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From the Tunnels into the Treetops: New Lineages of Black Yeasts from Biofilm in the Stockholm Metro System and Their Relatives among Ant-Associated Fungi in the Chaetothyriales

机译:从隧道到树梢:斯德哥尔摩地铁系统生物膜中的黑酵母新谱系及其在甲虫中与蚂蚁相关的真菌中的亲属

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摘要

Rock-inhabiting fungi harbour species-rich, poorly differentiated, extremophilic taxa of polyphyletic origin. Their closest relatives are often well-known species from various biotopes with significant pathogenic potential. Speleothems represent a unique rock-dwelling habitat, whose mycobiota are largely unexplored. Isolation of fungi from speleothem biofilm covering bare granite walls in the Kungsträdgården metro station in Stockholm yielded axenic cultures of two distinct black yeast morphotypes. Phylogenetic analyses of DNA sequences from six nuclear loci, ITS, nuc18S and nuc28S rDNA, rpb1, rpb2 and β-tubulin, support their placement in the Chaetothyriales (Ascomycota). They are described as a new genus Bacillicladium with the type species B. lobatum, and a new species Bradymyces graniticola. Bacillicladium is distantly related to the known five chaetothyrialean families and is unique in the Chaetothyriales by variable morphology showing hyphal, meristematic and yeast-like growth in vitro. The nearest relatives of Bacillicladium are recruited among fungi isolated from cardboard-like construction material produced by arboricolous non-attine ants. Their sister relationship is weakly supported by the Maximum likelihood analysis, but strongly supported by Bayesian inference. The genus Bradymyces is placed amidst members of the Trichomeriaceae and is ecologically undefined; it includes an opportunistic animal pathogen while two other species inhabit rock surfaces. ITS rDNA sequences of three species accepted in Bradymyces and other undescribed species and environmental samples were subjected to phylogenetic analysis and in-depth comparative analysis of ITS1 and ITS2 secondary structures in order to study their intraspecific variability. Compensatory base change criterion in the ITS2 secondary structure supported delimitation of species in Bradymyces, which manifest a limited number of phenotypic features useful for species recognition. The role of fungi in the speleothem biofilm and relationships of Bacillicladium and Bradymyces with other members of the Chaetothyriales are discussed.
机译:居住在岩石中的真菌具有物种丰富,分化差,具有极端生物起源的极端生物类群。它们的近亲通常是来自具有重大致病潜力的各种生物群落的知名物种。 Speleothems代表了一个独特的岩石栖息地,其真菌菌群在很大程度上尚未被开发。在斯德哥尔摩的Kungsträdgården地铁站,从覆盖裸露的花岗岩墙壁的speleothem生物膜中分离出真菌,从而产生了两种不同的黑色酵母形态型的无菌培养物。对来自六个核基因座,ITS,nuc18S和nuc28S rDNA,rpb1,rpb2和β-微管蛋白的DNA序列进行系统进化分析,支持将其放置在甲壳纲(Ascomycota)中。它们被描述为具有新种B. lobatum和新种Bradymyces graniticola的芽孢杆菌属。芽孢杆菌与已知的五个衣藻科家族有很远的关系,并且在衣藻科中是独特的,其形态学表现出菌丝状,分生性和酵母样的体外生长。芽孢杆菌的最近亲属是在真菌中吸取的,该真菌是由无树状非阿替替丁蚂蚁产生的类似纸板的建筑材料制成的。他们的姐妹关系在最大似然分析中得到了较弱的支持,但在贝叶斯推断中得到了有力的支持。布雷迪菌属(Bradymyces)被置于赤眼藻科的成员之中,在生态学上是不确定的。它包括机会动物病原体,而另外两个物种则居住在岩石表面。为了研究它们的种内变异性,对Bradymyces和其他未描述物种及环境样品中接受的3种物种的ITS rDNA序列进行了系统发育分析和深入比较分析,以对其ITS1和ITS2二级结构进行研究。 ITS2二级结构中的补偿性碱基变化标准支持缓殖菌中物种的定界,这表明有限数量的可用于物种识别的表型特征。讨论了真菌在脾生物膜中的作用以及芽孢杆菌和缓殖杆菌与甲壳动物的其他成员之间的关系。

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