericarp and placenta. Paradoxically, this gene was expressed in fruit when auxin levels were decreasing, consistent with ethylene-inducibility. Further experiments demonstrated that CcGH3 was induced by endogenous ethylene, and that transcript accumulation was inhibited by 1-methylcyclopropene, an inhibitor of ethylene perception. When over-expressed in tomato, CcGH3 hastened ripening of ethylene-treated fruit. These results implicate CcGH3 as a factor in auxin and ethylene regulation of fruit ripening and suggest that it may be a point of intersection in the signaling by these two hormones.

摘要

生长素参与了多种生化和生理过程,它能诱导三类基因(Aux/IAAs、SAURs和GH3s),这些基因的特点是对该激素有早期或主要反应。从辛辣辣椒(Capsicum chinense L.)cDNA的抑制性消减杂交(SSH)文库中鉴定出一个新的类GH3基因。这个基因,即CcGH3,在假定的启动子区域含有几个生长素和乙烯诱导元件。进一步研究表明,CcGH3在茎、花芽、萼片、花瓣中,最显著的是在成熟和成熟的果皮及胎座中受生长素诱导。矛盾的是,当生长素水平下降时,该基因在果实中表达,这与乙烯诱导性一致。进一步的实验表明,CcGH3受内源性乙烯诱导,且转录物积累受乙烯感知抑制剂1-甲基环丙烯抑制。当在番茄中过表达时,CcGH3加速了乙烯处理果实的成熟。这些结果表明CcGH3是果实成熟过程中生长素和乙烯调节的一个因子,并表明它可能是这两种激素信号传导的一个交汇点。

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