Department of Biology, Genetics, Ludwig-Maximilians University, Grosshaderner Street 4, 82152 Planegg-Martinsried, Germany.
Royal Botanic Garden Edinburgh, 20A Inverleith Row, Edinburgh EH3 5LR, UK.
New Phytol. 2012 Mar;193(4):970-984. doi: 10.1111/j.1469-8137.2011.03962.x. Epub 2011 Dec 9.
Although the molecular phylogeny, evolution and biodiversity of arbuscular mycorrhizal fungi (AMF) are becoming clearer, phylotaxonomically reliable sequence data are still limited. To fill this gap, a data set allowing resolution and environmental tracing across all taxonomic levels is provided. Two overlapping nuclear DNA regions, totalling c. 3 kb, were analysed: the small subunit (SSU) rRNA gene (up to 1800 bp) and a fragment spanning c. 250 bp of the SSU rDNA, the internal transcribed spacer (ITS) region (c. 475-520 bp) and c. 800 bp of the large subunit (LSU) rRNA gene. Both DNA regions together could be analysed for 35 described species, the SSU rDNA for c. 76 named and 18 as yet undefined species, and the ITS region or LSU rDNA, or a combination of both, for c. 91 named and 16 as yet undefined species. Present phylogenetic analyses, based on the three rDNA markers, provide reliable and robust resolution from phylum to species level. Altogether, 109 named species and 27 cultures representing as yet undefined species were analysed. This study provides a reference data set for molecular systematics and environmental community analyses of AMF, including analyses based on deep sequencing.
尽管丛枝菌根真菌 (AMF) 的分子系统发生、进化和生物多样性变得越来越清晰,但在系统发生分类学上可靠的序列数据仍然有限。为了填补这一空白,提供了一个允许在所有分类水平上进行分辨率和环境追踪的数据集。分析了两个重叠的核 DNA 区域,总计约 3 kb:小亚基 (SSU) rRNA 基因(长达 1800 bp)和跨越 SSU rDNA 约 250 bp 的片段,内部转录间隔区 (ITS) 区(约 475-520 bp)和大亚基 (LSU) rRNA 基因约 800 bp。这两个 DNA 区域总共可以对 35 种已描述的物种进行分析,SSU rDNA 可以对大约 76 种已命名和 18 种尚未定义的物种进行分析,而 ITS 区或 LSU rDNA,或两者的组合,可以对大约 91 种已命名和 16 种尚未定义的物种进行分析。基于三个 rDNA 标记的当前系统发育分析提供了从门到种水平的可靠和稳健的分辨率。总共分析了 109 种已命名的物种和 27 种代表尚未定义的物种的培养物。这项研究为 AMF 的分子系统学和环境群落分析提供了一个参考数据集,包括基于深度测序的分析。