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Cytology and molecular phylogenetics of Monoblepharidomycetes provide evidence for multiple independent origins of the hyphal habit in the Fungi

机译:单卵菌的细胞学和分子系统发育学为真菌菌丝习性的多个独立起源提供了证据

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摘要

The evolution of filamentous hyphae underlies an astounding diversity of fungal form and function. We studied the cellular structure and evolutionary origins of the filamentous form in the Monoblepharidomycetes (Chytridiomycota), an early-diverging fungal lineage that displays an exceptional range of body types, from crescent-shaped single cells to sprawling hyphae. To do so, we combined light and transmission electron microscopic analyses of hyphal cytoplasm with molecular phylogenetic reconstructions. Hyphae of Monoblepharidomycetes lack a complex aggregation of secretory vesicles at the hyphal apex (i.e. Spitzenkorper), have centrosomes as primary microtubule organizing centers and have stacked Golgi cisternae instead of tubular/fenestrated Golgi equivalents. The cytoplasmic distribution of actin in Monoblepharidomycetes is comparable to the arrangement observed previously in other filamentous fungi. To discern the origins of Monoblepharidomycetes hyphae, we inferred a phylogeny of the fungi based on 18S and 28S ribosomal DNA sequence data with maximum likelihood and Bayesian inference methods. We focused sampling on Monoblepharidomycetes to infer intergeneric relationships within the class and determined 78 new sequences. Analyses showed class Monoblepharidomycetes to be monophyletic and nested within Chytridiomycota. Hyphal Monoblepharidomycetes formed a clade sister to the genera without hyphae, Harpochytrium and Oedogoniomyces. A likelihood ancestral state reconstruction indicated that hyphae arose independently within the Monoblepharidomycetes lineage and in at least two other lineages. Cytological differences among monoblepharidalean and other fungal hyphae are consistent with these convergent origins.
机译:丝状菌丝的进化是真菌形式和功能惊人的多样性的基础。我们研究了单鞭毛线虫(Chytridiomycota)中一种丝状形式的细胞结构和进化起源,这种菌是一种早期散布的真菌谱系,显示出异常的体型,从新月形的单细胞到蔓生的菌丝。为此,我们将菌丝的胞质的光和透射电子显微镜分析与分子系统发育重建相结合。单珠菌菌丝的菌丝在菌丝先端(即Spitzenkorper)缺乏分泌囊泡的复杂聚集,具有中心体作为主要的微管组织中心,并且堆积了高尔基池,而不是管状/有孔的高尔基体。肌动蛋白在单珠菌属中的细胞质分布与以前在其他丝状真菌中观察到的排列相当。为了辨别单斜纹菌丝菌丝的起源,我们基于18S和28S核糖体DNA序列数据(最大似然法)和贝叶斯推断方法,推断了真菌的系统发育。我们集中于单珠菌属的采样以推断该类内的类属关系,并确定了78个新序列。分析表明,类单鞭毛菌是单系的,并嵌套在梭菌中。菌丝单珠菌属形成了一个菌丝姐妹姐妹,而没有菌丝,鱼鳞茎线虫和放线菌。祖先状态重建的可能性表明,菌丝在单珠菌属谱系中以及至少在另外两个谱系中独立出现。单菌头和其他真菌菌丝之间的细胞学差异与这些趋同起源一致。

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