首页> 外文期刊>Journal of phycology >A NEW CELL STAGE IN THE HAPLOID-DIPLOID LIFE CYCLE OF THE COLONY-FORMING HAPTOPHYTE PHAEOCYSTIS ANTARCTICA AND ITS ECOLOGICAL IMPLICATIONS
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A NEW CELL STAGE IN THE HAPLOID-DIPLOID LIFE CYCLE OF THE COLONY-FORMING HAPTOPHYTE PHAEOCYSTIS ANTARCTICA AND ITS ECOLOGICAL IMPLICATIONS

机译:形成殖民地的拟南芥噬藻细胞的半-二倍体生命周期中的新细胞阶段及其生态学意义

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Few members of the well-studied marine phytoplankton taxa have such a complex and polymorphic life cycle as the genus Phaeocystis. However, despite the ecological and biogeochemical importance of Phaeocystis blooms, the life cycle of the major bloom-forming species of this genus remains illusive and poorly resolved. At least six different life stages and up to 15 different functional components of the life cycle have been proposed. Our culture and field observations indicate that there is a previously unrecognized stage in the life cycle of P. antarctica G. Karst. This stage comprises nonmotile cells that range in size from ~4.2 to 9.8 om in diameter and form aggregates in which interstitial spaces between cells are small or absent. The aggregates (hereafter called attached aggregates, AAs) adhere to available surfaces. In field samples, small AAs, surrounded by a colony skin, adopt an epiphytic lifestyle and adhere in most cases to setae or spines of diatoms. These AAs, either directly or via other life stages, produce the colonial life stage. Culture studies indicate that bloom-forming, colonial stages release flagellates (microzoospores) that fuse and form AAs, which can proliferate on the bottom of culture vessels and can eventually reform free-floating colonies. We propose that these AAs are a new stage in the life cycle of P. antarctica, which we believe to be the zygote, thus documenting sexual reproduction in this species for the first time.
机译:经过深入研究的海洋浮游植物分类群中,很少有像囊藻属这样复杂而多态的生命周期。然而,尽管Phaeocystis绽放的生态和生物地球化学重要性,但该属的主要形成绽放的物种的生命周期仍然是虚幻的且难以解决。已经提出了生命周期的至少六个不同的生命阶段和多达15个不同的功能组件。我们的文化和田野观察表明,南极体育喀斯特(P. antarctica G. Karst)的生命周期存在一个以前未被认识的阶段。该阶段包括直径在约4.2至9.8 om范围内的非活动性细胞,并形成聚集体,其中细胞之间的间隙很小或不存在。聚集体(以下称为附着聚集体,AA)附着在可用表面上。在田间样品中,被菌落皮肤包围的小型AA采用附生的生活方式,在大多数情况下会附着在硅藻的刚毛或棘突上。这些氨基酸直接或通过其他生命阶段产生了殖民地生命阶段。文化研究表明,形成花的殖民时期释放出融合并形成AA的鞭毛(微孢子孢子),它们可以在培养容器的底部扩散并最终改造自由漂浮的菌落。我们认为这些AA是南极疟原虫生命周期的一个新阶段,我们认为它是合子,因此首次记录了该物种的有性繁殖。

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