高物种丰富度的Peltigera地衣属(子囊菌科,Lecanoromycetes):在多趾龙科的dolichorhizoid和scabrososoid分支中有34种,其中24种是新发现的

N. Magain, J. Miadlikowska, B. Goffinet, T. Goward, C. J. Pardo-de La Hoz, I. Jüriado, A. Simon, J. A. Mercado‐Díaz, T. Barlow, B. Moncada, R. Lücking, A. Spielmann, L. Canêz, L.S. Wang, P. Nelson, T. Wheeler, F. Lutzoni, E. Sérusiaux
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引用次数: 3

摘要

应用分子方法建立与绿藻或蓝藻的地衣关联的真菌已经反复揭示了许多被经典分类学方法所忽视的系统发育分类群的存在。在这里,我们报告了基于多物种划分和验证分析的分类结论,这些分析基于8个位点的数据集,其中包括Peltigera属Polydactylon部分的dolichorhizoid和scabrosoid分支的全球代表。根据共识的物种划分方法和本研究中进行的额外物种验证分析(BPP)得出的建议,我们共提出了25种dolichorhizoid分支和9种scabrosoid分支,其中18种和6种分别是科学上新的和正式描述的。此外,还提出了一个组合和三个变种(包括两个科学上的新品种)。报告了24个新种:阿帕拉achiensis、p.a asiatica、p.a borealis、p.a borinquensis、p.a chabanenkoae、p.a clathrata、p.a elxii、p.a esslingeri、p.a flabellae、p.a gallowayi、p.a hatitiaiae、p.a holtanhartwigii、p.a itatiaiae、p.a hokkaidoensis、p.a kukwae、p.a massonii、p.a mikado、p.a nigriventris、p.a n orientalis、p.a rangiferina、p.a sipmanii、p.a leyensis、p.a vitikainenii和p.a willdenowii;引进了以下新品种:山核桃变种、山核桃变种;并介绍了以下新组合:解剖膜膜假单胞菌。从形态学和化学上描述,说明,并与ITS序列特征的每一个物种从dolichorhizoid和scabrosoid枝。鉴定钥匙提供了主要的生物地理区域,从两个分支的物种发生。通常用于物种识别的形态和化学特征不能用于明确识别大多数分子限定的物种,这是由于真菌物种内个体形成的菌体的高度变异,包括在某些情况下存在明显的形态,或在其他情况下存在低种间变异。四种被普遍认可的形态种:多毛蕨、新多趾蕨、粉状蕨和糙皮蕨在多毛蕨和糙皮蕨枝中代表了分布在多个系统发育上远亲的谱系中的物种复合体。标本的地理来源往往有助于物种识别;然而,通常需要ITS序列来进行可靠的识别。
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High species richness in the lichen genus Peltigera (Ascomycota, Lecanoromycetes): 34 species in the dolichorhizoid and scabrosoid clades of section Polydactylon, including 24 new to science
Applying molecular methods to fungi establishing lichenized associations with green algae or cyanobacteria has repeatedly revealed the existence of numerous phylogenetic taxa overlooked by classical taxonomic approaches. Here, we report taxonomical conclusions based on multiple species delimitation and validation analyses performed on an eight-locus dataset that includes world-wide representatives of the dolichorhizoid and scabrosoid clades in section Polydactylon of the genus Peltigera. Following the recommendations resulting from a consensus species delimitation approach and additional species validation analysis (BPP) performed in this study, we present a total of 25 species in the dolichorhizoid clade and nine in the scabrosoid clade, including respectively 18 and six species that are new to science and formally described. Additionally, one combination and three varieties (including two new to science) are proposed in the dolichorhizoid clade. The following 24 new species are described: P. appalachiensis, P. asiatica, P. borealis, P. borinquensis, P. chabanenkoae, P. clathrata, P. elixii, P. esslingeri, P. flabellae, P. gallowayi, P. hawaiiensis, P. holtanhartwigii, P. itatiaiae, P. hokkaidoensis, P. kukwae, P. massonii, P. mikado, P. nigriventris, P. orientalis, P. rangiferina, P. sipmanii, P. stanleyensis, P. vitikainenii and P. willdenowii; the following new varieties are introduced: P. kukwae var. phyllidiata and P. truculenta var. austroscabrosa; and the following new combination is introduced: P. hymenina var. dissecta. Each species from the dolichorhizoid and scabrosoid clades is morphologically and chemically described, illustrated, and characterised with ITS sequences. Identification keys are provided for the main biogeographic regions where species from the two clades occur. Morphological and chemical characters that are commonly used for species identification in the genus Peltigera cannot be applied to unambiguously recognise most molecularly circumscribed species, due to high variation of thalli formed by individuals within a fungal species, including the presence of distinct morphs in some cases, or low interspecific variation in others. The four commonly recognised morphospecies: P. dolichorhiza, P. neopolydactyla, P. pulverulenta and P. scabrosa in the dolichorhizoid and scabrosoid clades represent species complexes spread across multiple and often phylogenetically distantly related lineages. Geographic origin of specimens is often helpful for species recognition; however, ITS sequences are frequently required for a reliable identification.
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