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New contributions to the phylogeny of the ciliate class Heterotrichea (Protista, Ciliophora): analyses at family-genus level and new evolutionary hypotheses

机译:对Ciliate类Heterozyea(Protista,Ciliophora)的新贡献(protista,ciliophora):在家庭 - 属的水平和新的进化假设中分析

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Heterotrichous ciliates play an important role in aquatic ecosystem energy flow processes and many are model organisms for research in cytology, regenerative biology, and toxicology. In the present study, we combine both morphological and molecular data to infer phylogenetic relationships at family-genus level and propose new evolutionary hypotheses for the class Heterotrichea. The main results include: (1) 96 new ribosomal DNA sequences from 36 populations, representing eight families and 13 genera, including three poorly annotated genera, Folliculinopsis, Ampullofolliculina and Linostomella; (2) the earliest-branching families are Spirostomidae in single-gene trees and Peritromidae in the concatenated tree, but the family Peritromidae probably represents the basal lineage based on its possession of many “primitive” morphological characters; (3) some findings in molecular trees are not supported by morphological evidence, such as the family Blepharismidae is one of the most recent branches and the relationship between Fabreidae and Folliculinidae is very close; (4) the systematic positions of Condylostomatidae, Climacostomidae, and Gruberiidae remain uncertain based either on morphological or molecular data; and (5) the monophyly of each genus included in the present study is supported by the molecular phylogenetic trees, except for Blepharisma in the SSU rDNA tree and Folliculina in the ITS1-5.8S-ITS2 tree.
机译:异步纤维在水生生态系统能源流程中发挥着重要作用,许多人是用于细胞学,再生生物学和毒理学研究的模型生物。在本研究中,我们将形态学和分子数据与家庭 - 属级别的系统发育关系结合在一起,并为阶级杂化子提出了新的进化假设。主要结果包括:(1)来自36个种群的96个新的核糖体DNA序列,代表八个家族和13个属,其中包括三个差的涂布属,毛囊,Ampullofollina和Linostomella; (2)最早的分支家族是单基因树木和珀三角肌中的螺旋孢子瘤,但系列胚胎族可能是基于其拥有许多“原始”形态特征的基础血统; (3)形态学证据不支持分子树中的一些发现,例如家庭肺炎是最近的树枝之一,法葡萄糖与毛皮酸之间的关系非常近; (4)髁甲瘤素,Cheachostomidae和Gruberiidae的系统位置仍然不确定,无论是在形态学还是分子数据上的情况; (5)本研究中包括的每种属的每种属的单独相同的分子发育树,除了SSU rdna树和毛囊中的肺炎和ITS2树中的肺炎。

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