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Genome-wide identification, structure characterization, and expression pattern profiling of aquaporin gene family in cucumber

机译:黄瓜水通道蛋白基因家族的全基因组鉴定,结构表征和表达模式分析

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Aquaporin (AQP) proteins comprise a group of membrane intrinsic proteins (MIPs) that are responsible for transporting water and other small molecules, which is crucial for plant survival under stress conditions including salt stress. Despite the vital role of AQPs, little is known about them in cucumber (Cucumis sativus L.). In this study, we identified 39 aquaporin-encoding genes in cucumber that were separated by phylogenetic analysis into five sub-families (PIP, TIP, NIP, SIP, and XIP). Their substrate specificity was then assessed based on key amino acid residues such as the aromatic/Arginine (ar/R) selectivity filter, Froger’s positions, and specificity-determining positions. The putative cis-regulatory motifs available in the promoter region of each AQP gene were analyzed and results revealed that their promoter regions contain many abiotic related cis-regulatory elements. Furthermore, analysis of previously released RNA-seq data revealed tissue- and treatment-specific expression patterns of cucumber AQP genes (CsAQPs). Three aquaporins (CsTIP1;1, CsPIP2;4, and CsPIP1;2) were the most transcript abundance genes, with CsTIP1;1 showing the highest expression levels among all aquaporins. Subcellular localization analysis in Nicotiana benthamiana epidermal cells revealed the diverse and broad array of sub-cellular localizations of CsAQPs. We then performed RNA-seq to identify the expression pattern of CsAQPs under salt stress and found a general decreased expression level of root CsAQPs. Moreover, qRT-PCR revealed rapid changes in the expression levels of CsAQPs in response to diverse abiotic stresses including salt, polyethylene glycol (PEG)-6000, heat, and chilling stresses. Additionally, transient expression of AQPs in N. benthamiana increased leaf water loss rate, suggesting their potential roles in the regulation of plant water status under stress conditions. Our results indicated that CsAQPs play important roles in response to salt stress. The genome-wide identification and primary function characterization of cucumber aquaporins provides insight to elucidate the complexity of the AQP gene family and their biological functions in cucumber.
机译:水通道蛋白(AQP)包含一组膜内在蛋白(MIP),负责运输水和其他小分子,这对于包括盐胁迫在内的胁迫条件下的植物存活至关重要。尽管AQP发挥着至关重要的作用,但对黄瓜(Cucumis sativus L.)的了解却很少。在这项研究中,我们鉴定了黄瓜中39个水通道蛋白编码基因,这些基因通过系统发育分析分为五个亚科(PIP,TIP,NIP,SIP和XIP)。然后,根据关键的氨基酸残基(例如芳族/精氨酸(ar / R)选择性滤膜,Froger的位置和特异性确定的位置)评估其底物特异性。分析每个AQP基因的启动子区域中可用的推定的顺式调控基序,结果表明它们的启动子区域含有许多非生物相关的顺式调控元件。此外,对先前发布的RNA-seq数据的分析揭示了黄瓜AQP基因(CsAQPs)的组织和治疗特异性表达模式。三个水通道蛋白(CsTIP1; 1,CsPIP2; 4和CsPIP1; 2)是转录本最高的基因,其中CsTIP1; 1在所有水通道蛋白中的表达水平最高。在本氏烟草表皮细胞中的亚细胞定位分析揭示了CsAQP的亚细胞定位的多样性和广泛性。然后,我们进行了RNA测序,以鉴定盐胁迫下CsAQPs的表达模式,发现根CsAQPs的表达水平普遍下降。此外,qRT-PCR显示,响应各种非生物胁迫,包括盐,聚乙二醇(PEG)-6000,高温和低温胁迫,CsAQPs表达水平迅速变化。此外,AQP在本氏烟草中的瞬时表达增加了叶片失水率,表明它们在胁迫条件下调节植物水分状况的潜在作用。我们的结果表明,CsAQP在应对盐胁迫中起重要作用。黄瓜水通道蛋白的全基因组鉴定和主要功能表征为阐明AQP基因家族的复杂性及其在黄瓜中的生物学功能提供了见识。

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