首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Genome-wide identification, phylogenetic analysis, and expression profiles of ATP-binding cassette transporter genes in the oriental fruit fly, Bactrocera dorsalis (Hendel) (Diptera: Tephritidae)
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Genome-wide identification, phylogenetic analysis, and expression profiles of ATP-binding cassette transporter genes in the oriental fruit fly, Bactrocera dorsalis (Hendel) (Diptera: Tephritidae)

机译:在东方果蝇中ATP结合盒式转运蛋白基因的基因组鉴定,系统发育分析和表达谱,Bactrocera Dorsalis(Hendel)(Diptera:Tepharritidae)

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摘要

The ATP-binding cassette (ABC) is the largest transporter gene family and the genes play key roles in xenobiotic resistance, metabolism, and development of all phyla. However, the specific functions of ABC gene families in insects is unclear. We report a genome-wide identification, phylogenetic, and transcriptional analysis of the ABC genes in the oriental fruit fly, Bactrocera dorsalis (Hendel). We identified a total of 47 ABC genes (BdABCs) from the transcriptomic and genomic databases of B. dorsalis and classified these genes into eight subfamilies (A-H), including 7 ABCAs, 7 ABCBs, 9 ABCC5, 2 ABCD5, 1 ABCE, 3 ABCFs, 15 ABCGs, and 3 ABCHs. Comparative phylogenetic analysis of the ABCs suggests an orthologous relationship between B. dorsalis and other insect species in which these genes have been related to pesticide resistance and essential biological processes. Comparison of transcriptome and relative expression patterns of BdABCs indicated diverse multifunctions within different B. dorsalis tissues. The expression of 4, 10, and 14 BdABCs from 18 BdABCs was significantly upregulated after exposure to LD5os of malathion, avermectin, and beta-cypermethrin, respectively. The maximum expression level of most BdABCs (including BdABCFs, BdABCGs, and BdABCHs) occurred at 48 h post exposures, whereas BdABCEs peaked at 24 h after treatment. Furthermore, RNA interference-mediated suppression of BdABCB7 resulted in increased toxicity of malathion against B. dorsalis. These data suggest that ABC transporter genes might play key roles in xenobiotic metabolism and biosynthesis in B. dorsalis.
机译:ATP结合盒(ABC)是最大的运输基因家族,基因在异源性抗性,代谢和所有脑外发育中发挥关键作用。然而,ABC基因家族在昆虫中的特定功能尚不清楚。我们报告了在东方果蝇中的ABC基因的基因组 - 范围鉴定,系统发育和转录分析,Bactrocera Dorsalis(Hendel)。我们鉴定了来自B. dorsalis的转录组和基因组数据库的总共47个ABC基因(BDABC),并将这些基因分类为八个亚属(AH),其中7个ABCAS,7 ABCB,9 ABCC5,2 ABCD5,1 ABCE,3 ABCFS ,15 ABCS和3 ABCH。 ABCS的比较系统发育分析表明B.背部和其他昆虫物种之间的正交关系,其中这些基因与农药抗性和必要的生物过程有关。转录组和BDABCS相对表达模式的比较表明不同B.多重组织内的多样性多功能。在暴露于Malathion,Avermectin和Beta-chypetmethrin的LD5OS后,显着上调了来自18个BDABC的4,10和14个BDABC的表达显着上调。在曝光后48小时内发生大多数BDABC(包括BDABCFS,BDABCG和BDABCH)的最大表达水平,而在治疗后24小时,BDABS达到峰值。此外,RNA干扰介导的BDABCB7的抑制导致Malathion对B. dorsalis的毒性增加。这些数据表明,ABC转运蛋白基因可能在B. dorsalis中发挥Xenobiotic代谢和生物合成中的关键作用。

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