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将其物种转移到粘体门的其他属中来否定 Hyperamoeba。

Invalidation of Hyperamoeba by transferring its species to other genera of Myxogastria.

机构信息

Zoology Department, University of Oxford, South Parks Road, OX13PS Oxford, United Kingdom.

出版信息

J Eukaryot Microbiol. 2010 Mar-Apr;57(2):189-96. doi: 10.1111/j.1550-7408.2009.00466.x. Epub 2010 Jan 22.

DOI:10.1111/j.1550-7408.2009.00466.x
PMID:20113379
Abstract

The genus Hyperamoeba Alexeieff, 1923 was established to accommodate an aerobic amoeba exhibiting three life stages-amoeba, flagellate, and cyst. As more species/strains were isolated, it became increasingly evident from small subunit (SSU) gene phylogenies and ultrastructure that Hyperamoeba is polyphyletic and its species occupy different positions within the class Myxogastria. To pinpoint Hyperamoeba strains within other myxogastrid genera we aligned numerous myxogastrid sequences: whole small subunit ribosomal (SSU or 18S rRNA) gene for 50 dark-spored (i.e. Stemonitida and Physarida) Myxogastria (including a new "Hyperamoeba"/Didymium sequence) and a approximately 400-bp SSU fragment for 147 isolates assigned to 10 genera of the order Physarida. Phylogenetic analyses show unambiguously that the type species Hyperamoeba flagellata is a Physarum (Physarum flagellatum comb. nov.) as it nests among other Physarum species as robust sister to Physarum didermoides. Our trees also allow the following allocations: five Hyperamoeba strains to the genus Stemonitis; Hyperamoeba dachnaya, Pseudodidymium cryptomastigophorum, and three other Hyperamoeba strains to the genus Didymium; and two further Hyperamoeba strains to the family Physaridae. We therefore abandon the polyphyletic and redundant genus Hyperamoeba. We discuss the implications for the ecology and evolution of Myxogastria, whose amoeboflagellates are more widespread than previous inventories supposed, being now found in freshwater and even marine environments.

摘要

嗜热变形菌属 Alexeieff, 1923 是为了容纳一种需氧变形虫而建立的,该变形虫具有三个生命阶段——变形虫、鞭毛虫和胞囊。随着更多物种/品系被分离出来,从小亚基 (SSU) 基因系统发育和超微结构来看,变形菌属是多系的,其物种在粘菌类中占据不同的位置。为了确定变形菌属内的其他粘菌类属内的变形菌属菌株,我们对齐了许多粘菌类序列:50 个暗孢子(即 Stemonitida 和 Physarida)粘菌类的全小亚基核糖体(SSU 或 18S rRNA)基因(包括一个新的“变形菌属/双滴虫属”序列)和大约 400-bp 的 SSU 片段用于 147 个分离株,这些分离株被分配到 Physarida 目中的 10 个属。系统发育分析明确表明,模式种变形菌属鞭毛虫是 Physarum(Physarum flagellatum comb. nov.),因为它与其他 Physarum 物种一起嵌套,是 Physarum didermoides 的强大姊妹群。我们的树还允许以下分配:五个变形菌属菌株归入 Stemonitis 属;变形菌属 dachnaya、Pseudodidymium cryptomastigophorum 和另外三个变形菌属菌株归入双滴虫属;另外两个变形菌属菌株归入 Physaridae 科。因此,我们放弃了多系和冗余的变形菌属。我们讨论了粘菌类的生态学和进化的影响,其变形虫比以前的清单所假设的更为广泛,现在在淡水甚至海洋环境中都有发现。

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