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Genome-Wide Analysis of the Aquaporin Gene Family in Chickpea (Cicer arietinum L.)

机译:鹰嘴豆(Cicer arietinum L.)水通道蛋白基因家族的全基因组分析

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摘要

Aquaporins (AQPs) are essential membrane proteins that play critical role in the transport of water and many other solutes across cell membranes. In this study, a comprehensive genome-wide analysis identified 40 AQP genes in chickpea (Cicer arietinum L.). A complete overview of the chickpea AQP (CaAQP) gene family is presented, including their chromosomal locations, gene structure, phylogeny, gene duplication, conserved functional motifs, gene expression, and conserved promoter motifs. To understand AQP's evolution, a comparative analysis of chickpea AQPs with AQP orthologs from soybean, Medicago, common bean, and Arabidopsis was performed. The chickpea AQP genes were found on all of the chickpea chromosomes, except chromosome 7, with a maximum of six genes on chromosome 6, and a minimum of one gene on chromosome 5. Gene duplication analysis indicated that the expansion of chickpea AQP gene family might have been due to segmental and tandem duplications. CaAQPs were grouped into four subfamilies including 15 NOD26-like intrinsic proteins (NIPs), 13 tonoplast intrinsic proteins (TIPs), eight plasma membrane intrinsic proteins (PIPs), and four small basic intrinsic proteins (SIPs) based on sequence similarities and phylogenetic position. Gene structure analysis revealed a highly conserved exon-intron pattern within CaAQP subfamilies supporting the CaAQP family classification. Functional prediction based on conserved Ar/R selectivity filters, Froger's residues, and specificity-determining positions suggested wide differences in substrate specificity among the subfamilies of CaAQPs. Expression analysis of the AQP genes indicated that some of the genes are tissue-specific, whereas few other AQP genes showed differential expression in response to biotic and abiotic stresses. Promoter profiling of CaAQP genes for conserved cis-acting regulatory elements revealed enrichment of cis-elements involved in circadian control, light response, defense and stress responsiveness reflecting their varying pattern of gene expression and potential involvement in biotic and abiotic stress responses. The current study presents the first detailed genome-wide analysis of the AQP gene family in chickpea and provides valuable information for further functional analysis to infer the role of AQP in the adaptation of chickpea in diverse environmental conditions.
机译:水通道蛋白(AQPs)是必不可少的膜蛋白,在水和许多其他溶质跨细胞膜的运输中起着至关重要的作用。在这项研究中,全面的全基因组分析确定了鹰嘴豆(Cicer arietinum L.)中的40个AQP基因。提出了鹰嘴豆AQP(CaAQP)基因家族的完整概述,包括它们的染色体位置,基因结构,系统发育,基因重复,保守的功能基序,基因表达和保守的启动子基序。为了了解AQP的演变,对鹰嘴豆AQP与大豆,紫花苜蓿,普通豆和拟南芥中的AQP直系同源物进行了比较分析。鹰嘴豆AQP基因在除7号染色体外的所有鹰嘴豆染色体上均存在,在6号染色体上最多包含6个基因,在5号染色体上最少包含1个基因。归因于分段和串联重复。 CaAQPs分为四个亚家族,包括15个NOD26样内在蛋白(NIPs),13个液泡膜内在蛋白(TIPs),八个质膜内在蛋白(PIPs)和四个小的基本内在蛋白(SIPs)(基于序列相似性和系统发生位置) 。基因结构分析显示,在支持CaAQP家族分类的CaAQP子家族中,高度保守的外显子-内含子模式。基于保守的Ar / R选择性滤光片,Froger残基和特异性确定位置的功能预测表明,CaAQPs亚家族之间底物特异性差异很大。 AQP基因的表达分析表明,其中一些基因是组织特异性的,而其他AQP基因却很少响应生物和非生物胁迫而显示差异表达。 CaAQP基因对保守的顺式作用调控元件的启动子图谱揭示了参与昼夜节律控制,光反应,防御和应激反应的顺式元素的富集,反映了其基因表达的不同模式以及潜在参与生物和非生物应激反应。当前的研究提供了鹰嘴豆中AQP基因家族的第一个详细的全基因组分析,并为进一步的功能分析提供了有价值的信息,以推断AQP在鹰嘴豆适应各种环境条件下的作用。

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