半翅目脂肪酰基辅酶A还原酶基因的多样性、结构域复制、生灭及适应性进化

IF 1.6 4区 农林科学 Q2 ENTOMOLOGY
Zhongjuan Di, Jiahui Tian, Muhammad Yasir Ali, Biyun Zhang, Shiyong Yang, Yuejun Fu, Fengqi Li, Chen Luo
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引用次数: 0

摘要

脂肪酰基辅酶A还原酶(FARs)在各种生物体中脂肪醇的合成中起着重要作用。基于FAR基因的重要功能,它们可以作为控制农业害虫的潜在分子靶标。尽管FAR基因已经在许多昆虫中进行了研究,但不同半翅目物种之间FAR基因的获得、损失和分子进化仍然需要全面系统的研究。本研究系统地鉴定和分析了12种半翅目昆虫的352个FAR基因,其中包括6种典型的真蝽,即圆尾夜蛾(Cimex lectularius)、紫背夜蛾(Apollygus lucorum。每个物种的FAR基因数量从17到43个不等,系统发育分析表明,已鉴定的半翅目FAR基因可分为11个分支。FAR基因的获得和丢失已经发生在一些半翼目物种中。这些FAR基因在进化过程中符合出生和死亡模型。通过选择压力分析,我们确定分支11中的G.buenoi是在正选择的压力下进化的,A的进化位点在214位,T的进化位点位于451位,从而阐明了物种间氨基酸的差异,更好地了解了半翼虫FAR的分子进化机制。此外,对FAR基因的结构分析显示,FAR的两个保守结构域,即罗斯曼折叠结构域和不育结构域,在四个物种中重复,即烟粉虱、柠檬粉蚧、R.prolixus和Trialeurodes vaporariorum。本研究为进一步研究半翅目昆虫FAR的分子功能奠定了基础,为半翅目昆虫特别是蝽的防治提供了可能的新靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Diversity, domain duplication, birth-and-death and adaptive evolution of fatty acyl-CoA reductase genes in Hemiptera

Diversity, domain duplication, birth-and-death and adaptive evolution of fatty acyl-CoA reductase genes in Hemiptera

Fatty acyl-CoA reductases (FARs) play an important role in the synthesis of fatty alcohols in various organisms. Based on the important function of FAR genes, they can be used as a potential molecular target for controlling agricultural pests. Although the FAR genes have been studied in a number of insects, the gain, loss, and molecular evolution of FAR genes between different Hemipteran species still require comprehensive and systematic study. This study systematically identified and analysed 352 FAR genes from 12 Hemipteran species, including six typical true bug species, Cimex lectularius, Apolygus lucorum, Halyomorpha halys, Oncopeltus fasciatus, Rhodnius prolixus and Gerris buenoi. The number of FAR genes per species ranged from 17 to 43, and a phylogenetic analysis showed that the identified FAR genes of Hemiptera can be classified into 11 clades. The gain and loss of FAR genes have occurred in some Hemipteran species. These FAR genes conform to the birth-and-death model in the evolutionary process. Through selection pressure analysis, we determined that G. buenoi in clade 11 evolved under the pressure of positive selection, with the evolutionary sites of A at position 214 and T at position 451, thus clarifying the differences in amino acids among species and providing a better understanding of the molecular evolutionary mechanism of Hemipteran FAR. In addition, structural analysis of the FAR genes revealed duplication of the two conservative domains, the Rossmann-fold domain and the sterile domain, of the FAR in four species, namely Bemisia tabaci, Diaphorina citri, R. prolixus and Trialeurodes vaporariorum. This study lays a foundation for further studies on the molecular functions of Hemiptera FAR, and provides a possible new target for the control of Hemiptera, especially the stink bugs.

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来源期刊
Physiological Entomology
Physiological Entomology 生物-昆虫学
CiteScore
2.80
自引率
6.70%
发文量
21
审稿时长
>12 weeks
期刊介绍: Physiological Entomology broadly considers “how insects work” and how they are adapted to their environments at all levels from genes and molecules, anatomy and structure, to behaviour and interactions of whole organisms. We publish high quality experiment based papers reporting research on insects and other arthropods as well as occasional reviews. The journal thus has a focus on physiological and experimental approaches to understanding how insects function. The broad subject coverage of the Journal includes, but is not limited to: -experimental analysis of behaviour- behavioural physiology and biochemistry- neurobiology and sensory physiology- general physiology- circadian rhythms and photoperiodism- chemical ecology
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