Bouquet Jean-Marie, Spriet Endy, Troedsson Christofer, Otterå Helen, Chourrout Daniel, Thompson Eric M
Sars International Centre for Marine Molecular Biology, Thormøhlensgate 55, N-5008 Bergen , Norway.
J Plankton Res. 2009 Apr;31(4):359-370. doi: 10.1093/plankt/fbn132. Epub 2009 Jan 16.
The pan-global marine appendicularian, Oikopleura dioica, shows considerable promise as a candidate model organism for cross-disciplinary research ranging from chordate genetics and evolution to molecular ecology research. This urochordate, has a simplified anatomical organization, remains transparent throughout an exceptionally short life cycle of less than 1 week and exhibits high fecundity. At 70 Mb, the compact, sequenced genome ranks among the smallest known metazoan genomes, with both gene regulatory and intronic regions highly reduced in size. The organism occupies an important trophic role in marine ecosystems and is a significant contributor to global vertical carbon flux. Among the short list of bona fide biological model organisms, all share the property that they are amenable to long-term maintenance in laboratory cultures. Here, we tested diet regimes, spawn densities and dilutions and seawater treatment, leading to optimization of a detailed culture protocol that permits sustainable long-term maintenance of O. dioica, allowing continuous, uninterrupted production of source material for experimentation. The culture protocol can be quickly adapted in both coastal and inland laboratories and should promote rapid development of the many original research perspectives the animal offers.
全球分布的海洋尾海鞘纲动物——住囊虫,作为一种候选模式生物展现出了巨大潜力,可用于从脊索动物遗传与进化到分子生态学研究等跨学科研究。这种尾索动物具有简化的解剖结构,在不到1周的极短生命周期内始终保持透明,且繁殖力高。其紧凑的测序基因组大小为70兆碱基对,是已知最小的后生动物基因组之一,基因调控区和内含子区域的大小都大幅缩减。该生物在海洋生态系统中占据重要的营养位置,是全球垂直碳通量的重要贡献者。在真正的生物模式生物的简短名单中,所有生物都具备易于在实验室培养中长期维持的特性。在此,我们测试了饮食方案、产卵密度与稀释度以及海水处理方法,从而优化出一套详细的培养方案,该方案能够实现住囊虫的可持续长期维持,保证为实验持续、不间断地提供原材料。该培养方案可在沿海和内陆实验室快速调整,应能推动基于这种动物的众多原创性研究视角的快速发展。