Alvarado Pablo, Healy Rosanne, Moreno Gabriel, Cabero Julio, Scholler Markus, Schneider Anja, Vizzini Alfredo, Kaounas Vasileios, Vidal Josep Maria, Hensel Gunnar, Rubio Enrique, Mujic Alija, Smith Matthew E
a ALVALAB , La Rochela 47, E-39012 Santander , Spain.
b Department of Plant Pathology , University of Florida , Gainesville , Florida 32611.
Mycologia. 2018 Mar-Apr;110(2):401-418. doi: 10.1080/00275514.2018.1451140. Epub 2018 May 24.
A multigene phylogenetic analysis of Genabea, Myrmecocystis, and related genera in Pyronemataceae was conducted to establish genetically supported generic limits. The nuc rDNA 28S gene, translation elongation factor 1-α gene (TEF1), and RNA polymerase II second-largest subunit gene (RPB2) significantly supported the monophyly of several distinct genera of hypogeous Pyronemataceae. The genetic identity of Genabea fragilis is established, and the new species Genabea hyalospora, G. urbana, Myrmecocystis mediterranea, and M. microspora are proposed to accommodate undescribed lineages. Two rare species, M. sphaerospora and M. spinospora, are tentatively identified based on collections that are morphologically similar to the original descriptions. The genus Genea was found to be monophyletic, except for G. cazaresii, which is nested among epigeous species of Humaria. The new combination Humaria cazaresii is proposed to accommodate this species.
对火丝菌科中的Genabea、蚁巢伞属及相关属进行了多基因系统发育分析,以确定有遗传学依据的属的界限。核糖体DNA 28S基因、翻译延伸因子1-α基因(TEF1)和RNA聚合酶II第二大亚基基因(RPB2)有力地支持了地下火丝菌科几个不同属的单系性。确定了脆弱Genabea的遗传特征,并提出了新物种透明Genabea、城市Genabea、地中海蚁巢伞和小孢蚁巢伞,以容纳未描述的谱系。根据形态与原始描述相似的标本,初步鉴定了两个稀有物种,即球孢蚁巢伞和刺孢蚁巢伞。发现除了嵌套在地上的Humaria属物种中的卡扎雷斯Genea外,Genea属是单系的。提出了新组合卡扎雷斯Humaria以容纳该物种。