...
首页> 外文期刊>FEMS Microbiology Ecology >Determining threshold values for barcoding fungi: lessons from Cortinarius (Basidiomycota), a highly diverse and widespread ectomycorrhizal genus
【24h】

Determining threshold values for barcoding fungi: lessons from Cortinarius (Basidiomycota), a highly diverse and widespread ectomycorrhizal genus

机译:测定条形码真菌的阈值:Cortinarius(盆西霉菌)的课程,一种高度多样化和广泛的颈肠病

获取原文
获取原文并翻译 | 示例
           

摘要

Different distance-based threshold selection approaches were used to assess and compare use of the internal transcribed spacer (ITS) region to distinguish among 901 Cortinarius species represented by >3000 collections. Sources of error associated with genetic markers and selection approaches were explored and evaluated using MOTUs from genus and lineage based-alignments. Our study indicates that 1%-2% more species can be distinguished by using the full-length ITS barcode as compared to either the ITS1 or ITS2 regions alone. Optimal threshold values for different picking approaches and genetic marker lengths inferred from a subset of species containing major lineages ranged from 97.0% to 99.5% sequence similarity using clustering optimization and UNITE SH, and from 1% to 2% sequence dissimilarity with CROP. Errors for the optimal cutoff ranged from 0% to 70%, and these can be reduced to a maximum of 22% when excluding species lacking a barcode gap. A threshold value of 99% is suitable for distinguishing species in the majority of lineages in the genus using the entire ITS region but only 90% of the species could be identified using just the ITS1 or ITS2 region. Prior identification of species, lacking barcode gaps and their subsequent separate analyses, maximized the accuracy of threshold approaches.
机译:基于距离的阈值选择方法用于评估和比较内部转录间隔物(其)区域以区分> 3000收集所代表的901种Cortinarius物种。探索与遗传标志物和选择方法相关的误差源,并使用基于Genus和谱系的谱系使用Motus进行评估。我们的研究表明,与单独的ITS1或其2个区域相比,通过使用全长的条形码可以区分1%-2%的物种。不同拣选方法的最佳阈值和从含有主要谱系的含量的子集推断出的遗传标记长度,使用聚类优化和团结的SH,序列相似性为97.0%至99.5%,以及与作物的1%至2%序列相似性。最佳截止值的误差范围为0%至70%,当排除缺少条形码间隙的物种时,这些可能减少到最多22%。阈值99%适用于使用整个区域的大多数谱系中的物种区分,但只有90%的物种可以仅使用其1或其2区域来识别。在鉴定物种鉴定,缺乏条形码间隙及其随后的单独分析,最大限度地提高了阈值方法的准确性。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号