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A型拟南芥响应调节因子是细胞分裂素信号传导的部分冗余负调节因子。

Type-A Arabidopsis response regulators are partially redundant negative regulators of cytokinin signaling.

作者信息

To Jennifer P C, Haberer Georg, Ferreira Fernando J, Deruère Jean, Mason Michael G, Schaller G Eric, Alonso Jose M, Ecker Joseph R, Kieber Joseph J

机构信息

Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

Plant Cell. 2004 Mar;16(3):658-71. doi: 10.1105/tpc.018978. Epub 2004 Feb 18.

Abstract

Type-A Arabidopsis (Arabidopsis thaliana) response regulators (ARRs) are a family of 10 genes that are rapidly induced by cytokinin and are highly similar to bacterial two-component response regulators. We have isolated T-DNA insertions in six of the type-A ARRs and constructed multiple insertional mutants, including the arr3,4,5,6,8,9 hextuple mutant. Single arr mutants were indistinguishable from the wild type in various cytokinin assays; double and higher order arr mutants showed progressively increasing sensitivity to cytokinin, indicating functional overlap among type-A ARRs and that these genes act as negative regulators of cytokinin responses. The induction of cytokinin primary response genes was amplified in arr mutants, indicating that the primary response to cytokinin is affected. Spatial patterns of ARR gene expression were consistent with partially redundant function of these genes in cytokinin signaling. The arr mutants show altered red light sensitivity, suggesting a general involvement of type-A ARRs in light signal transduction. Further, morphological phenotypes of some arr mutants suggest complex regulatory interactions and gene-specific functions among family members.

摘要

A型拟南芥(Arabidopsis thaliana)响应调节因子(ARRs)是一个由10个基因组成的家族,它们能被细胞分裂素快速诱导,并且与细菌双组分响应调节因子高度相似。我们已分离出6个A型ARRs中的T-DNA插入突变体,并构建了多个插入突变体,包括arr3、4、5、6、8、9六重突变体。在各种细胞分裂素测定中,单个arr突变体与野生型没有区别;双突变体和更高阶的arr突变体对细胞分裂素的敏感性逐渐增加,这表明A型ARRs之间存在功能重叠,并且这些基因作为细胞分裂素反应的负调节因子发挥作用。细胞分裂素初级反应基因的诱导在arr突变体中得到增强,这表明对细胞分裂素的初级反应受到影响。ARR基因表达的空间模式与这些基因在细胞分裂素信号传导中的部分冗余功能一致。arr突变体表现出红光敏感性改变,这表明A型ARRs普遍参与光信号转导。此外,一些arr突变体的形态表型表明家族成员之间存在复杂的调控相互作用和基因特异性功能。

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