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一个不同的扩展蛋白基因的表达具有果实特异性且受成熟调控。

Expression of a divergent expansin gene is fruit-specific and ripening-regulated.

作者信息

Rose J K, Lee H H, Bennett A B

机构信息

Mann Laboratory, Department of Vegetable Crops, University of California, Davis, CA 95616, USA.

出版信息

Proc Natl Acad Sci U S A. 1997 May 27;94(11):5955-60. doi: 10.1073/pnas.94.11.5955.

Abstract

Expansins are proteins that induce extension in isolated plant cell walls in vitro and have been proposed to disrupt noncovalent interactions between hemicellulose and cellulose microfibrils. Because the plant primary cell wall acts as a constraint to cell enlargement, this process may be integral to plant cell expansion, and studies of expansins have focused on their role in growth. We report the identification of an expansin (LeExp1) from tomato that exhibits high levels of mRNA abundance and is specifically expressed in ripening fruit, a developmental period when growth has ceased but when selective disassembly of cell wall components is pronounced. cDNAs closely related to LeExp1 were also identified in ripening melons and strawberries, suggesting that they are a common feature of fruit undergoing rapid softening. Furthermore, the sequence of LeExp1 and its homologs from other ripening fruit define a subclass of expansin genes. Expression of LeExp1 is regulated by ethylene, a hormone known to coordinate and induce ripening in many species. LeExp1 is differentially expressed in the ripening-impaired tomato mutants Nr, rin, and nor, and mRNA abundance appears to be influenced directly by ethylene and by a developmentally modulated transduction pathway. The identification of a ripening-regulated expansin gene in tomato and other fruit suggests that, in addition to their role in facilitating the expansion of plant cells, expansins may also contribute to cell wall disassembly in nongrowing tissues, possibly by enhancing the accessibility of noncovalently bound polymers to endogenous enzymic action.

摘要

扩展蛋白是一类能在体外诱导离体植物细胞壁伸展的蛋白质,有人提出它们可破坏半纤维素与纤维素微纤丝之间的非共价相互作用。由于植物初生细胞壁对细胞增大起到限制作用,所以这一过程可能是植物细胞扩张所必需的,对扩展蛋白的研究也主要集中在其在生长过程中的作用。我们报道了从番茄中鉴定出一种扩展蛋白(LeExp1),它在成熟果实中mRNA丰度很高且特异性表达,而成熟果实这一发育阶段生长已经停止,但细胞壁成分的选择性分解却很明显。在成熟的甜瓜和草莓中也鉴定出了与LeExp1密切相关的cDNA,这表明它们是快速软化果实的共同特征。此外,LeExp1及其来自其他成熟果实的同源物序列定义了扩展蛋白基因的一个亚类。LeExp1的表达受乙烯调控,乙烯是一种已知能在许多物种中协调并诱导成熟的激素。LeExp1在成熟受损的番茄突变体Nr、rin和nor中差异表达,其mRNA丰度似乎直接受乙烯以及一条发育调控的信号转导途径影响。在番茄和其他果实中鉴定出受成熟调控的扩展蛋白基因,这表明扩展蛋白除了在促进植物细胞扩张中发挥作用外,还可能通过增强非共价结合聚合物对内源酶作用的可及性,促进非生长组织中细胞壁的分解。

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