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描述一种乙烯诱导、钙依赖的核酸内切酶,它在黄瓜花发育过程中差异表达。

Characterization of an ethylene-inducible, calcium-dependent nuclease that is differentially expressed in cucumber flower development.

机构信息

PKU-Yale Joint Research Center of Agricultural and Plant Molecular Biology, National Key Laboratory of Protein Engineering and Plant Gene Engineering, College of Life Sciences, Peking University, Beijing, China.

出版信息

New Phytol. 2011 Nov;192(3):590-600. doi: 10.1111/j.1469-8137.2011.03825.x. Epub 2011 Jul 31.

Abstract

• Production of unisexual flowers is an important mechanism that promotes cross-pollination in angiosperms. We previously identified primordial anther-specific DNA damage and organ-specific ethylene perception responsible for the arrest of stamen development in female flowers, but little is known about how the two processes are linked. • To identify potential links between the two processes, we performed suppression subtractive hybridization (SSH) on cucumber (Cucumis sativus L.) stamens of male and female flowers at stage 6, with stamens at stage 5 of bisexual flowers as a control. • Among the differentially expressed genes, we identified an expressed sequence tag (EST) encoding a cucumber homolog to an Arabidopsis calcium-dependent nuclease (CAN), designated CsCaN. Full-length CsCaN cDNA and the respective genomic DNA sequence were cloned and characterized. The CsCaN protein exhibited calcium-dependent nuclease activity. CsCaN showed ubiquitous expression; however, increased gene expression was detected in the stamens of stage 6 female flowers compared with male flowers. As expected, CsCaN expression was ethylene inducible. It was of great interest that CsCaN was post-translationally modified. • This study demonstrated that CsCaN is a novel cucumber nuclease gene, whose DNase activity is regulated at multiple levels, and which could be involved in the primordial anther-specific DNA damage of developing female cucumber flowers.

摘要

• 单性花的产生是促进被子植物异花授粉的一个重要机制。我们之前已经确定了原始花粉囊特异性 DNA 损伤和器官特异性乙烯感知,这两者共同导致了雌花中雄蕊发育的停滞,但对于这两个过程是如何联系起来的,我们知之甚少。• 为了鉴定这两个过程之间的潜在联系,我们在黄瓜(Cucumis sativus L.)花的 6 期雄蕊中进行了抑制差减杂交(SSH),以两性花的 5 期雄蕊作为对照。• 在差异表达基因中,我们鉴定出一个编码拟南芥钙依赖性核酸酶(CAN)黄瓜同源物的表达序列标签(EST),命名为 CsCaN。克隆并表征了全长 CsCaN cDNA 和相应的基因组 DNA 序列。CsCaN 蛋白表现出钙依赖性核酸酶活性。CsCaN 表现出广泛的表达模式;然而,与雄花相比,在 6 期雌花的雄蕊中检测到基因表达增加。正如预期的那样,CsCaN 的表达受到乙烯的诱导。有趣的是,CsCaN 发生了翻译后修饰。• 本研究表明,CsCaN 是一个新的黄瓜核酸酶基因,其 DNA 酶活性受到多个水平的调控,可能参与了发育中的雌性黄瓜花原始花粉囊特异性 DNA 损伤。

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