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Genome-Wide Analysis of the AP2/ERF Transcription Factors Family and the Expression Patterns of DREB Genes in Moso Bamboo (Phyllostachys edulis)

机译:毛竹AP2 / ERF转录因子家族的全基因组分析和DREB基因的表达模式

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摘要

The AP2/ERF transcription factor family, one of the largest families unique to plants, performs a significant role in terms of regulation of growth and development, and responses to biotic and abiotic stresses. Moso bamboo (Phyllostachys edulis) is a fast-growing non-timber forest species with the highest ecological, economic and social values of all bamboos in Asia. The draft genome of moso bamboo and the available genomes of other plants provide great opportunities to research global information on the AP2/ERF family in moso bamboo. In total, 116 AP2/ERF transcription factors were identified in moso bamboo. The phylogeny analyses indicated that the 116 AP2/ERF genes could be divided into three subfamilies: AP2, RAV and ERF; and the ERF subfamily genes were divided into 11 groups. The gene structures, exons/introns and conserved motifs of the PeAP2/ERF genes were analyzed. Analysis of the evolutionary patterns and divergence showed the PeAP2/ERF genes underwent a large-scale event around 15 million years ago (MYA) and the division time of AP2/ERF family genes between rice and moso bamboo was 15–23 MYA. We surveyed the putative promoter regions of the PeDREBs and showed that largely stress-related cis-elements existed in these genes. Further analysis of expression patterns of PeDREBs revealed that the most were strongly induced by drought, low-temperature and/or high salinity stresses in roots and, in contrast, most PeDREB genes had negative functions in leaves under the same respective stresses. In this study there were two main interesting points: there were fewer members of the PeDREB subfamily in moso bamboo than in other plants and there were differences in DREB gene expression profiles between leaves and roots triggered in response to abiotic stress. The information produced from this study may be valuable in overcoming challenges in cultivating moso bamboo.
机译:AP2 / ERF转录因子家族是植物特有的最大家族之一,在调节生长和发育以及对生物和非生物胁迫的反应方面发挥着重要作用。毛竹(Phyllostachys edulis)是一种快速生长的非木材森林树种,在亚洲所有竹子中具有最高的生态,经济和社会价值。毛竹的基因组草案和其他植物的可用基因组为研究有关毛竹AP2 / ERF家族的全球信息提供了巨大的机会。在毛竹中总共鉴定出116个AP2 / ERF转录因子。系统进化分析表明,116个AP2 / ERF基因可分为三个亚科:AP2,RAV和ERF。将ERF亚家族基因分为11组。分析了PeAP2 / ERF基因的基因结构,外显子/内含子和保守基序。对进化模式和趋异性的分析表明,PeAP2 / ERF基因经历了大约1500万年前(MYA)的大规模事件,并且AP2 / ERF家族基因在水稻和毛竹之间的分裂时间为15-23 MYA。我们调查了PeDREBs的推定的启动子区域,并表明这些基因中存在很大程度上与压力相关的顺式元件。对PeDREBs表达模式的进一步分析表明,大多数受干旱,低温和/或高盐分胁迫根部强烈诱导,相反,大多数PeDREB基因在相同的胁迫下在叶片中具有负功能。在这项研究中,有两个主要有趣的观点:毛竹中PeDREB亚科的成员比其他植物少,并且响应非生物胁迫而触发的叶和根之间的DREB基因表达谱存在差异。从这项研究中获得的信息可能对克服毛竹栽培中的挑战很有价值。

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