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寄生虫与浮游植物,特别着重于甲藻感染。

Parasites and phytoplankton, with special emphasis on dinoflagellate infections.

作者信息

Park Myung Gil, Yih Wonho, Coats D Wayne

机构信息

Department of Oceanography, College of Natural Sciences, Chonnam National University, Gwangju 500-757, Republic of Korea.

出版信息

J Eukaryot Microbiol. 2004 Mar-Apr;51(2):145-55. doi: 10.1111/j.1550-7408.2004.tb00539.x.

DOI:10.1111/j.1550-7408.2004.tb00539.x
PMID:15134249
Abstract

Planktonic members of most algal groups are known to harbor intracellular symbionts, including viruses, bacteria, fungi, and protozoa. Among the dinoflagellates, viral and bacterial associations were recognized a quarter century ago, yet their impact on host populations remains largely unresolved. By contrast, fungal and protozoan infections of dinoflagellates are well documented and generally viewed as playing major roles in host population dynamics. Our understanding of fungal parasites is largely based on studies for freshwater diatoms and dinoflagellates, although fungal infections are known for some marine phytoplankton. In freshwater systems, fungal chytrids have been linked to mass mortalities of host organisms, suppression or retardation of phytoplankton blooms, and selective effects on species composition leading to successional changes in plankton communities. Parasitic dinoflagellates of the genus Amoebophrya and the newly described Perkinsozoa, Parvilucifera infectans, are widely distributed in coastal waters of the world where they commonly infect photosynthetic and heterotrophic dinoflagellates. Recent work indicates that these parasites can have significant impacts on host physiology, behavior, and bloom dynamics. Thus, parasitism needs to be carefully considered in developing concepts about plankton dynamics and the flow of material in marine food webs.

摘要

大多数藻类群体的浮游成员已知含有细胞内共生体,包括病毒、细菌、真菌和原生动物。在甲藻中,病毒和细菌的关联在四分之一个世纪前就已被认识到,但其对宿主种群的影响在很大程度上仍未得到解决。相比之下,甲藻的真菌感染和原生动物感染有充分的文献记载,并且通常被认为在宿主种群动态中起主要作用。我们对真菌寄生虫的了解主要基于对淡水硅藻和甲藻的研究,尽管已知一些海洋浮游植物会受到真菌感染。在淡水系统中,真菌壶菌与宿主生物的大量死亡、浮游植物水华的抑制或延迟以及对物种组成的选择作用有关,从而导致浮游生物群落的演替变化。阿米巴藻属的寄生性甲藻以及新描述的 Perkinsoszoa 属的 Parvilucifera infectans,广泛分布于世界沿海水域,它们通常感染光合和异养甲藻。最近的研究表明,这些寄生虫会对宿主的生理、行为和水华动态产生重大影响。因此在构建关于浮游生物动态和海洋食物网中物质流动的概念时,需要仔细考虑寄生现象。

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