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甜瓜(黄瓜属甜瓜种)中的乙醇脱氢酶基因家族:生物信息学分析与表达模式

The Alcohol Dehydrogenase Gene Family in Melon (Cucumis melo L.): Bioinformatic Analysis and Expression Patterns.

作者信息

Jin Yazhong, Zhang Chong, Liu Wei, Tang Yufan, Qi Hongyan, Chen Hao, Cao Songxiao

机构信息

Key Laboratory of Protected Horticulture of Education Ministry and Liaoning Province, Department of Horticulture, Shenyang Agricultural UniversityShenyang, China; College of Agriculture, Heilongjiang Bayi Agricultural UniversityDaqing, China.

Key Laboratory of Protected Horticulture of Education Ministry and Liaoning Province, Department of Horticulture, Shenyang Agricultural University Shenyang, China.

出版信息

Front Plant Sci. 2016 May 18;7:670. doi: 10.3389/fpls.2016.00670. eCollection 2016.

Abstract

Alcohol dehydrogenases (ADH), encoded by multigene family in plants, play a critical role in plant growth, development, adaptation, fruit ripening and aroma production. Thirteen ADH genes were identified in melon genome, including 12 ADHs and one formaldehyde dehydrogenease (FDH), designated CmADH1-12 and CmFDH1, in which CmADH1 and CmADH2 have been isolated in Cantaloupe. ADH genes shared a lower identity with each other at the protein level and had different intron-exon structure at nucleotide level. No typical signal peptides were found in all CmADHs, and CmADH proteins might locate in the cytoplasm. The phylogenetic tree revealed that 13 ADH genes were divided into three groups respectively, namely long-, medium-, and short-chain ADH subfamily, and CmADH1,3-11, which belongs to the medium-chain ADH subfamily, fell into six medium-chain ADH subgroups. CmADH12 may belong to the long-chain ADH subfamily, while CmFDH1 may be a Class III ADH and serve as an ancestral ADH in melon. Expression profiling revealed that CmADH1, CmADH2, CmADH10 and CmFDH1 were moderately or strongly expressed in different vegetative tissues and fruit at medium and late developmental stages, while CmADH8 and CmADH12 were highly expressed in fruit after 20 days. CmADH3 showed preferential expression in young tissues. CmADH4 only had slight expression in root. Promoter analysis revealed several motifs of CmADH genes involved in the gene expression modulated by various hormones, and the response pattern of CmADH genes to ABA, IAA and ethylene were different. These CmADHs were divided into ethylene-sensitive and -insensitive groups, and the functions of CmADHs were discussed.

摘要

植物中的多基因家族编码的乙醇脱氢酶(ADH)在植物生长、发育、适应性、果实成熟和香气产生中起关键作用。在甜瓜基因组中鉴定出13个ADH基因,包括12个ADH和1个甲醛脱氢酶(FDH),分别命名为CmADH1 - 12和CmFDH1,其中CmADH1和CmADH2已在哈密瓜中分离出来。ADH基因在蛋白质水平上彼此间具有较低的同一性,在核苷酸水平上具有不同的内含子 - 外显子结构。在所有CmADH中均未发现典型的信号肽,并且CmADH蛋白可能定位于细胞质中。系统发育树显示13个ADH基因分别分为三组,即长链、中链和短链ADH亚家族,属于中链ADH亚家族的CmADH1、3 - 11分为六个中链ADH亚组。CmADH12可能属于长链ADH亚家族,而CmFDH1可能是III类ADH,并作为甜瓜中的祖先ADH。表达谱分析表明,CmADH1、CmADH2、CmADH10和CmFDH1在不同营养组织和发育中后期的果实中中度或强烈表达,而CmADH8和CmADH12在20天后的果实中高度表达。CmADH3在幼嫩组织中优先表达。CmADH4仅在根中有轻微表达。启动子分析揭示了参与各种激素调节基因表达的CmADH基因的几个基序,并且CmADH基因对ABA、IAA和乙烯的响应模式不同。这些CmADH分为乙烯敏感和不敏感组,并对CmADH的功能进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e65/4870255/eb48ab782d53/fpls-07-00670-g001.jpg

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