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对枯木原生生物多样性的初步洞察:对腐烂山毛榉原木中亮孢子黏菌(变形虫门,黏菌)的分子采样

First insight into dead wood protistan diversity: a molecular sampling of bright-spored Myxomycetes (Amoebozoa, slime-moulds) in decaying beech logs.

作者信息

Clissmann Fionn, Fiore-Donno Anna Maria, Hoppe Björn, Krüger Dirk, Kahl Tiemo, Unterseher Martin, Schnittler Martin

机构信息

Zoology Institute, Terrestrial Ecology Group, University of Cologne, D-50674 Cologne, Germany

Zoology Institute, Terrestrial Ecology Group, University of Cologne, D-50674 Cologne, Germany.

出版信息

FEMS Microbiol Ecol. 2015 Jun;91(6). doi: 10.1093/femsec/fiv050. Epub 2015 May 7.

Abstract

Decaying wood hosts a large diversity of seldom investigated protists. Environmental sequencing offers novel insights into communities, but has rarely been applied to saproxylic protists. We investigated the diversity of bright-spored wood-inhabiting Myxomycetes by environmental sequencing. Myxomycetes have a complex life cycle culminating in the formation of mainly macroscopic fruiting bodies, highly variable in shape and colour that are often found on decaying logs. Our hypothesis was that diversity of bright-spored Myxomycetes would increase with decay. DNA was extracted from wood chips collected from 17 beech logs of varying decay stages from the Hainich-Dün region in Central Germany. We obtained 260 partial small subunit ribosomal RNA gene sequences of bright-spored Myxomycetes that were assembled into 29 OTUs, of which 65% were less than 98% similar to those in the existing database. The OTU richness revealed by molecular analysis surpassed that of a parallel inventory of fruiting bodies. We tested several environmental variables and identified pH, rather than decay stage, as the main structuring factor of myxomycete distribution.

摘要

腐朽的木材中栖息着种类繁多但很少被研究的原生生物。环境测序为群落提供了新的见解,但很少应用于木栖原生生物。我们通过环境测序研究了亮孢子木生黏菌的多样性。黏菌有一个复杂的生命周期,最终形成主要是宏观的子实体,其形状和颜色高度可变,常在腐朽的原木上发现。我们的假设是亮孢子黏菌的多样性会随着腐朽程度的增加而增加。从德国中部海尼希-迪恩地区17根处于不同腐朽阶段的山毛榉原木上采集的木屑中提取DNA。我们获得了260条亮孢子黏菌的部分小亚基核糖体RNA基因序列,这些序列被组装成29个操作分类单元(OTU),其中65%与现有数据库中的序列相似度低于98%。分子分析揭示的OTU丰富度超过了对子实体的平行清查。我们测试了几个环境变量,并确定pH值而非腐朽阶段是黏菌分布的主要结构因素。

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