Zhang Bin, Zhang Wei, Nie Rui-E, Li Wen-Zhu, Segraves Kari A, Yang Xing-Ke, Xue Huai-Jun
Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
Insect Biochem Mol Biol. 2016 Dec;79:108-118. doi: 10.1016/j.ibmb.2016.11.001. Epub 2016 Nov 9.
Divergence in chemosensory traits has been posited as an important component of chemosensory speciation in insects. In particular, chemosensory genes expressed in the peripheral sensory neurons are likely to influence insect behaviors such as preference for food, oviposition sites, and mates. Despite their key role in insect behavior and potentially speciation, the underlying genetic basis for divergence in chemosensory traits remains largely unexplored. One way to ascertain the role of chemosensory genes in speciation is to make comparisons of these genes across closely related species to detect the genetic signatures of divergence. Here, we used high throughput transcriptome analysis to compare chemosensory genes of the sister leaf beetles species Pyrrhalta maculicollis and P. aenescens, whose sexual isolation and host plant preference are mediated by divergent chemical signals. Although there was low overall divergence between transcriptome profiles, there were a number of genes that were differentially expressed between the species. Furthermore, we also detected two chemosensory genes under positive selection, one of which that was also differentially expressed between the species, suggesting a possible role for these genes in chemical-based premating reproductive isolation and host use. Combined with the available chemical and ecological work in this system, further studies of the divergent chemosensory genes presented here will provide insight into the process of chemosensory speciation among Pyrrhalta beetles.
化学感应性状的差异被认为是昆虫化学感应物种形成的一个重要组成部分。特别是,在外周感觉神经元中表达的化学感应基因可能会影响昆虫的行为,如对食物、产卵地点和配偶的偏好。尽管它们在昆虫行为以及潜在的物种形成中起着关键作用,但化学感应性状差异的潜在遗传基础在很大程度上仍未被探索。确定化学感应基因在物种形成中作用的一种方法是在密切相关的物种间比较这些基因,以检测差异的遗传特征。在这里,我们使用高通量转录组分析来比较姐妹叶甲物种黄斑直缘跳甲和铜绿直缘跳甲的化学感应基因,它们的性隔离和寄主植物偏好是由不同的化学信号介导的。虽然转录组图谱之间的总体差异较小,但有许多基因在这两个物种之间存在差异表达。此外,我们还检测到两个处于正选择下的化学感应基因,其中一个在这两个物种之间也存在差异表达,这表明这些基因在基于化学物质的交配前生殖隔离和寄主利用中可能发挥作用。结合该系统中现有的化学和生态学研究工作,对这里所呈现的差异化学感应基因的进一步研究将为直缘跳甲属甲虫的化学感应物种形成过程提供见解。