Institute for Evolution and Biodiversity , University of Münster , Hüfferstrasse 1,48149 Münster , Germany.
R Soc Open Sci. 2016 Apr 20;3(4):160138. doi: 10.1098/rsos.160138. eCollection 2016 Apr.
Down syndrome cell adhesion molecule 1 (Dscam1) has wide-reaching and vital neuronal functions although the role it plays in insect and crustacean immunity is less well understood. In this study, we combine different approaches to understand the roles that Dscam1 plays in fitness-related contexts in two model insect species. Contrary to our expectations, we found no short-term modulation of Dscam1 gene expression after haemocoelic or oral bacterial exposure in Tribolium castaneum, or after haemocoelic bacterial exposure in Drosophila melanogaster. Furthermore, RNAi-mediated Dscam1 knockdown and subsequent bacterial exposure did not reduce T. castaneum survival. However, Dscam1 knockdown in larvae resulted in adult locomotion defects, as well as dramatically reduced fecundity in males and females. We suggest that Dscam1 does not always play a straightforward role in immunity, but strongly influences behaviour and fecundity. This study takes a step towards understanding more about the role of this intriguing gene from different phenotypic perspectives.
Down syndrome cell adhesion molecule 1 (Dscam1) 在神经细胞中具有广泛而重要的功能,尽管它在昆虫和甲壳动物免疫中的作用还不太清楚。在这项研究中,我们结合了不同的方法来理解 Dscam1 在两种模式昆虫物种中的与适应度相关的环境中所扮演的角色。与我们的预期相反,我们没有发现 Tribolium castaneum 血腔或口服细菌暴露后 Dscam1 基因表达的短期调节,也没有发现 Drosophila melanogaster 血腔细菌暴露后的短期调节。此外,RNAi 介导的 Dscam1 敲低和随后的细菌暴露并没有降低 T. castaneum 的存活率。然而,幼虫中的 Dscam1 敲低导致成虫运动缺陷,以及雄性和雌性的繁殖力显著降低。我们认为 Dscam1 并不总是在免疫中扮演直接的角色,而是强烈影响行为和繁殖力。这项研究从不同的表型角度朝着理解这个有趣基因的作用迈出了一步。