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Genome-Wide Identification of AP2/ERF Transcription Factors in Cauliflower and Expression Profiling of the ERF Family under Salt and Drought Stresses

机译:盐和干旱胁迫下花椰菜中AP2 / ERF转录因子的全基因组鉴定和ERF家族的表达谱

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摘要

The AP2/ERF transcription factors (TFs) comprise one of the largest gene superfamilies in plants. These TFs perform vital roles in plant growth, development, and responses to biotic and abiotic stresses. In this study, 171 AP2/ERF TFs were identified in cauliflower (Brassica oleracea L. var. botrytis), one of the most important horticultural crops in Brassica. Among these TFs, 15, 9, and 1 TFs were classified into the AP2, RAV, and Soloist family, respectively. The other 146 TFs belong to ERF family, which were further divided into the ERF and DREB subfamilies. The ERF subfamily contained 91 TFs, while the DREB subfamily contained 55 TFs. Phylogenetic analysis results indicated that the AP2/ERF TFs can be classified into 13 groups, in which 25 conserved motifs were confirmed. Some motifs were group- or subgroup- specific, implying that they are significant to the functions of the AP2/ERF TFs of these clades. In addition, 35 AP2/ERF TFs from the 13 groups were selected randomly and then used for expression pattern analysis under salt and drought stresses. The majority of these AP2/ERF TFs exhibited positive responses to these stress conditions. In specific, Bra-botrytis-ERF054a, Bra-botrytis-ERF056, and Bra-botrytis-CRF2a demonstrated rapid responses. By contrast, six AP2/ERF TFs were showed to delay responses to both stresses. The AP2/ERF TFs exhibiting specific expression patterns under salt or drought stresses were also confirmed. Further functional analysis indicated that ectopic overexpression of Bra-botrytis-ERF056 could increase tolerance to both salt and drought treatments. These findings provide new insights into the AP2/ERF TFs present in cauliflower, and offer candidate AP2/ERF TFs for further studies on their roles in salt and drought stress tolerance.
机译:AP2 / ERF转录因子(TFs)构成植物中最大的基因超家族之一。这些TF在植物生长,发育以及对生物和非生物胁迫的响应中起着至关重要的作用。在这项研究中,在芸苔属中最重要的园艺作物之一的花椰菜(甘蓝)上鉴定出171种AP2 / ERF TF。在这些TF中,分别将15、9和1个TF分为AP2,RAV和Soloist家族。其他146个TF属于ERF家族,又进一步分为ERF和DREB子家族。 ERF子家族包含91 TF,而DREB子家族包含55 TF。系统发育分析结果表明,AP2 / ERF TFs可以分为13组,其中25个保守基序被确认。一些基序是特定于组或亚组的,这表明它们对这些进化枝的AP2 / ERF TF的功能很重要。此外,从13组中随机选择35个AP2 / ERF TF,然后将其用于盐和干旱胁迫下的表达模式分析。这些AP2 / ERF TF中的大多数对这些压力条件表现出积极的反应。具体而言,Bra-botrytis-ERF054a,Bra-botrytis-ERF056和Bra-botrytis-CRF2a表现出快速反应。相比之下,显示六个AP2 / ERF TF延迟了对两种压力的响应。还证实了在盐或干旱胁迫下表现出特定表达模式的AP2 / ERF TF。进一步的功能分析表明,异位表达的Bra-botrytis-ERF056可以增加对盐和干旱处理的耐受性。这些发现为花椰菜中存在的AP2 / ERF TFs提供了新的见解,并为候选AP2 / ERF TFs在盐和干旱胁迫耐受性中的作用提供了进一步的研究。

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