CAS and Shandong Province Key Laboratory of Experimental Marine Biology, Center for Ocean Mega-Science, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, 266071, China.
Laboratory for Marine Biology and Biotechnology, Pilot National Laboratory for Marine Science and Technology, Qingdao, 266237, China.
Sci Rep. 2021 May 31;11(1):11378. doi: 10.1038/s41598-021-90800-8.
Lophotrochozoan species exhibit wide morphological diversity; however, the molecular basis underlying this diversity remains unclear. Here, we explored the evolution of Notch pathway genes across 37 metazoan species via phylogenetic and molecular evolutionary studies with emphasis on the lophotrochozoans. We displayed the components of Notch pathway in metazoans and found that Delta and Hes/Hey-related genes, as well as their functional domains, are duplicated in lophotrochozoans. Comparative transcriptomics analyses allow us to pinpoint sequence divergence of multigene families in the Notch signalling pathway. We identified the duplication mechanism of a mollusc-specific gene, Delta2, and found it displayed complementary expression throughout development. Furthermore, we found the functional diversification not only in expanded genes in the Notch pathway (Delta and Hes/Hey-related genes), but also in evolutionary conservative genes (Notch, Presenilin, and Su(H)). Together, this comprehensive study demonstrates conservation and divergence within the Notch pathway, reveals evolutionary relationships among metazoans, and provides evidence for the occurrence of developmental diversity in lophotrochozoans, as well as a basis for future gene function studies.
螺旋动物门物种表现出广泛的形态多样性;然而,这种多样性的分子基础尚不清楚。在这里,我们通过系统发育和分子进化研究,重点研究了螺旋动物门,探索了 Notch 途径基因在 37 种后生动物物种中的进化。我们展示了后生动物中 Notch 途径的组成部分,发现 Delta 和 Hes/Hey 相关基因及其功能结构域在螺旋动物门中发生了复制。比较转录组学分析使我们能够确定 Notch 信号通路中多基因家族的序列差异。我们确定了一种软体动物特异性基因 Delta2 的复制机制,并发现它在整个发育过程中表现出互补表达。此外,我们发现功能多样化不仅存在于 Notch 途径中扩展的基因(Delta 和 Hes/Hey 相关基因),而且存在于进化保守基因(Notch、Presenilin 和 Su(H))中。总之,这项全面的研究表明了 Notch 途径的保守性和分化性,揭示了后生动物之间的进化关系,并为螺旋动物门的发育多样性提供了证据,也为未来的基因功能研究提供了基础。