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Short-spored Subulicystidium (Trechisporales Basidiomycota): high morphological diversity and only partly clear species boundaries

机译:短孢子囊藻(TrechisporalesBasidiomycota):形态多样性高物种边界仅部分清晰

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摘要

Diversity of corticioid fungi (resupinate Basidiomycota), especially outside the northern temperate climatic zone, remains poorly explored. Furthermore, most of the known species are delimited by morphological concepts only and, not rarely, these concepts are too broad and need to be tested by molecular tools. For many decades, the delimitation of species in the genus Subulicystidium (Hydnodontaceae, Trechisporales) was a challenge for mycologists. The presence of numerous transitional forms as to basidiospore size and shape hindered species delimitation and almost no data on molecular diversity have been available. In this study, an extensive set of 144 Subulicystidium specimens from Paleo- and Neotropics was examined. Forty-nine sequences of ITS nuclear ribosomal DNA region and 51 sequences of 28S nuclear ribosomal DNA region from fruit bodies of Subulicystidium were obtained and analysed within the barcoding gap framework and with phylogenetic Bayesian and Maximum likelihood approaches. Eleven new species of Subulicystidium are described based on morphology and molecular analyses: Subulicystidium boidinii, S. fusisporum, S. grandisporum, S. harpagum, S. inornatum, S. oberwinkleri, S. parvisporum, S. rarocrystallinum, S. robustius, S. ryvardenii and S. tedersooi. Morphological and DNA-evidenced borders were revised for the five previously known species: S. naviculatum, S. nikau, S. obtusisporum, S. brachysporum and S. meridense. Species-level variation in basidiospore size and shape was estimated based on systematic measurements of 2840 spores from 67 sequenced specimens. An updated identification key to all known species of Subulicystidium is provided.
机译:皮质类真菌(复生的担子菌)的多样性,尤其是在北部温带气候带以外的物种,仍然缺乏探索。此外,大多数已知物种仅由形态学概念界定,而且并非罕见,这些概念过于广泛,需要通过分子工具进行测试。几十年来,对壳藻类属(Hydnodontaceae,Trechisporales)中物种的划界一直是真菌学家面临的挑战。关于担子孢子大小和形状的许多过渡形式的存在阻碍了物种的界线,并且几乎没有关于分子多样性的数据。在这项研究中,检查了一组来自古热带和新热带的144个鲤鱼亚目标本。在条形码间隙框架内,采用系统进化贝叶斯和最大似然方法,获得了来自Subulicystidium子实体的ITS核糖核糖体DNA区的49个序列和28S核糖体DNA区的51个序列。根据形态学和分子分析,描述了11种新的 Subulicystidium Subulicystidium boidinii S。 fusisporum S。 grandisporum < em class =“ genus”> S。 harpagum S。 inornatum S。 oberwinkleri S。 parvisporum rarocrystallinum S。 robustius S。 ryvardenii S。 tedersooi 。对先前已知的五个物种的形态和DNA证据边界进行了修订: S。 naviculatum S。 nikau S。 obtusisporum S。 brachysporum < / em>和 S。 子午线 。基于系统地测量了67个测序标本中2840个孢子,估算了孢子大小和形状的物种水平变化。提供了对所有 Subulicystidium 的已知物种的更新识别密钥。

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