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Hypothesized evolutionary trends in zoospore ultrastructural characters in Chytridiales (Chytridiomycota)

机译:假单胞菌的游动孢子超微结构特征的假想进化趋势

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Chytridiales is an order of zoosporic fungi currently comprising species representing 19 genera. Although morphologically and genetically diverse, these taxa have in common a zoospore with a suite of ultrastructural characters unique among Chytridiomycota. However, multiple states have been reported for almost every character that defines the Chytridiales zoospore. Two zoospore types have been recognized, each corresponding to a family. Here we examine zoospore ultrastructure of 52 isolates in Chytridiales and assess states for six characters to hypothesize evolutionary trends, using parsimony ancestral state reconstruction for evolutionary analysis. Based on suites of character states, we describe four additional zoospore types in Chytridiales. Five of the six characters ([i] location of the nucleus, [ii] morphology of the kinetosome-associated structure, [iii] complexity of the microtubular root, [iv] microbody-lipid globule complex cisterna structure and [v] thickness of the flagellar plug) revealed ancestral and derived states. The sixth character, structure of the paracrystalline inclusion, did not resolve ancestral and derived states. In each of the lineages within Chytridiales, the evolutionary trend appears to have been from a more complex zoospore to a less complex zoospore with reduced features. As we isolate and analyze additional taxa, we discover new ultrastructural character states that assist in taxon delineation and phylogenetic interpretation.
机译:y虫是一种游动真菌,目前包括代表19个属的物种。尽管这些类群在形态和遗传上各不相同,但它们共有一个游动孢子,具有一整套在梭菌属中独特的超微结构特征。但是,几乎每个定义character蛇游动孢子的字符都有多种状态的报道。已经认识到两种游动孢子类型,每种类型对应一个家庭。在这里,我们检查Ch虫的52个分离物的游动孢子超微结构,并使用简约祖先状态重建进行进化分析,评估6个字符的状态以推测进化趋势。基于字符状态套件,我们描述了葫芦科动物中的四种其他游动孢子类型。六个字符中的五个([i]原子核的位置,[ii]与动体相关的结构的形态,[iii]微管根的复杂性,[iv]微体-脂质小球复杂的水箱结构和[v]的厚度)鞭毛塞揭示了祖先和派生的状态。第六个特征是顺晶包裹体的结构,不能解析祖先和派生状态。在Ch虫内的每个谱系中,进化趋势似乎都是从一个复杂的游动孢子到一个功能降低的,不太复杂的游动孢子。当我们隔离和分析其他分类单元时,我们发现了有助于分类单元描述和系统发育解释的新的超微结构特征状态。

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