KAUST Global Collaborative Research Program, Division of Life Science, The Hong Kong University of Science and Technology, Hong Kong, China.
Comp Biochem Physiol B Biochem Mol Biol. 2012 Aug;162(4):113-9. doi: 10.1016/j.cbpb.2012.04.001. Epub 2012 Apr 5.
The polychaete Hydroides elegans (Serpulidae, Lophotrochozoa) is a problematic marine fouling organism in most tropical and subtropical coastal environment. Competent larvae of H. elegans undergo the transition from the swimming larval stage to the sessile juvenile stage with substantial morphological, physiological, and behavior changes. This transition is often referred to as larval settlement and metamorphosis. In this study, we examined the possible involvement of calmodulin (CaM) - a multifunctional calcium metabolism regulator, in the larval settlement and metamorphosis of H. elegans. A full-length CaM cDNA was successfully cloned from H. elegans (He-CaM) and it contained an open reading frame of 450 bp, encoding 149 amino acid residues. It was highly expressed in 12h post-metamorphic juveniles, and remained high in adults. In situ hybridization conducted in competent larvae and juveniles revealed that He-CaM gene was continuously expressed in the putative growth zones, branchial rudiments, and collar region, suggesting that He-CaM might be involved in tissue differentiation and development. Our subsequent bioassay revealed that the CaM inhibitor W7 could effectively inhibit larval settlement and metamorphosis, and cause some morphological defects of unsettled larvae. In conclusion, our results revealed that CaM has important functions in the larval settlement and metamorphosis of H. elegans.
多毛类环节动物美丽盘管虫(盘管虫科,螺旋体动物门)是大多数热带和亚热带沿海环境中具有危害性的海洋污损生物。具有活力的盘管虫幼虫经历从游泳幼虫阶段到固着幼体阶段的转变,伴随着大量形态、生理和行为的变化。这个转变通常被称为幼虫附着和变态。在这项研究中,我们研究了钙调蛋白(CaM)-一种多功能的钙代谢调节剂,在美丽盘管虫幼虫附着和变态中的可能参与。我们成功地从美丽盘管虫中克隆了全长的 CaM cDNA(He-CaM),它包含一个 450bp 的开放阅读框,编码 149 个氨基酸残基。它在变态后 12 小时的幼体中高度表达,并在成体中保持高水平表达。在有活力的幼虫和幼体中的原位杂交显示,He-CaM 基因在假定的生长区、鳃原基和领区持续表达,表明 He-CaM 可能参与组织分化和发育。我们随后的生物测定表明,CaM 抑制剂 W7 可以有效抑制幼虫附着和变态,并导致未附着幼虫的一些形态缺陷。总之,我们的结果表明 CaM 在美丽盘管虫幼虫附着和变态中具有重要作用。