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Genome-Wide Analysis of the RAV Family in Soybean and Functional Identification of GmRAV-03 Involvement in Salt and Drought Stresses and Exogenous ABA Treatment

机译:大豆中RAV家族的全基因组分析和 GmRAV-03 参与盐和干旱胁迫以及外源ABA处理的功能鉴定

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Transcription factors play vital roles in plant growth and in plant responses to abiotic stresses. The RAV transcription factors contain a B3 DNA binding domain and/or an APETALA2 (AP2) DNA binding domain. Although genome-wide analyses of RAV family genes have been performed in several species, little is known about the family in soybean ( Glycine max L.). In this study, a total of 13 RAV genes, named as GmRAVs, were identified in the soybean genome. We predicted and analyzed the amino acid compositions, phylogenetic relationships, and folding states of conserved domain sequences of soybean RAV transcription factors. These soybean RAV transcription factors were phylogenetically clustered into three classes based on their amino acid sequences. Subcellular localization analysis revealed that the soybean RAV proteins were located in the nucleus. The expression patterns of 13 RAV genes were analyzed by quantitative real-time PCR. Under drought stresses, the RAV genes expressed diversely, up- or down-regulated. Following NaCl treatments, all RAV genes were down-regulated excepting GmRAV-03 which was up-regulated. Under abscisic acid (ABA) treatment, the expression of all of the soybean RAV genes increased dramatically. These results suggested that the soybean RAV genes may be involved in diverse signaling pathways and may be responsive to abiotic stresses and exogenous ABA. Further analysis indicated that GmRAV-03 could increase the transgenic lines resistance to high salt and drought and result in the transgenic plants insensitive to exogenous ABA. This present study provides valuable information for understanding the classification and putative functions of the RAV transcription factors in soybean.
机译:转录因子在植物生长和植物对非生物胁迫的响应中起着至关重要的作用。 RAV转录因子包含B3 DNA结合域和/或APETALA2(AP2)DNA结合域。尽管已经在几种物种中进行了RAV家族基因的全基因组分析,但对大豆中的该家族知之甚少(Glycine max L.)。在这项研究中,在大豆基因组中共鉴定出13个RAV基因,称为GmRAV。我们预测并分析了大豆RAV转录因子的保守域序列的氨基酸组成,系统发育关系和折叠状态。这些大豆RAV转录因子基于其氨基酸序列在系统发育上分为三类。亚细胞定位分析表明大豆RAV蛋白位于细胞核中。通过定量实时PCR分析13个RAV基因的表达模式。在干旱胁迫下,RAV基因表达多样,上调或下调。在NaCl处理后,除GmRAV-03上调外,所有RAV基因均下调。在脱落酸(ABA)处理下,所有大豆RAV基因的表达均急剧增加。这些结果表明,大豆RAV基因可能参与多种信号途径,并且可能对非生物胁迫和外源ABA有反应。进一步的分析表明,GmRAV-03可以提高转基因品系对高盐和干旱的抗性,并导致转基因植物对外源ABA不敏感。本研究为理解大豆中RAV转录因子的分类和功能提供了有价值的信息。

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