Mitaka Yuki, Kobayashi Kazuya, Mikheyev Alexander, Tin Mandy M Y, Watanabe Yutaka, Matsuura Kenji
Laboratory of Insect Ecology, Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Kyoto, 606-8502, Japan.
Ecology and Evolution Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, 904-0495, Japan.
PLoS One. 2016 Jan 13;11(1):e0146125. doi: 10.1371/journal.pone.0146125. eCollection 2016.
The sophisticated colony organization of eusocial insects is primarily maintained through the utilization of pheromones. The regulation of these complex social interactions requires intricate chemoreception systems. The recent publication of the genome of Zootermopsis nevadensis opened a new avenue to study molecular basis of termite caste systems. Although there has been a growing interest in the termite chemoreception system that regulates their sophisticated caste system, the relationship between division of labor and expression of chemoreceptor genes remains to be explored. Using high-throughput mRNA sequencing (RNA-seq), we found several chemoreceptors that are differentially expressed among castes and between sexes in a subterranean termite Reticulitermes speratus. In total, 53 chemoreception-related genes were annotated, including 22 odorant receptors, 7 gustatory receptors, 12 ionotropic receptors, 9 odorant-binding proteins, and 3 chemosensory proteins. Most of the chemoreception-related genes had caste-related and sex-related expression patterns; in particular, some chemoreception genes showed king-biased or queen-biased expression patterns. Moreover, more than half of the genes showed significant age-dependent differences in their expression in female and/or male reproductives. These results reveal a strong relationship between the evolution of the division of labor and the regulation of chemoreceptor gene expression, thereby demonstrating the chemical communication and underlining chemoreception mechanism in social insects.
真社会性昆虫复杂的群体组织主要通过信息素的利用来维持。这些复杂社会互动的调节需要复杂的化学感受系统。内华达古白蚁基因组的近期公布为研究白蚁品级系统的分子基础开辟了一条新途径。尽管人们对调节其复杂品级系统的白蚁化学感受系统的兴趣日益浓厚,但劳动分工与化学感受器基因表达之间的关系仍有待探索。通过高通量mRNA测序(RNA-seq),我们在内栖白蚁斯氏网白蚁中发现了几种在不同品级和不同性别之间差异表达的化学感受器。总共注释了53个与化学感受相关的基因,包括22个气味受体、7个味觉受体、12个离子型受体、9个气味结合蛋白和3个化学感受蛋白。大多数与化学感受相关的基因具有与品级和性别相关的表达模式;特别是,一些化学感受基因呈现出偏向蚁王或蚁后的表达模式。此外,超过一半的基因在雌性和/或雄性生殖蚁中的表达表现出显著的年龄依赖性差异。这些结果揭示了劳动分工的进化与化学感受器基因表达调节之间的紧密关系,从而证明了社会性昆虫中的化学通讯并强调了化学感受机制。