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Morphometric and Cladistic Analyses Of The Phylogeny of Macropodinium (Ciliophora: Litostomatea: Macropodiniidae)

机译:大足po系统发育的形态学和进化分析(纤毛虫:Listostomatea:大足Macro科)

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摘要

Phylogenetic studies of the genus Macropodinium were conducted using two methods; phenetics and cladistics. The phenetic study of morphometrics suggested that the genus could be divided into 3 groups attributable mostly to cell size and shape. The cladistic study also split the genus into 3 groups related to cell size but groups were further distinguished by patterns of ornamentation. Reconciliation of both approaches revealed considerable congruence, however, it also suggested the existence of convergences in the phenetic study and a lack of resolution in the cladistic study. The morphological diversity of Macropodinium is probably due to evolutionary trends such as increasing body size, allometry and polymerisation of structures. None of these trends, however, was uniformly directional and differential effects were observed in different regions of the phylogenetic tree. Comparison of the phylogeny of Macropodinium to a consensus phylogeny of the macropodids revealed limited incongruence between the 2 trees. The ciliate groups could be related to 2 host groups; the wallaby genera and the kangaroo and wallaroo subgenera. The association with these host groups may be the result of phyletic codescent, ecological resource tracking or a combination of both. Further studies of both host and ciliate phylogeny are necessary to resolve these effects.
机译:用两种方法进行了Macropopinium属的系统发育研究。现象学和分类学。形态计量学的物候研究表明,该属可分为三类,主要归因于细胞大小和形状。这项分类研究还将该属分为与细胞大小有关的3个组,但通过装饰图案进一步区分了这些组。两种方法的调和显示出相当大的一致性,但是,这也表明在物候研究中存在趋同性,而在分类研究中则缺乏解决方法。 Macropodinium的形态多样性可能是由于进化趋势,例如增加体型,异构体和结构聚合。但是,这些趋势中没有一个是一致的方向性,并且在系统树的不同区域均未观察到差异效应。将Macropopinium的系统发育与巨足类的共有系统发育进行比较后,发现两棵树之间的不一致。纤毛虫群可能与2个寄主群相关;袋鼠属以及袋鼠和袋鼠亚属。与这些寄主群体的联系可能是种系代码,生态资源追踪或两者结合的结果。为了解决这些影响,有必要进一步研究宿主和纤毛系统发育。

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