首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Flightlessness and phylogeny amongst endemic rails (Aves:Rallidae) of the New Zealand region.
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Flightlessness and phylogeny amongst endemic rails (Aves:Rallidae) of the New Zealand region.

机译:新西兰地区特有的铁轨(Aves:Rallidae)之间的失航和系统发育。

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摘要

The phylogenetic relationships of a number of flightless and volant rails have been investigated using mtDNA sequence data. The third domain of the small ribosomal subunit (12S) has been sequenced for 22 taxa, and part of the 5' end of the cytochrome-b gene has been sequenced for 12 taxa. Additional sequences were obtained from outgroup taxa, two species of jacana, sarus crane, spur-winged plover and kagu. Extinct rails were investigated using DNA extracted from subfossil bones, and in cases where fresh material could not be obtained from other extant taxa, feathers and museum skins were used as sources of DNA. Phylogenetic trees produced from these data have topologies that are, in general, consistent with data from DNA-DNA hybridization studies and recent interpretations based on morphology. Gallinula chloropus moorhen) groups basally with Fulica (coots), Amaurornis (= Megacrex) ineptus falls within the Gallirallus/Rallus group, and Gallinula (= Porphyrula) martinica is basal to Porphyrio (swamphens) and should probably be placed in that genus. Subspecies of Porphyrio porphyrio are paraphyletic with respect to Porphyrio mantelli (takahe). The Northern Hemisphere Rallus aquaticus is basal to the south-western Pacific Rallus (or Gallirallus) group. The flightless Rallus philippensis dieffenbachii is close to Rallus modestus and distinct from the volant Rallus philippensis, and is evidently a separate species. Porzana (crakes) appears to be more closely associated with Porphyrio than Rallus. Deep relationships among the rails remain poorly resolved. Rhynochetus jubatus (kagu) is closer to the cranes than the rails in this analysis. Genetic distances between flightless rails and their volant counterparts varied considerably with observed 12S sequence distances, ranging from 0.3% (Porphyrio porphyrio melanotus and P. mantelli mantelli) to 7.6% (Rallus modestus and Rallus philippensis). This may be taken as an indication of the rapidity with which flightlessness can evolve, and of the persistence of flightless taxa. Genetic data supported the notion that flightless taxa were independently derived, sometimes from similar colonizing ancestors. The morphology of flightless rails is apparently frequently dominated by evolutionary parallelism although similarity of external appearance is not an indication of the extent of genetic divergence. In some cases taxa that are genetically close are morphologically distinct from one another (e.g. Rallus (philippensis) dieffenbachii and R. modestus), whilst some morphologically similar taxa are evidently independently derived (e.g. Porphyio mantelli hochstetteri and P.m. mantelli).
机译:已经使用mtDNA序列数据研究了许多无法飞行的轨道和进化的轨道的系统发育关系。小核糖体亚基(12S)的第三个结构域已被测序了22个分类单元,而细胞色素b基因的5'端的一部分已被测序了12个分类单元。另外的序列是从外群分类群,贾卡纳的两个物种,长臂猿鹤,直翅pl和kagu获得的。使用从化石骨骼中提取的DNA来研究灭绝的铁轨,如果无法从其他现存的分类单元中获得新鲜的材料,则将羽毛和博物馆的皮肤用作DNA的来源。根据这些数据生成的系统发育树,其拓扑通常与DNA-DNA杂交研究和基于形态学的最新解释的数据一致。 Gallinula chloropus moorhen)与Fulica(白骨鸡)基本成群,Amaurornis(= Megacrex)腹肌属于Gallirallus / Rallus组,而Gallinula(= Porphyrula)martinica基于Porphyrio(swamphens)为基础,应该放在该属中。卟啉卟啉亚种相对于曼氏卟啉菌(takahe)是近亲的。北半球Rallus aquaticus是西南太平洋Rallus(或Gallirallus)群的基础。不会飞的菲律宾all(Rallus philippensis dieffenbachii)与印度R(Rallus modetus)接近,并且与飞扬的菲律宾all(Rallus philippensis)不同,并且显然是一个单独的物种。 Porzana(crakes)与Porphyrio的关系似乎比Rallus更紧密。铁轨之间的深层关系仍然难以解决。在此分析中,Rhynochetus jubatus(kagu)比轨道更靠近起重机。随着观察到的12S序列距离,无法飞行的轨道与其对应的亲缘之间的遗传距离差异很大,范围从0.3%(Porphyrio porphyrio melanotus和P. mantelli mantelli)到7.6%(Rallusmodetus和Rallus philippensis)。这可以被认为是可飞度发展的快速性和不飞类群的持续存在的指示。遗传数据支持这样一种观念,即不会飞的类群是独立产生的,有时是从类似的殖民祖先那里获得的。尽管外观相似并不表示遗传差异的程度,但无法飞行的轨道的形态显然经常由进化平行性主导。在某些情况下,遗传上接近的分类单元在形态上彼此不同(例如罗勒斯(philippensis)dieffenbachii和R.modetus),而一些形态相似的分类单元显然是独立衍生的(例如Porphyio mantelli hochstetteri和P.m. mantelli)。

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