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Genome-Wide Identification and Functional Classification of Tomato (Solanum lycopersicum) Aldehyde Dehydrogenase (ALDH) Gene Superfamily

机译:番茄(番茄)乙醛脱氢酶(ALDH)基因超家族的全基因组鉴定和功能分类

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摘要

Aldehyde dehydrogenases (ALDHs) is a protein superfamily that catalyzes the oxidation of aldehyde molecules into their corresponding non-toxic carboxylic acids, and responding to different environmental stresses, offering promising genetic approaches for improving plant adaptation. The aim of the current study is the functional analysis for systematic identification of S. lycopersicum ALDH gene superfamily. We performed genome-based ALDH genes identification and functional classification, phylogenetic relationship, structure and catalytic domains analysis, and microarray based gene expression. Twenty nine unique tomato ALDH sequences encoding 11 ALDH families were identified, including a unique member of the family 19 ALDH. Phylogenetic analysis revealed 13 groups, with a conserved relationship among ALDH families. Functional structure analysis of ALDH2 showed a catalytic mechanism involving Cys-Glu couple. However, the analysis of ALDH3 showed no functional gene duplication or potential neo-functionalities. Gene expression analysis reveals that particular ALDH genes might respond to wounding stress increasing the expression as ALDH2B7. Overall, this study reveals the complexity of S. lycopersicum ALDH gene superfamily and offers new insights into the structure-functional features and evolution of ALDH gene families in vascular plants. The functional characterization of ALDHs is valuable and promoting molecular breeding in tomato for the improvement of stress tolerance and signaling.
机译:醛脱氢酶(ALDHs)是一种蛋白质超家族,可催化​​醛分子氧化成其相应的无毒羧酸,并响应不同的环境胁迫,为改善植物适应性提供了有希望的遗传方法。本研究的目的是功能分析,以系统地鉴定S. lycopersicum ALDH基因超家族。我们进行了基于基因组的ALDH基因鉴定和功能分类,系统发育关系,结构和催化结构域分析以及基于微阵列的基因表达。鉴定了编码11个ALDH家族的29个独特的番茄ALDH序列,包括19 ALDH家族的独特成员。系统发育分析揭示了13个群体,ALDH家族之间的保守关系。 ALDH2的功能结构分析表明催化机制涉及Cys-Glu对。但是,ALDH3的分析表明没有功能基因重复或潜在的新功能。基因表达分析表明,特定的ALDH基因可能对创伤压力有反应,从而增加了ALDH2B7的表达。总的来说,这项研究揭示了番茄S. lycopersicum ALDH基因超家族的复杂性,并为维管植物中ALDH基因家族的结构功能特征和进化提供了新的见解。 ALDHs的功能表征非常有价值,可促进番茄的分子育种,以改善胁迫耐受性和信号传导。

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