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全基因组研究和表达分析表明,生长素响应 GH3 基因在番茄(Solanum lycopersicum)发育和对不同刺激的反应中具有多种功能。

Genome-wide investigation and expression analysis suggest diverse roles of auxin-responsive GH3 genes during development and response to different stimuli in tomato (Solanum lycopersicum).

机构信息

Department of Plant Molecular Biology, University of Delhi, South Campus, New Delhi, 110021, India.

出版信息

Mol Genet Genomics. 2012 Mar;287(3):221-35. doi: 10.1007/s00438-011-0672-6. Epub 2012 Jan 8.

DOI:10.1007/s00438-011-0672-6
PMID:22228229
Abstract

In plants, auxin-mediated responses are regulated by diverse proteins. One such class of proteins, i.e. GH3, is involved in the conjugation of IAA to amino acids and provides a negative feedback loop to control auxin homoeostasis. In order to have a better understanding of the mechanism of the auxin action, 15 genes encoding GH3 members were identified using existing EST databases of tomato. Their orthologs were identified from tobacco, potato, N. benthemiana, pepper, and petunia. Phylogenetic analysis of AtGH3, SlGH3, and their Solanaceae orthologs provided insights into various orthologous relationships among these proteins. These genes were found to be responsive to a variety of signals including, phytohormones and environmental stresses. Analysis of AuxRE elements in their promoters showed variability in the sequence as well as number of this element. Up-regulation of only 11 SlGH3 genes, in response to exogenous auxin, suggested possible relationship between the diversity in the sequence and number of AuxRE element with the auxin inducibility. Expression analysis of SlGH3 genes in different vegetative and reproductive tissues/stages suggested limited or no role for most of the SlGH3 genes at the initiation of fruit ripening. However, up-regulation of SlGH3-1 and -2 at the onset of fruit ripening indicates that these genes could have a role in fruit ripening. The present study characterizes GH3 gene family of tomato and its evolutionary relationship with members of this family from other Solanaceae species and Arabidopsis. It could help in the identification of GH3 genes and revelation of their function during vegetative/reproductive development stages from other Solanaceae members.

摘要

在植物中,生长素介导的反应受多种蛋白质调节。GH3 是参与 IAA 与氨基酸结合的蛋白质之一,为生长素的稳态提供了负反馈回路。为了更好地了解生长素作用的机制,利用番茄现有的 EST 数据库鉴定了 15 个编码 GH3 成员的基因。从烟草、马铃薯、N. benthemiana、辣椒和矮牵牛中鉴定出它们的同源物。AtGH3、SlGH3 及其茄科同源物的系统发育分析提供了这些蛋白质之间各种同源关系的见解。这些基因对包括植物激素和环境胁迫在内的各种信号有反应。对其启动子中 AuxRE 元件的分析表明,该元件的序列和数量存在可变性。仅 11 个 SlGH3 基因对外源生长素的上调表明,AuxRE 元件的序列和数量的多样性与生长素的诱导能力之间可能存在关系。SlGH3 基因在不同营养和生殖组织/阶段的表达分析表明,在果实成熟开始时,大多数 SlGH3 基因的作用有限或没有。然而,SlGH3-1 和 -2 在果实成熟开始时的上调表明这些基因可能在果实成熟过程中发挥作用。本研究描述了番茄的 GH3 基因家族及其与其他茄科物种和拟南芥成员的进化关系。它可以帮助识别 GH3 基因,并揭示它们在其他茄科成员的营养/生殖发育阶段的功能。

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