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The DUB family in Populus: identification, characterization, evolution and expression patterns

机译:杨树的配音家庭:识别,表征,演化和表达模式

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The deubiquitinase (DUB) family constitutes a group of proteases that regulate the stability or reverse the ubiquitination of many proteins in the cell. These enzymes participate in cell-cycle regulation, cell division and differentiation, diverse physiological activities such as DNA damage repair, growth and development, and response to stress. However, limited information is available on this family of genes in woody plants. In the present study, 88 DUB family genes were identified in the woody model plant Populus trichocarpa, comprising 44 PtrUBP, 3 PtrUCH, 23 PtrOTU, 4 PtrMJD, and 14 PtrJAMM genes with similar domains. According to phylogenetic analysis, the PtrUBP genes were classified into 16 groups, the PtrUCH genes into two, the PtrOTU genes into eight, the PtrMJD genes into two, and the PtrJAMM genes into seven. Members of same subfamily had similar gene structure and motif distribution characteristics. Synteny analysis of the DUB family genes from P. thrchocarpa and four other plant species provided insight into the evolutionary traits of DUB genes. Expression profiles derived from previously published transcriptome data revealed distinct expression patterns of DUB genes in various tissues. On the basis of the results of analysis of promoter cis-regulatory elements, we selected 16 representative PtrUBP genes to treatment with abscisic acid, methyl jasmonate, or salicylic acid applied as a foliar spray. The majority of PtrUBP genes were upregulated in response to the phytohormone treatments, which implied that the genes play potential roles in abiotic stress response in Populus. The results of this study broaden our understanding of the DUB family in plants. Analysis of the gene structure, conserved elements, and expression patterns of the DUB family provides a solid foundation for exploration of their specific functions in Populus and to elucidate the potential role of PtrUBP gene in abiotic stress response.
机译:脱硫酶(DUB)家族构成一组蛋白酶,其调节稳定性或逆转细胞中许多蛋白质的普遍性。这些酶参与细胞周期调节,细胞分裂和分化,不同的生理活性,如DNA损伤修复,生长和发育,以及对压力的反应。然而,在木质植物中的这家基因家族上有限。在本研究中,在木质模型植物杨树科氏菌蛋白中鉴定了88个配音家族基因,其中包含44个PTRUBP,3 PTRUCH,23 PTROTU,4 PTRMJD和14个PTRJMM基因,具有类似的结构域。根据系统发育分析,将PTRUBP基因分为16组,将PTRUCH基因分为两个,将PTROTU基因分为八个,PTRMJD基因分为两个,并将PTRJAMM基因分为七个。同一亚家族的成员具有类似的基因结构和基序分布特征。来自P. Thrchocarpa和四种其他植物物种的配音家族基因的Synteny分析提供了对Dub基因的进化性状的洞察力。来自先前公布的转录组数据的表达谱显示了各种组织中的DUB基因的不同表达模式。在促进剂顺式调节元件分析结果的基础上,我们选择了16个代表性的PTRUBP基因以用脱胶,茉鲸甲酸甲酯或作为叶面喷雾施用的水杨酸处理。大多数PTRUBP基因响应于植物激素治疗而上调,这意味着基因在杨树中的非生物应激反应中发挥潜在作用。这项研究的结果拓宽了我们对植物中的配音家族的理解。配音家族的基因结构,保守元素和表达模式的分析为杨树的特定功能提供了坚实的基础,并阐明了PTRUBP基因在非生物应激反应中的潜在作用。

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