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Genome-wide identification characterization and expression profile of aquaporin gene family in flax (Linum usitatissimum)

机译:亚麻中水通道蛋白基因家族的全基因组鉴定表征和表达谱

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摘要

Membrane intrinsic proteins (MIPs) form transmembrane channels and facilitate transport of myriad substrates across the cell membrane in many organisms. Majority of plant MIPs have water transporting ability and are commonly referred as aquaporins (AQPs). In the present study, we identified aquaporin coding genes in flax by genome-wide analysis, their structure, function and expression pattern by pan-genome exploration. Cross-genera phylogenetic analysis with known aquaporins from rice, arabidopsis, and poplar showed five subgroups of flax aquaporins representing 16 plasma membrane intrinsic proteins (PIPs), 17 tonoplast intrinsic proteins (TIPs), 13 NOD26-like intrinsic proteins (NIPs), 2 small basic intrinsic proteins (SIPs), and 3 uncharacterized intrinsic proteins (XIPs). Amongst aquaporins, PIPs contained hydrophilic aromatic arginine (ar/R) selective filter but TIP, NIP, SIP and XIP subfamilies mostly contained hydrophobic ar/R selective filter. Analysis of RNA-seq and microarray data revealed high expression of PIPs in multiple tissues, low expression of NIPs, and seed specific expression of TIP3 in flax. Exploration of aquaporin homologs in three closely related Linum species bienne, grandiflorum and leonii revealed presence of 49, 39 and 19 AQPs, respectively. The genome-wide identification of aquaporins, first in flax, provides insight to elucidate their physiological and developmental roles in flax.
机译:膜内在蛋白(MIP)形成跨膜通道,并促进许多生物中无数底物在细胞膜上的转运。大多数植物MIP具有输水能力,通常被称为水通道蛋白(AQP)。在本研究中,我们通过全基因组分析鉴定了亚麻中水通道蛋白编码基因,并通过全基因组探索确定了其结构,功能和表达模式。用水稻,拟南芥和杨树中已知的水通道蛋白进行跨属系统发育分析,显示亚麻水通道蛋白的五个亚组,分别代表16个质膜内在蛋白(PIP),17个液泡膜内在蛋白(TIP),13个类似NOD26的内在蛋白(NIP),2个小型基本内在蛋白(SIP)和3个未表征的内在蛋白(XIP)。在水通道蛋白中,PIP包含亲水性芳香精氨酸(ar / R)选择性过滤器,但TIP,NIP,SIP和XIP亚家族主要包含疏水性ar / R选择性过滤器。对RNA-seq和微阵列数据的分析显示,亚麻中PIPs在多种组织中高表达,NIPs低表达,TIP3的种子特异性表达。在三个紧密相关的亚麻属植物比纳,大花和莱昂尼中对水通道蛋白同源物的研究表明分别存在49、39和19个AQP。首先在亚麻中对水通道蛋白进行全基因组鉴定,为阐明其在亚麻中的生理和发育作用提供了见识。

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