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首页> 外文期刊>BMC Genomics >A complete mitochondrial genome for fragrant Chinese rosewood (Dalbergia odorifera, Fabaceae) with comparative analyses of genome structure and intergenomic sequence transfers
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A complete mitochondrial genome for fragrant Chinese rosewood (Dalbergia odorifera, Fabaceae) with comparative analyses of genome structure and intergenomic sequence transfers

机译:一种完全线粒体基因组,用于香气中华梨木花(Dalbergia Odorifera,Fabaceae),具有基因组结构和骨髓组序列转移的比较分析

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摘要

Dalbergia odorifera is an economically and culturally important species in the Fabaceae because of the high-quality lumber and traditional Chinese medicines made from this plant, however, overexploitation has increased the scarcity of D. odorifera. Given the rarity and the multiple uses of this species, it is important to expand the genomic resources for utilizing?in applications such as tracking illegal logging, determining effective population size of wild stands, delineating pedigrees in marker assisted breeding programs, and resolving gene networks in functional genomics studies. Even?the nuclear and chloroplast genomes have been published for D. odorifera, the complete mitochondrial genome has not been assembled or assessed for sequence transfer to other genomic compartments?until now. Such work is essential in understanding structural and functional genome evolution in a lineage (Fabaceae) with frequent intergenomic sequence transfers. We integrated Illumina short-reads and PacBio CLR long-reads to assemble and annotate the complete mitochondrial genome of D. odorifera. The mitochondrial genome was organized as?a single circular structure?of?435 Kb in length containing 33 protein coding genes, 4 rRNA and 17 tRNA genes. Nearly 4.0% (17,386?bp) of the genome was annotated as repetitive DNA. From the sequence transfer analysis, it was found that 114 Kb of DNA originating from the mitochondrial genome has been transferred to the nuclear genome, with most of the transfer events having taken place relatively recently. The high frequency of sequence transfers from the mitochondria to the nuclear genome was similar to that of sequence transfer from the chloroplast to the nuclear genome. For the first-time, the complete mitochondrial genome of D. odorifera was assembled in this study, which will provide a baseline resource in understanding genomic evolution in the highly specious Fabaceae. In particular, the assessment of intergenomic sequence transfer suggests that transfers have been common and recent indicating a possible role in environmental adaptation as has been found in other lineages. The high turnover rate of genomic colinearly and large differences in mitochondrial genome size found in the comparative analyses herein providing evidence for the rapid evolution of mitochondrial genome structure compared to chloroplasts in Faboideae. While phylogenetic analyses using functional genes indicate that mitochondrial genes are very slowly evolving compared to chloroplast genes.
机译:Dalbergia Odorifera是一种经济和文化重要的物种,由于这种植物制成的高质量木材和中药材,但过度开采增加了D. Odorifera的稀缺性。鉴于这种物种的罕见和多种用途,扩大基因组资源的利用是很重要的?在跟踪非法伐木的应用中,确定野生站的有效种群大小,在标记辅助育种计划中描绘少数,并解决基因网络在功能基因组学研究中。甚至呢?核和叶绿体基因组已发表于D. Odorifera,完全线粒体基因组尚未组装或评估序列转移到其他基因组隔室?直到现在。这种作品对于了解具有频繁的相互思科序列转移的谱系(Fabaceae)中的结构和功能基因组演变至关重要。我们综合Illumina短读和PACBIO CLR长期读取以组装和注释D. Odorifera的完全线粒体基因组。组织为单粒子基因组?单个圆形结构α,含有33个蛋白质编码基因,4 rRNA和17个TRNA基因的长度为135kb。基因组的近4.0%(17,386μl)被注释为重复DNA。从序列转移分析中,发现源自线粒体基因组的114kB的DNA已被转移到核基因组,大部分转移事件相对较近。从线粒体转移到核基因组的序列转移的高频率与从叶绿体转移到核基因组的序列转移。首次进行,D. Odorifera的完全线粒体基因组在本研究中组装,这将提供基准资源在高度态度的Fabaceae中了解基因组进化。特别地,对互核组序列转移的评估表明,转移是常见的,最近在其他谱系中发现的环境适应中的可能作用。在本文比较分析中发现的基因组基因组大小和线粒体基因组大小差异的高纳率和大差异为与Babideae中的叶绿体相比,对线粒体基因组结构的快速演变提供了证据。使用功能基因的系统发育分析表明与叶绿体基因相比,线粒体基因非常缓慢地发展。

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