Odorant-Binding and Chemosensory Proteins in Fig Wasps: Evolutionary Insights From Comparative Studies.

IF 2.1 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Molecular Evolution Pub Date : 2024-02-01 Epub Date: 2024-01-27 DOI:10.1007/s00239-023-10152-x
Hui Yu, Xiaojue Nong, Weicheng Huang, Chantarasuwan Bhanumas, Xiaoxia Deng, Yamei Ding, Wanzhen Liu
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Abstract

Fig wasps (Agaonidae; Hymenoptera) are the only pollinating insects of fig trees (Ficus; Moraceae), forming the most closely and highly specific mutualism with the host. We used transcriptome sequences of 25 fig wasps from six genera to explore the evolution of key molecular components of fig wasp chemosensory genes: odorant-binding proteins (OBPs) and chemosensory proteins (CSPs). We identified a total 321 OBPs and 240 CSPs, with each species recording from 6 to 27 OBP genes and 6-19 CSP genes. 318 OBP genes are clustered into 17 orthologous groups and can be divided into two groups: PBP sensitive to pheromone and GOBP sensitive to general odor molecules, such as alcohols, esters, acids, ketones, and terpenoids. 240 CSP genes are clustered into 12 orthologous groups, which can be divided into three major groups and have functions, such as olfactory, tissue formation and/or regeneration, developmental, and some specific and unknown function. The gene sequences of most orthologous groups vary greatly among species and are consistent with the phylogenetic relationships between fig wasps. Strong purifying selection of both OBP and CSP genes was detected, as shown by low ω values. A positive selection was detected in one locus in CSP1. In conclusion, the evolution of chemosensory proteins OBPs and CSPs in fig wasps is relatively conservative, and they play an indispensable role in the life activities of fig wasps. Our results provide a starting point for understanding the molecular basis of the chemosensory systems of fig wasps.

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无花果蜂的气味结合蛋白和化感蛋白:比较研究的进化启示。
无花果蜂(Agaonidae;膜翅目)是无花果树(Ficus;Moraceae)的唯一授粉昆虫,与寄主形成最密切和高度特异的互作关系。我们利用来自 6 个属的 25 种无花果蜂的转录组序列,探讨了无花果蜂化感基因的关键分子成分:气味结合蛋白(OBPs)和化感蛋白(CSPs)的进化。我们共鉴定出 321 个 OBP 和 240 个 CSP,每个物种记录了 6 至 27 个 OBP 基因和 6 至 19 个 CSP 基因。318 个 OBP 基因被聚类为 17 个同源组,可分为两组:PBP 对信息素敏感,GOBP 对一般气味分子(如醇、酯、酸、酮和萜类化合物)敏感。240 个 CSP 基因被聚类为 12 个同源组,可分为三大类,具有嗅觉、组织形成和/或再生、发育等功能,以及一些特定的未知功能。大多数同源组的基因序列在不同物种之间差异很大,与无花果蜂之间的系统发育关系一致。从较低的ω值可以看出,OBP 和 CSP 基因都受到了强烈的纯化选择。在 CSP1 的一个位点上检测到了正选择。总之,无花果蜂化感蛋白 OBPs 和 CSPs 的进化相对保守,它们在无花果蜂的生命活动中发挥着不可或缺的作用。我们的研究结果为了解无花果蜂化感系统的分子基础提供了一个起点。
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来源期刊
Journal of Molecular Evolution
Journal of Molecular Evolution 生物-进化生物学
CiteScore
5.50
自引率
2.60%
发文量
36
审稿时长
3 months
期刊介绍: Journal of Molecular Evolution covers experimental, computational, and theoretical work aimed at deciphering features of molecular evolution and the processes bearing on these features, from the initial formation of macromolecular systems through their evolution at the molecular level, the co-evolution of their functions in cellular and organismal systems, and their influence on organismal adaptation, speciation, and ecology. Topics addressed include the evolution of informational macromolecules and their relation to more complex levels of biological organization, including populations and taxa, as well as the molecular basis for the evolution of ecological interactions of species and the use of molecular data to infer fundamental processes in evolutionary ecology. This coverage accommodates such subfields as new genome sequences, comparative structural and functional genomics, population genetics, the molecular evolution of development, the evolution of gene regulation and gene interaction networks, and in vitro evolution of DNA and RNA, molecular evolutionary ecology, and the development of methods and theory that enable molecular evolutionary inference, including but not limited to, phylogenetic methods.
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