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水稻 AP2/EREBP 转录因子家族的基因结构、分类和表达模型。

Gene structures, classification and expression models of the AP2/EREBP transcription factor family in rice.

机构信息

Plant Genome Research Unit, Division of Genome and Biodiversity Research, National Institute of Agrobiological Sciences (NIAS), Tsukuba, Ibaraki, 305-8602 Japan.

出版信息

Plant Cell Physiol. 2011 Feb;52(2):344-60. doi: 10.1093/pcp/pcq196. Epub 2010 Dec 17.

Abstract

We identified 163 AP2/EREBP (APETALA2/ethylene-responsive element-binding protein) genes in rice. We analyzed gene structures, phylogenies, domain duplication, genome localizations and expression profiles. Conserved amino acid residues and phylogeny construction using the AP2/ERF conserved domain sequence suggest that in rice the OsAP2/EREBP gene family can be classified broadly into four subfamilies [AP2, RAV (related to ABI3/VP1), DREB (dehydration-responsive element-binding protein) and ERF (ethylene-responsive factor)]. The chromosomal localizations of the OsAP2/EREBP genes indicated 20 segmental duplication events involving 40 genes; 58 redundant OsAP2/EREBP genes were involved in tandem duplication events. There were fewer introns after segmental duplication. We investigated expression profiles of this gene family under biotic stresses [infection with rice viruses such as rice stripe virus (RSV), rice tungro spherical virus (RTSV) and rice dwarf virus (RDV, three virus strains S, O and D84)], and various abiotic stresses. Symptoms of virus infection were more severe in RSV infection than in RTSV and RDV infection. Responses to biotic stresses are novel findings and these stresses enhance the ability to identify the best candidate genes for further functional analysis. The genes of subgroup B-5 were not induced under abiotic treatments whereas they were activated by the three RDV strains. None of the genes of subgroups A-3 were differentially expressed by any of the biotic stresses. Our 44K and 22K microarray results suggest that 53 and 52 non-redundant genes in this family were up-regulated in response to biotic and abiotic stresses, respectively. We further examined the stress responsiveness of most genes by reverse transcription-PCR. The study results should be useful in selecting candidate genes from specific subgroups for functional analysis.

摘要

我们在水稻中鉴定出 163 个 AP2/EREBP(APETALA2/ethylene-responsive element-binding protein)基因。我们分析了基因结构、系统发育、结构域重复、基因组定位和表达谱。保守氨基酸残基和基于 AP2/ERF 保守结构域序列的系统发育构建表明,在水稻中,OsAP2/EREBP 基因家族可以广泛分为四个亚家族[AP2、RAV(与 ABI3/VP1 相关)、DREB(脱水响应元件结合蛋白)和 ERF(乙烯响应因子)]。OsAP2/EREBP 基因的染色体定位表明,涉及 40 个基因的 20 个片段重复事件;58 个冗余 OsAP2/EREBP 基因参与串联重复事件。片段重复后内含子较少。我们研究了该基因家族在生物胁迫[感染水稻病毒,如水稻条纹病毒(RSV)、水稻草丛矮缩病毒(RTSV)和水稻矮缩病毒(RDV,三个病毒株 S、O 和 D84)]和各种非生物胁迫下的表达谱。与 RTSV 和 RDV 感染相比,RSV 感染的症状更为严重。对生物胁迫的反应是新的发现,这些胁迫增强了识别进一步功能分析最佳候选基因的能力。亚组 B-5 的基因在非生物处理下没有被诱导,而在三种 RDV 株系下被激活。亚组 A-3 的基因没有一个对任何生物胁迫表现出差异表达。我们的 44K 和 22K 微阵列结果表明,该家族的 53 个和 52 个非冗余基因分别对生物和非生物胁迫有上调表达。我们进一步通过反转录-PCR 检查了大多数基因的应激反应性。该研究结果对于从特定亚组中选择候选基因进行功能分析应该是有用的。

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