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植物中的GH3家族:水稻全基因组分析及基于EST分析的进化史

The GH3 family in plants: genome wide analysis in rice and evolutionary history based on EST analysis.

作者信息

Terol Javier, Domingo Concha, Talón Manuel

机构信息

Departamento de Genómica, Instituto Valenciano de Investigaciones Agrarias (IVIA), Ctra. Moncada Náquera Km 4,5, Moncada (Valencia) 46113, Spain.

出版信息

Gene. 2006 Apr 26;371(2):279-90. doi: 10.1016/j.gene.2005.12.014. Epub 2006 Feb 20.

Abstract

The GH3 gene family in Arabidopsis, implicated in hormonal homeostasis through the conjugation of indolacetic and jasmonic acids to amino acids, is involved in a broad range of plant growth and development processes. In this work, the analysis of the GH3 family in the genome of Oryza sativa identified 13 hypothetical ORFs. EST analysis and RT-PCR assays demonstrated that 12 of them were active genes. An extensive EST analysis of the GH3 family performed on 26 plant species was used to estimate the minimum number of GH3 genes en each one. The data indicated that the members of the GH3 family progressively increased in the different plant divisions from Chlorophyta (0), Bryophyta (3), and Coniferophyta (4), to Magnoliophyta (7-19). Phylogenetic analyses showed a high degree of conservation between Arabidopsis and rice GH3 proteins and, in general, in the plant kingdom. The data revealed a homology clustering consistent with the functional classification of the Arabidopsis proteins, since most of the 110 sequences analyzed grouped into 2 main clusters, corresponding to the Arabidopsis functional groups I (jasmonic acid adenylation) and II (indolacetic acid adenylation). And additional cluster including group III (non-adenylation ability) was exclusively composed of proteins from Arabidopsis thaliana, Brassica napus and Gossypium hirsutum.

摘要

拟南芥中的GH3基因家族通过将吲哚乙酸和茉莉酸与氨基酸结合参与激素稳态,涉及广泛的植物生长和发育过程。在这项工作中,对水稻基因组中的GH3家族分析鉴定出13个假定的开放阅读框。EST分析和RT-PCR检测表明其中12个是活性基因。对26种植物进行的GH3家族广泛EST分析用于估计每种植物中GH3基因的最小数量。数据表明,GH3家族成员在不同植物类群中逐渐增加,从绿藻门(0个)、苔藓植物门(3个)、松柏植物门(4个)到木兰植物门(7 - 19个)。系统发育分析表明拟南芥和水稻GH3蛋白之间以及一般在植物界中具有高度保守性。数据揭示了与拟南芥蛋白功能分类一致的同源聚类,因为分析的110个序列中的大多数分为2个主要聚类,对应于拟南芥功能组I(茉莉酸腺苷化)和II(吲哚乙酸腺苷化)。另一个包括组III(无腺苷化能力)的聚类仅由来自拟南芥、甘蓝型油菜和陆地棉的蛋白组成。

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