Lin Silu, Elsner Daniel, Ams Leon, Korb Judith, Rosengaus Rebeca
Evolutionary Biology and Ecology, University of Freiburg, 79104, Freiburg, Germany.
Research Institute for the Environment and Livelihoods, Charles Darwin University, Casuarina Campus, Darwin, NT, 0909, Australia.
Sci Rep. 2024 Jan 26;14(1):2214. doi: 10.1038/s41598-024-51772-7.
Social insect castes (e.g., queens, workers) are prime examples of phenotypic plasticity (i.e., different phenotypes arising from the same genotype). Yet, the mechanisms that give rise to highly fertile, long-lived queens versus non-reproducing, short-lived workers are not well understood. Recently, a module of co-expressed genes has been identified that characterizes queens compared to workers of the termite Cryptotermes secundus (Kalotermitidae): the Queen Central Module (QCM). We tested whether the QCM is shared in termite species, in which queens gradually develop via early larval and late larval instars, the latter functioning as totipotent workers (linear development). Similar as in C. secundus, gene expression profiles revealed an enrichment of QCM genes in Zootermopsis angusticollis queens, a species from another termite family (Archotermopsidae). The expression of these QCM genes became gradually enriched during development from early larval instars via workers to queens. Thus, our results support the hypothesis of a conserved genetic toolkit that characterizes termite queens with gradual linear development. Our data also imply a strong caste-specific tissue specificity with the QCM signal being restricted to head-prothorax tissues in termite queens. This tissue-specific expression of key aging-related genes might have facilitated the evolution of a long lifespan in termite queens.
社会性昆虫的品级(如蚁后、工蚁)是表型可塑性的典型例子(即相同基因型产生不同表型)。然而,导致具有高繁殖力、长寿的蚁后与不繁殖、短命的工蚁产生差异的机制尚不清楚。最近,已经鉴定出一组共表达基因模块,该模块可区分白蚁Cryptotermes secundus(木白蚁科)的蚁后与工蚁:蚁后核心模块(QCM)。我们测试了QCM在白蚁物种中是否也存在,在这些物种中,蚁后通过早期幼虫和晚期幼虫龄期逐渐发育,后者作为全能工蚁发挥作用(线性发育)。与在C. secundus中相似,基因表达谱显示QCM基因在Zootermopsis angusticollis蚁后中富集,Zootermopsis angusticollis是来自另一个白蚁科(原白蚁科)的物种。这些QCM基因的表达在从早期幼虫龄期经工蚁到蚁后的发育过程中逐渐富集。因此,我们的结果支持了这样一种假说,即存在一个保守的遗传工具包来表征具有逐渐线性发育的白蚁蚁后。我们的数据还表明存在很强的品级特异性组织特异性,QCM信号仅限于白蚁蚁后的头部 - 前胸组织。关键衰老相关基因的这种组织特异性表达可能促进了白蚁蚁后长寿的进化。