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Genome-Wide Identification and Expression Analysis of the Biotin Carboxyl Carrier Subunits of Heteromeric Acetyl-CoA Carboxylase in Gossypium

机译:中异源乙酰辅酶A羧化酶的生物素羧基载体亚基的全基因组鉴定和表达分析

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Acetyl-CoA carboxylase is an important enzyme, which catalyzes acetyl-CoA’s carboxylation to produce malonyl-CoA and to serve as a committed step for de novo fatty acid biosynthesis in plastids. In this study, 24 putative cotton BCCP genes were identified based on the lately published genome data in Gossypium . Among them, 4, 4, 8, and 8 BCCP homologs were identified in Gossypium raimondii, G. arboreum, G. hirsutum , and G. barbadense , respectively. These genes were divided into two classes based on a phylogenetic analysis. In each class, these homologs were relatively conserved in gene structure and motifs. The chromosomal distribution pattern revealed that all the BCCP genes were distributed equally on corresponding chromosomes or scaffold in the four cotton species. Segmental duplication was a predominant duplication event in both of G. hirsutum and G. barbadense. The analysis of the expression profile showed that 8 GhBCCP genes expressed in all the tested tissues with changed expression levels, and GhBCCP genes belonging to class II were predominantly expressed in developing ovules. Meanwhile, the expression analysis for the 16 cotton BCCP genes from G. raimondii, G. arboreum and G. hirsutum showed that they were induced or suppressed by cold or salt stress, and their expression patterns varied among different tissues. These findings will help to determine the functional and evolutionary characteristics of the BCCP genes in Gossypium species.
机译:乙酰辅酶A羧化酶是一种重要的酶,可催化乙酰辅酶A的羧化反应生成丙二酰辅酶A,并作为从头进行质体脂肪酸生物合成的重要步骤。在这项研究中,根据棉属中最近发表的基因组数据鉴定了24个推定的棉花BCCP基因。其中,在雷蒙氏棉,植物棉,陆地棉和巴巴德氏棉中分别鉴定出4、4、8和8个BCCP同源物。根据系统发育分析,将这些基因分为两类。在每个类别中,这些同源物在基因结构和基序方面相对保守。染色体分布图表明,所有的BCCP基因均等地分布在四种棉花的相应染色体或支架上。节段性复制是hirsutum G.和barbadense G.两者中的主要复制事件。表达谱分析表明,在所有受试组织中表达的8个GhBCCP基因表达水平发生了变化,而属于II类的GhBCCP基因主要在发育胚珠中表达。同时,对雷蒙德棉,阿布罗姆棉和陆地棉的16个棉花BCCP基因的表达分析表明,它们受冷或盐胁迫诱导或抑制,并且它们的表达模式在不同组织中变化。这些发现将有助于确定棉属物种中BCCP基因的功能和进化特征。

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