Jančič Sašo, Nguyen Hai D T, Frisvad Jens C, Zalar Polona, Schroers Hans-Josef, Seifert Keith A, Gunde-Cimerman Nina
Department of Biology, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.
Department of Biology, Faculty of Science, University of Ottawa, Ottawa, Ontario, Canada.
PLoS One. 2015 May 27;10(5):e0125933. doi: 10.1371/journal.pone.0125933. eCollection 2015.
Wallemia sebi is a xerophilic food- and air-borne fungus. The name has been used for strains that prevail in cold, temperate and tropical climates. In this study, multi-locus phylogenetic analyses, using the internal transcribed spacer (ITS) regions, DNA replication licensing factor (MCM7), pre-rRNA processing protein (TSR1), RNA polymerase II largest subunit (RPB1), RNA polymerase II second largest subunit (RPB2) and a new marker 3´-phosphoadenosine-5´-phosphatase (HAL2), confirmed the previous hypothesis that W. sebi presents a complex of at least four species. Here, we confirm and apply the phylogenetic analyses based species hypotheses from a companion study to guide phenotypic assessment of W. sebi like strains from a wide range of substrates, climates and continents allowed the recognition of W. sebi sensu stricto and three new species described as W. mellicola, W. Canadensis, and W. tropicalis. The species differ in their conidial size, xerotolerance, halotolerance, chaotolerance, growth temperature regimes, extracellular enzyme activity profiles, and secondary metabolite patterns. A key to all currently accepted Wallemia species is provided that allow their identification on the basis of physiological, micromorphological and culture characters.
西氏瓦勒霉是一种嗜干性的、可通过食物和空气传播的真菌。该名称已被用于指代在寒冷、温带和热带气候中占优势的菌株。在本研究中,利用内部转录间隔区(ITS)区域、DNA复制许可因子(MCM7)、前体rRNA加工蛋白(TSR1)、RNA聚合酶II最大亚基(RPB1)、RNA聚合酶II第二大亚基(RPB2)以及一个新标记3'-磷酸腺苷-5'-磷酸酶(HAL2)进行的多位点系统发育分析,证实了之前的假设,即西氏瓦勒霉呈现出一个至少包含四个物种的复合体。在此,我们确认并应用了来自一项配套研究的基于系统发育分析的物种假设,以指导对来自广泛底物、气候和各大洲的类似西氏瓦勒霉菌株进行表型评估,从而识别出狭义的西氏瓦勒霉以及三个新物种,分别命名为蜜西氏瓦勒霉、加拿大西氏瓦勒霉和热带西氏瓦勒霉。这些物种在分生孢子大小、耐干性、耐盐性、耐混沌性、生长温度范围、胞外酶活性谱以及次生代谢产物模式等方面存在差异。提供了一个目前所有已被接受的瓦勒霉属物种的检索表,可根据生理、微观形态和培养特征对它们进行鉴定。