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首页> 外文期刊>Environmental microbiology >Differences in soil micro-eukaryotic communities over soil pH gradients are strongly driven by parasites and saprotrophs
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Differences in soil micro-eukaryotic communities over soil pH gradients are strongly driven by parasites and saprotrophs

机译:在土壤pH梯度范围内,土壤微真核生物群落的差异受寄生虫和腐生菌的强烈驱动

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A recent large-scale assessment of bacterial communities across a range of UK soil types showed that bacterial community structure was strongly determined by soil pH. We analysed a data set of eukaryotic 454 sequencing 18S rDNA from the surveyed samples and showed significant differences in eukaryotic assemblages according to pH class, mostly between low pH and higher pH soils. Soil eukaryote communities (per sample) differed most at the taxonomic rank approximating to order level. Taxonomies assigned with the PROTIST RIBOSOMAL REFERENCE and the SILVA 119 databases were taxonomically inconsistent, mostly due to differing 18S annotations, although general structure and composition according to pH were coherent. A relatively small number of lineages, mostly putative parasitic protists and fungi, drive most differences between pH classes, with weaker contributions from bacterivores and autotrophs. Overall, soil parasites included a large diversity of alveolates, in particular apicomplexans. Phylogenetic analysis of alveolate lineages demonstrates a large diversity of unknown gregarines, novel perkinsids, coccidians, colpodellids and uncharacterized alveolates. Other novel and/or divergent lineages were revealed across the eukaryote tree of life. Our study provides an in-depth taxonomic evaluation of micro-eukaryotic diversity, and reveals novel lineages and insights into their relationships with environmental variables across soil gradients.
机译:最近对英国各种土壤类型中细菌群落的大规模评估表明,细菌群落结构强烈取决于土壤的pH值。我们分析了来自调查样本的真核454测序18S rDNA的数据集,并显示了根据pH等级的真核组合物的显着差异,主要是在低pH和较高pH的土壤之间。土壤真核生物群落(每个样品)在分类等级上最接近阶次水平。尽管根据pH值的总体结构和组成是一致的,但分配给PROTIST RIBOSOMAL REFERENCE和SILVA 119数据库的分类法在分类学上不一致,这主要是由于18S注释不同。相对较少的血统,主要是推定的寄生生物和真菌,导致pH值类别之间的差异最大,而噬菌体和自养生物的贡献较弱。总体而言,土壤寄生虫包括大量的肺泡,尤其是apicomplexans。肺泡谱系的系统发育分析表明,未知的人造黄油,新颖的perkinsids,球虫,colpodellids和未鉴定的肺泡蛋白种类繁多。整个真核生物树揭示了其他新颖和/或分歧的血统。我们的研究提供了对微真核生物多样性的深入分类学评估,并揭示了新的谱系以及对它们与土壤梯度中环境变量之间关系的了解。

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