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首页> 外文期刊>Journal of Applied Genetics >Sequence characteristics and divergent evolution of the chloroplast psbA-trnH noncoding region in gymnosperms
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Sequence characteristics and divergent evolution of the chloroplast psbA-trnH noncoding region in gymnosperms

机译:裸子植物叶绿体psbA-trnH非编码区的序列特征和趋异进化

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摘要

The psbA-trnH intergenic region is among the most variable regions in the gymnosperm chloroplast genome. It is proposed as suitable for DNA barcoding studies and is useful in phylogenetics at the species level. This region consists of two parts differing in their evolutionary characteristics: 1) the psbA 3'UTR (untranslated region) and 2) the psbA-trnH intergenic spacer. We compared the sequence and RNA secondary structure of the psbA 3' UTR across gymnosperms and found consensus motifs corresponding to the stem portions of the RNA stem-loop structures and a consensus TGGATTGTTATGT box. The psbA-trnH spacer is highly variable in length and composition. Tandem repeats that form stem loop structures were detected in both the psbA 3 UTR and the psbA-mill spacer. The presence of promoters and stem loop structures in the psbA-trnH spacer and high sequence variation in this region suggest that psbA and trnH in some gymnosperms are independently transcribed. A comparison of chloroplast UTRs across gymnosperms offer clues to the identity of putative regulatory elements and information on selective constraints imposed on the chloroplast non-coding regions. The present study should inspire researchers to explore the full potential of the psbA-trnH non-coding sequence and to further stimulate its application in a broader spectrum of studies, not limited to phylogenetics and DNA barcoding.
机译:psbA-trnH基因间区域是裸子植物叶绿体基因组中变化最大的区域之一。它被提议适合用于DNA条形码研究,并在物种水平的系统发育中有用。该区域由两个部分组成,这些部分的进化特征不同:1)psbA 3'UTR(非翻译区)和2)psbA-trnH基因间隔子。我们比较了裸子植物中psbA 3'UTR的序列和RNA二级结构,发现了与RNA茎环结构的茎部分相对应的共有基序和一个TGGATTGTTATGT框。 psbA-trnH间隔基的长度和组成高度可变。在psbA 3 UTR和psbA-mill间隔子中均检测到形成茎环结构的串联重复序列。 psbA-trnH间隔区中启动子和茎环结构的存在以及该区域的高序列变异表明某些裸子植物中的psbA和trnH是独立转录的。裸子植物中叶绿体UTR的比较为推测的调控元件的身份提供了线索,并提供了对叶绿体非编码区施加的选择性限制的信息。本研究应启发研究人员探索psbA-trnH非编码序列的全部潜力,并进一步刺激其在更广泛的研究领域中的应用,而不仅限于系统发育和DNA条形码。

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