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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Genome-wide analysis of antioxidant enzyme gene families involved in drop it and low-temperature responses in Apple (Malus domestica)
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Genome-wide analysis of antioxidant enzyme gene families involved in drop it and low-temperature responses in Apple (Malus domestica)

机译:苹果(Malus Domestica)滴落酶和低温应答的抗氧化酶基因家族的基因组分析

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摘要

Antioxidant enzymes were well-known for reactive oxygen scavenging and protecting cells from oxidative damage in multiple biotic and abiotic stresses. Aimed to overview of antioxidant enzyme gene families and screen for drought and low-temperature response members, the whole apple antioxidant enzyme genes in apple genome were studied. Out of 73candidates in seven antioxidant enzyme gene families among the entire apple genome, a total of 49 genes were identified, showed more antioxidant enzyme gene members than those in other plant species. A phylogenetic tree based on predicted functional domains and motifs of apple and Arabidopsis antioxidant enzymes revealed 19 putative drought or low-temperature response genes, and 9 out 19 genes belong to five families responded to both drought and low-temperature stresses. Subsequently, cis-elements in those nine antioxidant enzyme gene promoters were examined and abundant elements involved in multiple hormone regulation and abiotic stresses response, including drought and low-temperature were found. The tissue expression specificity for those nine members in eight kinds of tissues was also examined. Screening and identifying both drought and low-temperature response genes provide useful information to understand gene functions and promote application of antioxidant enzyme genes in apple abiotic resistance breeding.
机译:富含反应性氧清除和保护细胞免受多种生物和非生物胁迫的氧化损伤的抗氧化酶。旨在概述抗氧化酶基因家族和筛选干旱和低温响应构件,研究了苹果基因组的整个苹果抗氧化酶基因。在七个抗氧化酶基因家族中含有73个碳酸盐,在整个苹果基因组中,共鉴定了49个基因,显示出比其他植物物种的抗氧化酶基因成员更多。基于苹果和拟南芥抗氧化酶的预测功能域和基序的系统发育树揭示了19个推定的干旱或低温响应基因,9个out 19基因属于五个家族,反应干旱和低温胁迫。随后,检查了那些九个抗氧化酶基因启动子中的顺式元素,并发现了多种激素调控和非生物应激反应中涉及的丰富元素,包括干旱和低温。还检查了8种组织中那些九个成员的组织表达特异性。筛选和鉴定干旱和低温响应基因提供了了解基因功能的有用信息,促进抗氧化酶基因在苹果非生物抗性育种中的应用。

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