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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >The evolutionary fate of the chloroplast and nuclear rps16 genes as revealed through the sequencing and comparative analyses of four novel legume chloroplast genomes from Lupinus
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The evolutionary fate of the chloroplast and nuclear rps16 genes as revealed through the sequencing and comparative analyses of four novel legume chloroplast genomes from Lupinus

机译:叶绿素和核RPS16基因的进化命运,揭示了来自卢普氏菌的四个新豆类氯化体基因组的测序和比较分析

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The Fabaceae family is considered as a model system for understanding chloroplast genome evolution due to the presence of extensive structural rearrangements, gene losses and localized hypermutable regions. Here, we provide sequences of four chloroplast genomes from the Lupinus genus, belonging to the underinvestigated Genistoid clade. Notably, we found in Lupinus species the functional loss of the essential rps16 gene, which was most likely replaced by the nuclear rps16 gene that encodes chloroplast and mitochondrion targeted RPS16 proteins. To study the evolutionary fate of the rps16 gene, we explored all available plant chloroplast, mitochondrial and nuclear genomes. Whereas no plant mitochondrial genomes carry an rps16 gene, many plants still have a functional nuclear and chloroplast rps16 gene. Ka/Ks ratios revealed that both chloroplast and nuclear rps16 copies were under purifying selection. However, due to the dual targeting of the nuclear rps16 gene product and the absence of a mitochondrial copy, the chloroplast gene may be lost. We also performed comparative analyses of lupine plastomes (SNPs, indels and repeat elements), identified the most variable regions and examined their phylogenetic utility. The markers identified here will help to reveal the evolutionary history of lupines, Genistoids and closely related clades.
机译:由于存在广泛的结构重排,基因损失和局部高估区域,Fabaceae家族被认为是理解叶绿体基因组进化的模型系统。在这里,我们提供来自羽扇素属的四种叶绿体基因组序列,属于潜在的脱蛋白曲线。值得注意的是,我们在卢普氏素物种中发现了必需RPS16基因的功能丧失,最有可能被编码叶绿体和线粒体靶向RPS16蛋白的核RPS16基因。为了研究RPS16基因的进化命运,我们探讨了所有可用的植物叶绿体,线粒体和核基因组。虽然没有植物线粒体基因组携带RPS16基因,但许多植物仍然具有功能核和叶绿体RPS16基因。 Ka / Ks比率显示,叶绿体和核rps16拷贝都在纯化选择。然而,由于核RPS16基因产物的双重靶向和没有线粒体拷贝,叶绿体基因可能会丢失。我们还表现了羽扇碱塑料(SNP,诱导和重复元素)的对比分析,确定了最可变的区域并检查了它们的系统发育效用。这里鉴定的标记将有助于揭示羽扇豆,谷胱甘肽和密切相关的曲线的进化史。

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