Department of Plant Biology and Pathology, 201 Foran Hall, 59 Dudley Road, and Department of Biochemistry and Microbiology, 76 Lipman Drive, Rutgers University, New Brunswick, New Jersey 08901.
Department of Plant Biology and Pathology, 201 Foran Hall, 59 Dudley Road, and Department of Biochemistry and Microbiology, 76 Lipman Drive, Rutgers University, New Brunswick, New Jersey 08901
Mycologia. 2014 Jul-Aug;106(4):856-64. doi: 10.3852/13-377. Epub 2014 Jun 2.
A new genus, Acidomelania, is described based on molecular phylogenetic analyses and ecological and morphological characters. Isolated from switchgrass roots in acidic and oligotrophic New Jersey pine barrens in this study, Acidomelania likely has a global distribution because its internal transcribed spacer (ITS) sequence has high similarity with a number of GenBank sequences resulted from various ecological studies. Apparently these samples all were from roots of plants that lived in acidic, nutrient-poor environments. Phylogenetic analyses based on ITS, LSU and ACT sequence data strongly supported the fact that Acidomelania isolates formed a monophyletic clade in Helotiales, distinct from any known taxa. Phylogenetically Acidomelania is closely related to Loramyces, Mollisia and Phialocephala fortinii, Acephala applanata species complex (PAC), the dark septate endophytes. Acidomelania also can be distinguished from Loramyces and Mollisia by its association with living grass roots. While taxa in PAC also are root endophytes, they have more complex phialid arrangement than Acidomelania. Results from this work will facilitate ecological and evolutionary studies on root-associated fungi.
本研究从新泽西州贫瘠的酸地松林中的柳枝稷根部分离得到一个新的属,即 Acidomelania,这是基于分子系统发育分析以及生态和形态特征得出的。该菌可能具有全球分布,因为其内部转录间隔区(ITS)序列与许多 GenBank 序列高度相似,这些序列均来自于各种生态研究。显然,这些样本均来自于生活在酸性、贫营养环境中的植物根部。基于 ITS、 LSU 和 ACT 序列数据的系统发育分析强烈支持了这一事实,即 Acidomelania 分离株在 Helotiales 中形成了一个单系分支,与任何已知分类群明显不同。从系统发育上看,Acidomelania 与 Loramyces、Mollisia 和 Phialocephala fortinii、Acephala applanata 种复合体(PAC)、暗隔内生真菌密切相关。Acidomelania 还可以通过与活草根的关联与 Loramyces 和 Mollisia 区分开来。虽然 PAC 中的分类群也是根内生真菌,但它们的产孢结构排列比 Acidomelania 更为复杂。本研究结果将有助于对根相关真菌的生态和进化研究。