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Multiple Distinct Intercontinental Lineages but Isolation of Australian Populations in a Cosmopolitan Lichen-Forming Fungal Taxon Psora decipiens (Psoraceae Ascomycota)

机译:多个不同的洲际谱系但在一个国际化的地衣形成真菌分类单元中(Psora decipiens)(PsoraceaeAscomycota)隔离了澳大利亚种群

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摘要

Multiple drivers shape the spatial distribution of species, including dispersal capacity, niche incumbency, climate variability, orographic barriers, and plate tectonics. However, biogeographic patterns of fungi commonly do not fit conventional expectations based on studies of animals and plants. Fungi, in general, are known to occur across exceedingly broad, intercontinental distributions, including some important components of biological soil crust communities (BSCs). However, molecular data often reveal unexpected biogeographic patterns in lichenized fungal species that are assumed to have cosmopolitan distributions. The lichen-forming fungal species Psora decipiens is found on all continents, except Antarctica and occurs in BSCs across diverse habitats, ranging from hot, arid deserts to alpine habitats. In order to better understand factors that shape population structure in cosmopolitan lichen-forming fungal species, we investigated biogeographic patterns in the cosmopolitan taxon P. decipiens, along with the closely related taxa P. crenata and P. saviczii. We generated a multi-locus sequence dataset based on a worldwide sampling of these taxa in order to reconstruct evolutionary relationships and explore phylogeographic patterns. Both P. crenata and P. decipiens were not recovered as monophyletic; and P. saviczii specimens were recovered as a monophyletic clade closely related to a number of lineages comprised of specimens representing P. decipiens. Striking phylogeographic patterns were observed for P. crenata, with populations from distinct geographic regions belonging to well-separated, monophyletic lineages. South African populations of P. crenata were further divided into well-supported sub-clades. While well-supported phylogenetic substructure was also observed for the nominal taxon P. decipiens, nearly all lineages were comprised of specimens collected from intercontinental populations. However, all Australian specimens representing P. decipiens were recovered within a single well-supported monophyletic clade consisting solely of Australian samples. Our study supports up to 10 candidate species-level lineages in P. decipiens, based on genealogical concordance and coalescent-based species delimitation analyses. Our results support the general pattern of the biogeographic isolation of lichen-forming fungal populations in Australia, even in cases where closely related congeners have documented intercontinental distributions. Our study has important implications for understanding factors influencing diversification and distributions of lichens associated with BSC.
机译:多种驱动因素决定着物种的空间分布,包括扩散能力,生态位占有率,气候变异性,地形障碍和板块构造。但是,根据动物和植物的研究,真菌的生物地理格局通常不符合传统的期望。一般而言,真菌分布于整个洲际分布中,包括生物土壤地壳群落(BSC)的一些重要组成部分。但是,分子数据通常揭示了假设具有国际化分布的地衣真菌物种中意想不到的生物地理模式。在南极洲以外的所有大陆上都可以发现形成地衣的真菌物种,即Psora decipiens,它分布在BSC中,分布在从炎热,干旱沙漠到高山生境的各种生境中。为了更好地了解影响大都会地衣形成真菌物种中种群结构的因素,我们调查了大都会类群P. decipiens以及密切相关的类群P. crenata和P. saviczii的生物地理格局。我们基于这些分类单元的全球采样生成了一个多位点序列数据集,以重建进化关系并探索系统地理学模式。 Crenata和P. decipiens都没有被发现是单系的。 P. saviczii和P. saviczii标本是作为单系进化枝回收的,与许多谱系密切相关,这些谱系包含代表P. decipiens的标本。斑纹假单胞菌观察到惊人的系统地理学模式,来自不同地理区域的种群属于分离良好的单系谱系。南非的C. crenata种群进一步分为支撑良好的亚进化枝。虽然在名义分类群中也观察到了支持良好的系统发育亚结构,但几乎所有谱系都是从洲际种群中收集的标本组成的。但是,所有代表P. decipiens的澳大利亚标本都在仅由澳大利亚样品组成的单个支撑良好的单一系统进化枝中被回收。根据家谱一致性和基于聚结的物种定界分析,我们的研究支持拟南芥中多达10个候选物种级谱系。我们的研究结果支持了澳大利亚地衣形成真菌种群生物地理隔离的一般模式,即使在密切相关的同类物种已记录了洲际分布的情况下也是如此。我们的研究对于理解影响与BSC相关的地衣的多样化和分布的因素具有重要意义。

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