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Plastid super-barcodes as a tool for species discrimination in feather grasses (Poaceae: Stipa)

机译:塑料质超级条形码作为羽毛草中物种鉴别的工具(禾本科:针茅)

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摘要

Present study was designed to verify which or if any of plastome loci is a hotspot region for mutations and hence might be useful for molecular species identification in feather grasses. 21 newly sequenced complete plastid genomes representing 19 taxa from the genus of Stipa were analyzed in search of the most variable and the most discriminative loci within Stipa. The results showed that the problem with selecting a good barcode locus for feather grasses lies in the very low level of genetic diversity within its plastome. None of the single chloroplast loci is polymorphic enough to play a role of a barcode or a phylogenetic marker for Stipa. The biggest number of taxa was successfully identified by the analysis of 600 bp long DNA fragment comprising a part of rbcL gene, the complete rbcL-rpl23 spacer and a part of rpl23 gene. The effectiveness of multi-locus barcode composed of six best-performing loci for Stipa (ndhH, rpl23, ndhF-rpl32, rpl32-ccsA, psbK-psbI and petA-psbJ) didn’t reach 70% of analyzed taxa. The analysis of complete plastome sequences as a super-barcode for Stipa although much more effective, still didn’t allow for discrimination of all the analyzed taxa of feather grasses.
机译:本研究旨在验证哪个或是否有质体基因座是突变的热点区域,因此可能对羽毛草中的分子种类鉴定有用。分析了21个新的完整质体基因组,它们代表了Stipa属的19个分类单元,以寻找Stipa中变化最大和最具区别性的基因座。结果表明,为羽毛草选择良好的条形码基因座的问题在于其质体组内的遗传多样性水平非常低。没有一个叶绿体位点具有足够的多态性,可以充当条码或针叶树的系统发育标记。通过分析600 bp长的DNA片段(包括一部分rbcL基因,完整的rbcL-rpl23间隔子和一部分rpl23基因),成功鉴定出最大数量的分类单元。由六个表现最好的Stipa位点(ndhH,rpl23,ndhF-rpl32,rpl32-ccsA,psbK-psbI和petA-psbJ)组成的多位点条形码的有效性未达到所分析分类单元的70%。完整的塑性组序列分析作为Stipa的超级条形码,虽然效率更高,但仍不能区分所有已分析的羽毛草类群。

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