Letcher Peter M, Powell Martha J, Davis William J
Department of Biological Sciences, University of Alabama, Tuscaloosa, Alabama 35487
Department of Biological Sciences, University of Alabama, Tuscaloosa, Alabama 35487.
Mycologia. 2015 Jul-Aug;107(4):808-30. doi: 10.3852/14-280. Epub 2015 Apr 24.
Many chytrid phylogenies contain lineages representing a lone taxon or a few organisms. One such lineage in recent molecular phylogenies of Rhizophydiales contained two marine chytrids, Rhizophydium littoreum and Rhizophydium aestuarii. To better understand the relationship between these organisms, we increased sampling such that the R. littoreum/R. aestuarii lineage included 10 strains of interest. To place this lineage in Rhizophydiales, we constructed a molecular phylogeny from partial nuc 28S rDNA D1-D3 domains (28S) of these and 80 additional strains in Rhizophydiales and examined thallus morphology and zoospore ultrastructure of our strains of interest. We also analyzed sequences of the nuc rDNA region encompassing the internal transcribed spacers 1 and 2, along with the 5.8S rDNA (ITS) of our 10 strains of interest to assess sequence similarity and phylogenetic placement of strains within the lineage. The 10 strains grouped together in three well supported clades: (i) Rhizophydium littoreum+Phlyctochytrium mangrovei, (ii) three strains of Rhizophydium aestuarii and (iii) five previously unidentified strains. Light microscopic observations revealed four distinct thallus morphologies, and zoospore ultrastructural analyses revealed four distinct constellations of ultrastructural features. On the bases of morphological, ultrastructural and molecular evidence we place these strains in the new family Halomycetaceae and four new genera (Halomyces, Paludomyces, Ulkenomyces, Paranamyces) in Rhizophydiales.
许多壶菌系统发育树包含代表单一分类单元或少数生物体的谱系。在最近的根壶菌目分子系统发育树中,有一个这样的谱系包含两种海洋壶菌,即滨海根壶菌和河口根壶菌。为了更好地理解这些生物体之间的关系,我们增加了采样,使得滨海根壶菌/河口根壶菌谱系包含10个感兴趣的菌株。为了将这个谱系置于根壶菌目中,我们从这些菌株以及根壶菌目中另外80个菌株的部分核28S rDNA D1 - D3结构域(28S)构建了分子系统发育树,并检查了我们感兴趣的菌株的菌体形态和游动孢子超微结构。我们还分析了包含内部转录间隔区1和2以及我们10个感兴趣菌株的5.8S rDNA(ITS)的核rDNA区域序列,以评估谱系内菌株的序列相似性和系统发育位置。这10个菌株聚为三个得到充分支持的分支:(i)滨海根壶菌 + 红树林盘壶菌,(ii)三个河口根壶菌菌株,以及(iii)五个先前未鉴定的菌株。光学显微镜观察揭示了四种不同的菌体形态,游动孢子超微结构分析揭示了四种不同的超微结构特征组合。基于形态学、超微结构和分子证据,我们将这些菌株归入根壶菌目中的新科卤壶菌科以及四个新属(卤壶菌属、沼壶菌属、乌尔肯壶菌属、副纳壶菌属)。