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Use of DNA barcodes to identify flowering plants

机译:使用DNA条码识别开花植物

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Methods for identifying species by using short orthologous DNA sequences, known as "DNA barcodes," have been proposed and initiated to facilitate biodiversity studies, identify juveniles, associate sexes, and enhance forensic analyses. The cytochrome c oxidase 1 sequence, which has been found to be widely applicable in animal barcoding, is not appropriate for most species of plants because of a much slower rate of cytochrome c oxidase 1 gene evolution in higher plants than in animals. We therefore propose the nuclear internal transcribed spacer region and the plastid trnH-psbA intergenic spacer as potentially usable DNA regions for applying barcoding to flowering plants. The internal transcribed spacer is the most commonly sequenced locus used in plant phylogenetic investigations at the species level and shows high levels of interspecific divergence. The trnH-psbA spacer, although short (≈450-bp), is the most variable plastid region in angiosperms and is easily amplified across a broad range of land plants. Comparison of the total plastid genomes of tobacco and deadly nightshade enhanced with trials on widely divergent angiosperm taxa, including closely related species in seven plant families and a group of species sampled from a local flora encompassing 50 plant families (for a total of 99 species, 80 genera, and 53 families), suggest that the sequences in this pair of loci have the potential to discriminate among the largest number of plant species for bar-coding purposes.
机译:已经提出并启动了通过使用短直系同源DNA序列来鉴定物种的方法,称为“ DNA条码”,以促进生物多样性研究,鉴定未成年,同性和增强法医分析。已发现可广泛用于动物条形码的细胞色素c氧化酶1序列不适用于大多数植物,因为高等植物中细胞色素c氧化酶1基因的进化速度比动物慢得多。因此,我们提出了核内转录间隔区和质体trnH-psbA基因间隔区,作为将条形码应用于开花植物的潜在可用DNA区。内部转录的间隔区是植物种系研究中在物种水平上最常用的测序基因座,并显示出高水平的种间差异。 trnH-psbA间隔区虽然短(约450 bp),却是被子植物中最易变的质体区域,很容易在广泛的陆地植物中扩增。通过对广泛不同的被子植物类群进行试验,增强了烟草和致命茄科植物的总质体基因组的比较,其中包括七个植物科的密切相关物种以及从涵盖50个植物科的当地植物群中采样的一组物种(共计99种, 80个属和53个科)表明,这对基因座中的序列有可能在最大数量的植物物种中进行条形码区分。

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