首页> 外文期刊>BMC Genomics >Genome-wide analysis of WRKY transcription factors in white pear ( Pyrus bretschneideri ) reveals evolution and patterns under drought stress
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Genome-wide analysis of WRKY transcription factors in white pear ( Pyrus bretschneideri ) reveals evolution and patterns under drought stress

机译:全基因组分析白梨(Pyrus bretschneideri)的WRKY转录因子揭示了干旱胁迫下的进化和模式

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WRKY transcription factors (TFs) constitute one of the largest protein families in higher plants, and its members contain one or two conserved WRKY domains, about 60 amino acid residues with the WRKYGQK sequence followed by a C2H2 or C2HC zinc finger motif. WRKY proteins play significant roles in plant development, and in responses to biotic and abiotic stresses. Pear (Pyrus bretschneideri) is one of the most important fruit crops in the world and is frequently threatened by abiotic stress, such as drought, affecting growth, development and productivity. Although the pear genome sequence has been released, little is known about the WRKY TFs in pear, especially in respond to drought stress at the genome-wide level. We identified a total of 103 WRKY TFs in the pear genome. Based on the structural features of WRKY proteins and topology of the phylogenetic tree, the pear WRKY (PbWRKY) family was classified into seven groups (Groups 1, 2a–e, and 3). The microsyteny analysis indicated that 33 (32?%) PbWRKY genes were tandemly duplicated and 57 genes (55.3?%) were segmentally duplicated. RNA-seq experiment data and quantitative real-time reverse transcription PCR revealed that PbWRKY genes in different groups were induced by drought stress, and Group 2a and 3 were mainly involved in the biological pathways in response to drought stress. Furthermore, adaptive evolution analysis detected a significant positive selection for Pbr001425 in Group 3, and its expression pattern differed from that of other members in this group. The present study provides a solid foundation for further functional dissection and molecular evolution of WRKY TFs in pear, especially for improving the water-deficient resistance of pear through manipulation of the PbWRKYs.
机译:WRKY转录因子(TFs)构成高等植物中最大的蛋白质家族之一,其成员包含一个或两个保守的WRKY域,带有WRKYGQK序列的约60个氨基酸残基,其后是C2H2或C2HC锌指基序。 WRKY蛋白在植物发育以及对生物和非生物胁迫的响应中起着重要作用。梨(Pyrus bretschneideri)是世界上最重要的水果作物之一,经常受到非生物胁迫(例如干旱)的威胁,影响生长,发育和生产力。尽管已经发布了梨的基因组序列,但对梨中的WRKY TF知之甚少,特别是在全基因组水平上应对干旱胁迫方面。我们在梨基因组中鉴定出总共103个WRKY TF。根据WRKY蛋白质的结构特征和系统发育树的拓扑结构,梨WRKY(PbWRKY)家族分为七个组(第1、2a–e和3组)。显微系统分析表明,PbWRKY基因串联重复了33个(32%),分段重复了57个基因(55.3%)。 RNA-seq实验数据和定量实时逆转录PCR结果表明,不同组别的PbWRKY基因受干旱胁迫诱导,而第2a和第3组主要参与了干旱胁迫的生物学途径。此外,适应性进化分析在第3组中检测到Pbr001425的显着阳性选择,并且其表达模式与该组其他成员的表达模式不同。本研究为进一步研究梨中WRKY TFs的功能解剖和分子进化提供了坚实的基础,尤其是通过操纵PbWRKYs改善梨的缺水抗性。

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