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True morels (Morchella, Pezizales) of Europe and North America: evolutionary relationships inferred from multilocus data and a unified taxonomy

机译:欧洲和北美的真羊肚菌(莫奇拉,佩济萨莱斯):从多基因座数据和统一分类法推断出进化关系

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Applying early names, with or without original material, to genealogical species is challenging. For morels this task is especially difficult because of high morphological stasis and high plasticity of apothecium color and shape. Here we propose a nomenclatural revision of true morels (Morchella, Pezizales) from Europe and North America, based on molecular phylogenetic analyses of portions of the genes for RNA polymerase II largest subunit (RPB1) and second largest subunit (RPB2), translation elongation factor-1 alpha (TEF1), the nuc rDNA region encompassing the internal transcribed spacers 1 and 2, along with the 5.8S rDNA (ITS), and partial nuc 28S rDNA D1-D2 domains (28S). The 107 newly sequenced collections were from both continents, including 48 types, together with previously published sequences. Names are applied to 30 of the 65 currently recognized genealogical species. Results of the present study revealed that the number of Morchella species in Europe (n = 21) is nearly identical to that in North America (n = 22). Only seven species were found on both continents, consistent with previous reports of high continental endemism within the genus. Presently it is not possible to tell whether the transoceanic disjunctions were due to human activities, migration across a Bering land bridge or long-distance dispersal. In an effort to stabilize the taxonomy, due in part to the recent publication of synonyms for 11 of the species, accepted names are presented together with their corresponding later synonyms. A new subclade that includes holotypes of M. castanea and M. brunneorosea is identified in sect. Morchella (Esculenta Clade). Lectotypes for Morchella deliciosa, M. eximia and M. tridentina are designated here, as well as epitypes for M. dunalii, M. eximia, M. purpurascens and M. vulgaris. Morchella conica was determined to be illegitimate, and further research is required to determine the identity of M. elata and M. inamoena.
机译:将早期名称(无论是否包含原始材料)应用于家谱物种都具有挑战性。对于羊肚菌来说,由于种质的高形态停滞和种质的高可塑性,这一任务尤其困难。在这里,我们根据对RNA聚合酶II最大亚基(RPB1)和第二大亚基(RPB2)的基因部分进行分子系统发育分析,提出了来自欧洲和北美的真羊肚菌(莫谢拉,佩兹扎莱斯)的命名法修订,翻译延伸因子-1 alpha(TEF1),包括内部转录间隔区1和2的nuc rDNA区域,以及5.8S rDNA(ITS)和部分nuc 28S rDNA D1-D2结构域(28S)。来自两个大陆的107个新排序的集合,包括48种类型,以及以前发布的序列。名称适用于目前公认的65种家谱中的30种。本研究结果表明,欧洲的羊肚菌属物种数量(n = 21)与北美的数量几乎相同(n = 22)。在这两个大陆上仅发现了7个物种,这与先前有关该属内大陆特有种的报道相一致。目前尚无法确定越洋分离是由于人类活动,穿越白令陆桥的迁徙还是远距离扩散所致。为了稳定分类法,部分是由于最近发布了11个物种的同义词,因此将接受的名称及其相应的后来的同义词进行了介绍。在该教派中发现了一个新的子小节,其中包括Castanea和M. brunneorosea的全型。羊肚菌(Esculenta进化枝)。在此指定了羊肚菌,埃克森姆氏菌和三齿念珠菌的基因型,以及杜氏莫里氏菌,埃森姆氏菌,紫癜和寻常型穆氏菌的表型。羊肚菌被确定为非法的,需要进一步的研究来确定M. elata和M. inamoena的身份。

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