Tuta absoluta(鳞翅目:Gelechiidae)气味受体的全基因组鉴定、进化和雌性表达分析

Life Pub Date : 2024-07-12 DOI:10.3390/life14070872
Cong Huang, Xiaolan Ou, Yusheng Wang, Yanan Zhou, Guifen Zhang, Wanxue Liu, Fanghao Wan, Hongbo Jiang, Yibo Zhang
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摘要

番茄潜叶蝇 Tuta absoluta(鳞翅目:Gelechiidae)是一种针对茄科作物的高破坏性入侵害虫。它的嗅觉系统在寄主定位、寻找配偶和其他行为活动中起着至关重要的作用。然而,有关其化感基因特征的文献却明显不足。在这项研究中,我们对 T. absoluta 的 58 个气味受体(ORs)进行了全基因组鉴定。鉴定出的 ORs 的编码序列(CDS)长度从 1062 bp 到 1419 bp 不等,编码 354 到 473 个氨基酸的蛋白质。基因结构分析表明,这些ORs大多由5、7、8或9个外显子组成,共占已鉴定ORs总数的67%。通过染色体图谱,我们发现了几个串联重复的基因,包括 TabsOR12a、TabsOR12b、TabsOR12c、TabsOR21a、TabsOR21b、TabsOR34a、TabsOR34b、TabsOR34c、TabsOR62a 和 TabsOR62b。系统进化分析表明,6 个 TabsORs 聚类在鳞翅目性信息素受体支系中,而一个包含 10 个 TabsORs 的扩展支系是由串联重复事件产生的。此外,在 T. absoluta 中,有五个 TabsORs 被归入一个特定的 OR 支系。此外,通过 RNA-Seq 和 RT-qPCR 分析,我们确定了五个 TabsORs(TabsOR21a、TabsOR26a、TabsOR34a、TabsOR34c 和 TabsOR36)表现出雌性天线偏向表达。我们的研究为进一步研究 TabsORs 的分子和生态功能,尤其是与产卵行为相关的功能奠定了宝贵的基础。这些发现为今后探索雌性偏向表达的 OR 基因在 T. absoluta 中的功能提供了基础数据,从而有助于进一步开发生态友好型引诱-杀灭技术,防控 T. absoluta。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genome-Wide Identification, Evolution, and Female-Biased Expression Analysis of Odorant Receptors in Tuta absoluta (Lepidoptera: Gelechiidae)
The tomato leafminer, Tuta absoluta (Lepidoptera: Gelechiidae), is a highly destructive invasive pest targeting Solanaceae crops. Its olfactory system plays a crucial role in host location, mate finding, and other behavioral activities. However, there is a notable gap in the literature regarding the characterization of its chemosensory genes. In this study, we conducted a genome-wide identification of 58 odorant receptors (ORs) of T. absoluta. The identified ORs exhibit coding sequence (CDS) lengths ranging from 1062 bp to 1419 bp, encoding proteins of 354 to 473 amino acids. Gene structure analysis showed that the majority of these ORs consist of five, seven, eight, or nine exons, collectively representing 67% of the total ORs identified. Through chromosomal mapping, we identified several tandemly duplicate genes, including TabsOR12a, TabsOR12b, TabsOR12c, TabsOR21a, TabsOR21b, TabsOR34a, TabsOR34b, TabsOR34c, TabsOR62a, and TabsOR62b. The phylogenetic analysis indicated that six TabsORs were clustered within the lepidopteran sex pheromone receptor clade, while an expansion clade containing ten TabsORs resulted from tandem duplication events. Additionally, five TabsORs were classified into a specific OR clade in T. absoluta. Furthermore, through RNA-Seq and RT-qPCR analyses, we identified five TabsORs (TabsOR21a, TabsOR26a, TabsOR34a, TabsOR34c, and TabsOR36) exhibiting female-antennae-biased expression. Our study provides a valuable foundation to further investigations into the molecular and ecological functions of TabsORs, particularly in relation to oviposition behavior. These findings provide foundational data for the future exploration of the functions of female-biased expression OR genes in T. absoluta, thereby facilitating the further development of eco-friendly attract-and-kill techniques for the prevention and control of T. absoluta.
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