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首页> 外文期刊>Phytotaxa >Molecular identification of Audouinella-like species (Rhodophyta) from China based on three short DNA fragments
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Molecular identification of Audouinella-like species (Rhodophyta) from China based on three short DNA fragments

机译:基于三个短DNA片段的中国产金藻类物种(红藻)的分子鉴定

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摘要

Four algal specimens with morphological resemblance to Audouinella were collected in China, both bluish and reddish thalli included. Because of the taxonomic obscurity of the acrochaetioid lineage, a molecular phylogenetic analysis was performed to verify the phylogenetic position of these specimens based on three short DNA fragments including psbA, UPA and COI-5P. Molecular sequences were analyzed by neighbor-joining, maximum likelihood, Bayesian, and NeighborNet methods. Phylogenetic relationships based on three DNA fragments were consistent in that the four Audouinella-like thalli clustered together with Thorea hispida (Thore) Desvaux with strong support. The four specimens morphologically similar to Audouinella were concluded to represent the chantransia stage of Thoreales based on molecular trees. The reddish specimen shared no sequence divergence with the bluish ones. For identification of freshwater Audouinellla, criteria of thallus color must be used with caution and molecular tool-assisted analysis are essential. The formerly established new species Audouinella heterospora S.L.Xie & Y.J.Ling was inferred to be synonymous with the chantransia stage of T. hispida. The three DNA molecular markers demonstrated to be effective to ascertain the phylogenetic position of acrochaetioid algae specimens, and to delineate other freshwater Rhodophyta.
机译:在中国收集了四个形态相似于金杜氏藻的藻标本,包括淡蓝色和淡红色的塔利。由于类脂舌类谱系的分类学不清楚,因此基于包括psbA,UPA和COI-5P在内的三个短DNA片段,进行了分子系统发育分析,以验证这些标本的系统发生位置。通过邻居连接,最大似然,贝叶斯和邻居网络方法分析分子序列。基于三个DNA片段的系统发生关系是一致的,因为四个Audouinella样的拟南芥与Thorea hispida(Thore)Desvaux聚在一起,并得到了强有力的支持。根据分子树,得出四个形态上与金杜氏菌相似的标本,以代表胸腺的蜕皮期。带红色的标本与带蓝色的标本没有序列差异。为了鉴定淡水金杜氏藻,必须谨慎使用all色标准,并且分子工具辅助分析是必不可少的。据推测,以前建立的新种异双孢金藻S.L.Xie&Y.J.Ling是T. hispida的chanchania阶段的代名词。这三个DNA分子标记物被证明可有效确定类脂类藻类标本的系统发生位置,并勾画出其他淡水红藻。

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