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首页> 外文期刊>The New Phytologist >Internal transcribed spacer primers and sequences for improved characterization of basidiomycetous orchid mycorrhizas.
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Internal transcribed spacer primers and sequences for improved characterization of basidiomycetous orchid mycorrhizas.

机译:内部转录间隔子引物和序列,用于改进担子菌兰菌根的鉴定。

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摘要

* Despite advances owing to molecular approaches, several hurdles still obstruct the identification of fungi forming orchid mycorrhizas. The Tulasnellaceae exhibit accelerated evolution of the nuclear ribosomal operon, causing most standard primers to fail in polymerase chain reaction (PCR) trials. Insufficient sequences are available from well characterized isolates and fruitbodies. Lastly, taxon-specific PCR primers are needed in order to explore the ecology of the fungi outside of the orchid root. Here, progress in overcoming these hurdles is reported. * Broad-spectrum basidiomycete internal transcribed spacer (ITS) primers that do not exclude most known Tulasnellaceae are presented. blast searches and empirical PCR tests support their wide utility within the Basidiomycota. * Taxon-specific ITS primers are presented targeted to orchid-associated Tulasnella, and a core component of the Thelephora-Tomentella complex. The efficiency and selectivity of these primer sets are again supported by blast searches and empirical tests. * Lastly, ITS DNA sequences are presented from several strains of Epulorhiza, Ceratorhiza, Ceratobasidium, Sistotrema, Thanatephorus and Tulasnella that were originally described in the landmark mycorrhizal studies of Currah and Warcup. Detailed phylogenetic analyses reveal some inconsistencies in species concepts in these taxonomically challenging resupinate basidiomycetes, but also help to place several sequences from environmental samples.
机译:*尽管由于分子方法的发展,仍存在一些障碍,阻碍了形成兰花菌根真菌的鉴定。龟形科显示出核糖核操纵子的加速进化,导致大多数标准引物在聚合酶链反应(PCR)试验中失败。从特征充分的分离株和子实体中可获得的序列不足。最后,需要分类群特异性PCR引物以探索兰花根外真菌的生态学。在这里,报告了克服这些障碍的进展。 *提出了广谱的担子菌内部转录间隔区(ITS)引物,该引物不排除大多数已知的伞形科。爆炸搜索和经验PCR测试支持它们在担子菌属中的广泛应用。 *分类群特异性ITS引物针对与兰花相关的Tulasnella和Thelephora-Tomentella复合体的核心成分。爆炸搜索和经验测试再次支持了这些引物组的效率和选择性。 *最后,ITS DNA序列来自于几种在Eurulhiza,Ceratorhiza,Ceratobasidium,Sistotrema,Thanatephorus和Tulasnella中产生的菌株,这些菌株最初在Currah和Warcup的标志性菌根研究中得到描述。详细的系统发育分析揭示了这些分类学上具有挑战性的重生的担子菌类在物种概念上的某些不一致之处,但也有助于从环境样品中放置多个序列。

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