Comparison of Four Complete Chloroplast Genomes of Medicinal and Ornamental Meconopsis Species: Genome Organization and Species Discrimination

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作者
Xiaoxue Li
Wei Tan
Jiqi Sun
Junhua Du
Chenguang Zheng
Xiaoxuan Tian
Min Zheng
Beibei Xiang
Yong Wang
机构
[1] Nankai University,College of Life Science
[2] Tianjin University of Traditional Chinese Medicine,Tianjin State Key Laboratory of Modern Chinese Medicine
[3] Qinghai Normal University,College of Life and Geographic Sciences
[4] Tianjin University of Traditional Chinese Medicine,School of Chinese Materia Medica
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High-throughput sequencing of chloroplast genomes has been used to gain insight into the evolutionary relationships of plant species. In this study, we sequenced the complete chloroplast genomes of four species in the Meconopsis genus: M. racemosa, M. integrifolia (Maxim.) Franch, M. horridula and M. punicea. These plants grow in the wild and are recognized as having important medicinal and ornamental applications. The sequencing results showed that the size of the Meconopsis chloroplast genome ranges from 151864 to 153816 bp. A total of 127 genes comprising 90 protein-coding genes, 37 tRNA genes and 8 rRNA genes were observed in all four chloroplast genomes. Comparative analysis of the four chloroplast genomes revealed five hotspot regions (matK, rpoC2, petA, ndhF, and ycf1), which could potentially be used as unique molecular markers for species identification. In addition, the ycf1 gene may also be used as an effective molecular marker to distinguish Papaveraceae and determine the evolutionary relationships among plant species in the Papaveraceae family. Futhermore, these four genomes can provide valuable genetic information for other related studies.
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