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Revisiting the Plastid Phylogenomics of Pinaceae with Two Complete Plastomes of Pseudolarix and Tsuga

机译:用两个完整的假单胞菌和Tsu虫复习松果科的质体系统学

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摘要

Phylogeny of the ten Pinaceous genera has long been contentious. Plastid genomes (plastomes) provide an opportunity to resolve this problem because they contain rich evolutionary information. To comprehend the plastid phylogenomics of all ten Pinaceous genera, we sequenced the plastomes of two previously unavailable genera, Pseudolarix amabilis (122,234 bp) and Tsuga chinensis (120,859 bp). Both plastomes share similar gene repertoire and order. Here for the first time we report a unique insertion of tandem repeats in accD of T. chinensis. From the 65 plastid protein-coding genes common to all Pinaceous genera, we re-examined the phylogenetic relationship among all Pinaceous genera. Our two phylogenetic trees are congruent in an identical tree topology, with the five genera of the Abietoideae subfamily constituting a monophyletic clade separate from the other three subfamilies: Pinoideae, Piceoideae, and Laricoideae. The five genera of Abietoideae were grouped into two sister clades consisting of (1) Cedrus alone and (2) two sister subclades of Pseudolarix—Tsuga and Abies—Keteleeria, with the former uniquely losing the gene psaM and the latter specifically excluding the 3 psbA from the residual inverted repeat.
机译:十个松果属的系统发育长期以来一直是有争议的。质体基因组(质体组)提供了解决此问题的机会,因为它们包含丰富的进化信息。为了理解所有十个松属属的质体系统发育组学,我们对两个以前不可用的属,Pseudolarix amabilis(122,234 bp)和Tsuga chinensis(120,859 bp)进行了质体测序。两个质体组共享相似的基因库和顺序。在这里,我们首次报道了在中华T的accD中串联重复序列的独特插入。从所有松科属共有的65个质体蛋白编码基因中,我们重新检查了所有松科属之间的系统发育关系。我们的两个系统发育树在相同的树形拓扑中是一致的,其中the足科的五个属构成了与其他三个亚科分开的单系进化枝:披皮科,皮皮科和落叶松科。 Abietoideae的五个属被分为两个姐妹进化枝,分别由(1)雪松和(2)假单孢属的两个姐妹子代-Tsuga和Abies-Keteleeria组成,前者独特地丢失了基因psaM,而后者专门排除了3 psbA从残留的反向重复开始。

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