Key Laboratory of Ministry of Education for Plant Functional Genomics, Yangzhou University, Yangzhou, 225009, China.
Mol Biol Rep. 2010 Dec;37(8):3991-4001. doi: 10.1007/s11033-010-0058-6. Epub 2010 Mar 16.
The phytohormone auxin is important in various aspects of organism growth and development. Aux/IAA genes encoding short-lived nuclear proteins are responsive primarily to auxin induction. Despite their physiological importance, systematic analysis of Aux/IAA genes in maize have not yet been reported. In this paper, we presented the isolation and characterization of maize Aux/IAA genes in whole-genome scale. A total of 31 maize Aux/IAA genes (ZmIAA1 to ZmIAA31) were identified. ZmIAA genes are distributed in all the maize chromosomes except chromosome 2. Aux/IAA genes expand in the maize genome partly due to tandem and segmental duplication events. Multiple alignment and motif display results revealed major maize Aux/IAA proteins share all the four conserved domains. Phylogenetic analysis indicated Aux/IAA family can be divided into seven subfamilies. Putative cis-acting regulatory DNA elements involved in auxin response, light signaling transduction and abiotic stress adaption were observed in the promoters of ZmIAA genes. Expression data mining suggested maize Aux/IAA genes have temporal and spatial expression pattern. Collectively, these results will provide molecular insights into the auxin metabolism, transport and signaling research.
植物激素生长素在生物体生长和发育的各个方面都很重要。编码短寿命核蛋白的Aux/IAA 基因主要对生长素诱导有反应。尽管它们具有生理重要性,但玉米 Aux/IAA 基因的系统分析尚未报道。在本文中,我们以全基因组规模呈现了玉米 Aux/IAA 基因的分离和特征。总共鉴定了 31 个玉米 Aux/IAA 基因(ZmIAA1 到 ZmIAA31)。ZmIAA 基因分布在除染色体 2 以外的所有玉米染色体上。Aux/IAA 基因在玉米基因组中扩张部分是由于串联和片段重复事件。多重比对和基序显示结果表明,主要的玉米 Aux/IAA 蛋白都具有所有四个保守结构域。系统发育分析表明 Aux/IAA 家族可以分为七个亚家族。在 ZmIAA 基因的启动子中观察到涉及生长素反应、光信号转导和非生物胁迫适应的推定顺式作用调控 DNA 元件。表达数据挖掘表明,玉米 Aux/IAA 基因具有时空表达模式。总的来说,这些结果将为生长素代谢、运输和信号转导研究提供分子见解。