Seto Kensuke, Degawa Yousuke
Sugadaira Research Station, Mountain Science Center, University of Tsukuba, 1278-294, Sugadaira-Kogen, Ueda, Nagano 386-2204, Japan.
Sugadaira Research Station, Mountain Science Center, University of Tsukuba, 1278-294, Sugadaira-Kogen, Ueda, Nagano 386-2204, Japan.
Protist. 2018 Aug;169(4):507-520. doi: 10.1016/j.protis.2018.02.006. Epub 2018 Mar 5.
Chytrids are early diverging lineages of true fungi that reproduce with posteriorly uniflagellate zoospores. In aquatic ecosystems, parasitic chytrids of algae have important ecological roles by influencing the population dynamics of phytoplankton and transferring nutrients and energy from inedible algae to zooplankton via zoospores. Despite their ecological importance, information on parasitic chytrids is lacking in the current systematics of chytrids. Here, we investigated a novel chytrid culture KS100 that parasitizes the green alga, Microglena coccifera (Volvocales). A cross-inoculation experiment revealed that KS100 infection was specific to the genus Microglena. Thallus morphology of KS100 is characterized by spherical or subspherical zoosporangium, which becomes slightly angular during zoospore discharge, 2-3 small and inoperculate pores from where zoospores are discharged, and rhizoids branching at the base that extends in a fan-like shape. This combination of characteristics was distinct from any other known chytrids. In molecular phylogeny, KS100 was placed in the order Rhizophydiales and was distinguished from any known families in the order. Zoospores of KS100 possessed a kinetosome-associated structure whose morphology and positioning were unique among the Rhizophydiales. Based on these results, we describe this chytrid as Collimyces mutans gen. et sp. nov. in the new family Collimycetaceae.
壶菌是真正真菌中早期分化的谱系,通过具尾单鞭毛游动孢子进行繁殖。在水生生态系统中,藻类寄生壶菌通过影响浮游植物的种群动态,并通过游动孢子将营养物质和能量从不可食用的藻类转移到浮游动物,从而发挥着重要的生态作用。尽管它们具有生态重要性,但在当前的壶菌分类系统中,关于寄生壶菌的信息却很缺乏。在此,我们研究了一种寄生绿藻小球藻(团藻目)的新型壶菌培养物KS100。交叉接种实验表明,KS100的感染对小球藻属具有特异性。KS100的菌体形态特征为球形或近球形的游动孢子囊,在游动孢子释放时会略微变角,有2 - 3个小的、无盖的孔,游动孢子从这些孔中释放,以及在基部呈扇形延伸的分支假根。这种特征组合与任何其他已知壶菌都不同。在分子系统发育中,KS100被置于根壶菌目,且与该目中任何已知科都不同。KS100的游动孢子具有一种与动基体相关的结构,其形态和定位在根壶菌目中是独特的。基于这些结果,我们将这种壶菌描述为新科集壶菌科中的新属新种变异集壶菌。