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首页> 外文期刊>BMC Genomics >Six newly sequenced chloroplast genomes from prasinophyte green algae provide insights into the relationships among prasinophyte lineages and the diversity of streamlined genome architecture in picoplanktonic species
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Six newly sequenced chloroplast genomes from prasinophyte green algae provide insights into the relationships among prasinophyte lineages and the diversity of streamlined genome architecture in picoplanktonic species

机译:六个新近测序的藻类植物藻类叶绿体基因组提供了有关藻类植物谱系之间的关系以及微型浮游物种精简基因组结构多样性的见解

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Background Because they represent the earliest divergences of the Chlorophyta, the morphologically diverse unicellular green algae making up the prasinophytes hold the key to understanding the nature of the first viridiplants and the evolutionary patterns that accompanied the radiation of chlorophytes. Nuclear-encoded 18S rDNA phylogenies unveiled nine prasinophyte clades (clades I through IX) but their branching order is still uncertain. We present here the newly sequenced chloroplast genomes of Nephroselmis astigmatica (clade III) and of five picoplanktonic species from clade VI (Prasinococcus sp. CCMP 1194, Prasinophyceae sp. MBIC 106222 and Prasinoderma coloniale) and clade VII (Picocystis salinarum and Prasinophyceae sp. CCMP 1205). These chloroplast DNAs (cpDNAs) were compared with those of the six previously sampled prasinophytes (clades I, II, III and V) in order to gain information both on the relationships among prasinophyte lineages and on chloroplast genome evolution. Results Varying from 64.3 to 85.6?kb in size and encoding 100 to 115 conserved genes, the cpDNAs of the newly investigated picoplanktonic species are substantially smaller than those observed for larger-size prasinophytes, are economically packed and contain a reduced gene content. Although the Nephroselmis and Picocystis cpDNAs feature a large inverted repeat encoding the rRNA operon, gene partitioning among the single copy regions is remarkably different. Unexpectedly, we found that all three species from clade VI (Prasinococcales) harbor chloroplast genes not previously documented for chlorophytes (ndhJ, rbcR, rpl21, rps15, rps16 and ycf66) and that Picocystis contains a trans-spliced group II intron. The phylogenies inferred from cpDNA-encoded proteins are essentially congruent with 18S rDNA trees, resolving with robust support all six examined prasinophyte lineages, with the exception of the Pycnococcaceae. Conclusions Our results underscore the high variability in genome architecture among prasinophyte lineages, highlighting the strong pressure to maintain a small and compact chloroplast genome in picoplanktonic species. The unique set of six chloroplast genes found in the Prasinococcales supports the ancestral status of this lineage within the prasinophytes. The widely diverging traits uncovered for the clade-VII members (Picocystis and Prasinophyceae sp. CCMP 1205) are consistent with their resolution as separate lineages in the chloroplast phylogeny.
机译:背景技术由于它们代表了绿藻的最早发散,因此构成藻类植物的形态多样的单细胞绿藻成为了解第一类viridiplants的性质以及伴随绿藻类辐射的进化模式的关键。核编码的18S rDNA系统发育揭示了9个prasinophyte进化枝(进化枝I至IX),但它们的分支顺序仍然不确定。我们在这里介绍了新的排序的Nephroselmis astigmatica(clade III)和来自进化枝VI(Prasinococcus sp。CCMP 1194,Prasinophyceae sp。MBIC 106222和Prasinoderma Coloniale)和VII进化枝VII(Picocystis salinarum and Prasinophyceae sp。)的五个微浮游物种的叶绿体基因组。 1205)。将这些叶绿体DNA(cpDNA)与先前采样的六个藻类植物(第I,II,III和V类)的叶绿体DNA(cpDNA)进行了比较,以便获得有关藻类植物谱系之间的关系以及叶绿体基因组进化的信息。结果新研究的微浮游物种的cpDNA大小从64.3到85.6?kb不等,编码100到115个保守基因,其cpDNA显着小于大尺寸的植物类植物所观察到的cpDNA,经济上包装并且基因含量减少。尽管肾小球藻和微囊藻cpDNA具有编码rRNA操纵子的大反向重复序列,但单拷贝区域之间的基因分配却显着不同。出乎意料的是,我们发现进化枝VI(Prasinococcales)的所有三个物种都具有叶绿体基因,而这些基因以前没有记载过叶绿素(ndhJ,rbcR,rpl21,rps15,rps16和ycf66),皮囊虫含有一个反式剪接的II组内含子。从cpDNA编码的蛋白质推断出的系统发育与18S rDNA树基本上是一致的,并在强大的支持下解析了所有6个被检出的古生植物谱系,除了葡萄球菌科。结论我们的结果强调了在古生物植物谱系中基因组结构的高度可变性,突显了维持微型浮游物种中小型而紧凑的叶绿体基因组的强大压力。在Prasinococcales中发现的一组独特的六个叶绿体基因支持了该谱系在Prasinophytes中的祖先状态。进化枝VII成员(皮囊藻和Prasinophyceae sp。CCMP 1205)发现的广泛不同的性状与其在叶绿体系统发育中作为独立谱系的解析一致。

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