首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Evolutionary Analysis of Plastid Genomes of Seven Lonicera L. Species: Implications for Sequence Divergence and Phylogenetic Relationships
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Evolutionary Analysis of Plastid Genomes of Seven Lonicera L. Species: Implications for Sequence Divergence and Phylogenetic Relationships

机译:七个忍冬属植物质体基因组进化分析:对序列差异和系统发生关系的影响。

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摘要

Plant plastomes play crucial roles in species evolution and phylogenetic reconstruction studies due to being maternally inherited and due to the moderate evolutionary rate of genomes. However, patterns of sequence divergence and molecular evolution of the plastid genomes in the horticulturally- and economically-important Lonicera L. species are poorly understood. In this study, we collected the complete plastomes of seven Lonicera species and determined the various repeat sequence variations and protein sequence evolution by comparative genomic analysis. A total of 498 repeats were identified in plastid genomes, which included tandem (130), dispersed (277), and palindromic (91) types of repeat variations. Simple sequence repeat (SSR) elements analysis indicated the enriched SSRs in seven genomes to be mononucleotides, followed by tetra-nucleotides, dinucleotides, tri-nucleotides, hex-nucleotides, and penta-nucleotides. We identified 18 divergence hotspot regions (rps15, rps16, rps18, rpl23, psaJ, infA, ycf1, trnN-GUU-ndhF, rpoC2-rpoC1, rbcL-psaI, trnI-CAU-ycf2, psbZ-trnG-UCC, trnK-UUU-rps16, infA-rps8, rpl14-rpl16, trnV-GAC-rrn16, trnL-UAA intron, and rps12-clpP) that could be used as the potential molecular genetic markers for the further study of population genetics and phylogenetic evolution of Lonicera species. We found that a large number of repeat sequences were distributed in the divergence hotspots of plastid genomes. Interestingly, 16 genes were determined under positive selection, which included four genes for the subunits of ribosome proteins (rps7, rpl2, rpl16, and rpl22), three genes for the subunits of photosystem proteins (psaJ, psbC, and ycf4), three NADH oxidoreductase genes (ndhB, ndhH, and ndhK), two subunits of ATP genes (atpA and atpB), and four other genes (infA, rbcL, ycf1, and ycf2). Phylogenetic analysis based on the whole plastome demonstrated that the seven Lonicera species form a highly-supported monophyletic clade. The availability of these plastid genomes provides important genetic information for further species identification and biological research on Lonicera.
机译:由于母体遗传和基因组适度的进化速率,植物质体组在物种进化和系统发育重建研究中起着至关重要的作用。但是,在园艺和经济上重要的忍冬属植物忍冬属植物中质体基因组的序列分歧和分子进化的模式知之甚少。在这项研究中,我们收集了七个忍冬属植物的完整质体组,并通过比较基因组分析确定了各种重复序列变异和蛋白质序列进化。在质体基因组中总共鉴定出498个重复序列,包括串联(130),分散(277)和回文(91)类型的重复序列。简单序列重复(SSR)元素分析表明,七个基因组中富集的SSR为单核苷酸,其次是四核苷酸,二核苷酸,三核苷酸,六核苷酸和五核苷酸。我们确定了18个发散热点区域(rps15,rps16,rps18,rpl23,psaJ,infA,ycf1,trnN-GUU-ndhF,rpoC2-rpoC1,rbcL-psaI,trnI-CAU-ycf2,psbZ-UrnK-UCC,trn -rps16,infA-rps8, rpl14-rpl16 trnV-GAC-rrn16 trnL-UAA 内含子和 rps12-clpP ),可作为进一步研究忍冬属物种的种群遗传学和系统发育进化的潜在分子遗传标记。我们发现大量重复序列分布在质体基因组的发散热点。有趣的是,在阳性选择下确定了16个基因,其中包括核糖体蛋白亚基的四个基因( rps7, rpl2 rpl16,和< em> rpl22 ),光系统蛋白亚基的三个基因( psaJ psbC, ycf4 ),三个NADH氧化还原酶基因( ndhB ndhH ndhK ),这两个ATP基因的亚基( atpA atpB )和其他四个基因( infA rbcL ycf1 ycf2 )。基于整个质体组的系统发育分析表明,七个<忍冬>忍冬物种形成了高度支持的单系进化枝。这些质体基因组的可用性为进一步的忍冬属植物的鉴定和生物学研究提供了重要的遗传信息。

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