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根毛缺陷3基因编码一种具有GTP结合基序的进化保守蛋白,是拟南芥中调控细胞膨大所必需的。

The ROOT HAIR DEFECTIVE3 gene encodes an evolutionarily conserved protein with GTP-binding motifs and is required for regulated cell enlargement in Arabidopsis.

作者信息

Wang H, Lockwood S K, Hoeltzel M F, Schiefelbein J W

机构信息

Department of Biology, University of Michigan, Ann Arbor 48109, USA.

出版信息

Genes Dev. 1997 Mar 15;11(6):799-811. doi: 10.1101/gad.11.6.799.

Abstract

In plants, morphogenesis is largely determined by the orientation and extent of cell enlargement. To define the molecular mechanisms regulating plant cell enlargement, we have conducted a molecular genetic analysis of the ROOT HAIR DEFECTIVE3 (RHD3) gene of Arabidopsis thaliana. Mutations affecting the RHD3 gene were found to alter cell size, but not cell number, in tissues throughout the plant. Genetic and physiological analyses suggest that the RHD3 gene is not required for proper cell type specification, and it is likely to act downstream of the hormones auxin and ethylene. The RHD3 gene was cloned by a T-DNA tagging method and confirmed by the molecular complementation of the rhd3 mutant phenotype and by the analyses of six rhd3 mutant alleles. Consistent with the global effects of the rhd3 mutations, the RHD3 gene is expressed in all major plant organs. The deduced RHD3 product is a novel 89-kD polypeptide with putative GTP-binding motifs near the amino terminus. RHD3-like genes were identified from a protozoan (Entamoeba histolytica), a fungus (Saccharomyces cerevisiae), and another plant species (Oryza sativa), with the sequence identity including the putative GTP-binding motifs. These results imply that the RHD3 protein is a member of a new class of GTP-binding proteins that is widespread in eukaryotes and required for regulated cell enlargement.

摘要

在植物中,形态发生很大程度上由细胞增大的方向和程度决定。为了确定调控植物细胞增大的分子机制,我们对拟南芥的根毛缺陷3(RHD3)基因进行了分子遗传学分析。发现影响RHD3基因的突变会改变整个植物组织中的细胞大小,但不会改变细胞数量。遗传和生理学分析表明,RHD3基因对于正确的细胞类型特化并非必需,并且它可能在生长素和乙烯激素的下游起作用。通过T-DNA标签法克隆了RHD3基因,并通过rhd3突变体表型的分子互补以及对六个rhd3突变等位基因的分析进行了确认。与rhd3突变的全局效应一致,RHD3基因在所有主要植物器官中均有表达。推导的RHD3产物是一种新型的89-kD多肽,在氨基末端附近具有推定的GTP结合基序。从原生动物(溶组织内阿米巴)、真菌(酿酒酵母)和另一种植物物种(水稻)中鉴定出了RHD3样基因,其序列同一性包括推定的GTP结合基序。这些结果表明,RHD3蛋白是一类新型GTP结合蛋白的成员,这类蛋白在真核生物中广泛存在,并且是调控细胞增大所必需的。

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