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Systematic analysis of O -methyltransferase gene family and identification of potential members involved in the formation of O -methylated flavonoids in Citrus

生物 柑橘×冬青 亚科 基因 基因家族 遗传学 甲基化 系统发育树 甲基转移酶 基因组 拟南芥 基因表达 O-甲基转移酶 橙色(颜色) 突变体 园艺
作者
Xiaogang Liu,Yan Luo,Hongkun Wu,Wanpeng Xi,Jie Yu,Qiuyun Zhang,Zhiqin Zhou
出处
期刊:Gene [Elsevier BV]
卷期号:575 (2): 458-472 被引量:59
标识
DOI:10.1016/j.gene.2015.09.048
摘要

The O-methylation of various secondary metabolites is mainly catalyzed by S-adenosyl-l-methionine (SAM)-dependent O-methyltransferase (OMT) proteins that are encoded by the O-methyltransferase gene family. Citrus fruits are a rich source of O-methylated flavonoids that have a broad spectrum of biological activities, including anti-inflammatory, anticarcinogenic, and antiatherogenic properties. However, little is known about this gene family and its members that are involved in the O-methylation of flavonoids and their regulation in Citrus. In this study, 58 OMT genes were identified from the entire Citrus sinensis genome and compared with those from 3 other representative dicot plants. A comprehensive analysis was performed, including functional/substrate predictions, identification of chromosomal locations, phylogenetic relationships, gene structures, and conserved motifs. Distribution mapping revealed that the 58 OMT genes were unevenly distributed on the 9 citrus chromosomes. Phylogenetic analysis of 164 OMT proteins from C. sinensis, Arabidopsis thaliana, Populus trichocarpa, and Vitis vinifera showed that these proteins were categorized into group I (COMT subfamily) and group II (CCoAOMT subfamily), which were further divided into 10 and 2 subgroups, respectively. Finally, digital gene expression and quantitative real-time polymerase chain reaction analyses revealed that citrus OMT genes had distinct temporal and spatial expression patterns in different tissues and developmental stages. Interestingly, 18 and 11 of the 27 genes predicted to be involved in O-methylation of flavonoids had higher expression in the peel and pulp during fruit development, respectively. The citrus OMT gene family identified in this study might help in the selection of appropriate candidate genes and facilitate functional studies in Citrus.
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