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首页> 外文期刊>Molecular biology and evolution >Alignment and phylogenetic analysis of beta-fibrinogen intron 7 sequences among avian orders reveal conserved regions within the intron
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Alignment and phylogenetic analysis of beta-fibrinogen intron 7 sequences among avian orders reveal conserved regions within the intron

机译:禽类中β-纤维蛋白原内含子7序列的比对和系统发育分析揭示了内含子内的保守区域

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摘要

We sequenced beta-fibrinogen intron 7 (beta-fibint 7) from 28 species of birds, representing 18 families in nine orders. Although the antiquity of the avian orders is estimated to be 55 to 90 Myr, and numerous indels have accrued among diverging lineages, the intron sequences were not difficult to align. However, alignment of avian sequences with mammal or snake sequences was difficult, and the residual phylogenetic signal was weak. beta-fibint 7 is an AT-rich intron, and its base composition varies little over the diversity of birds represented by our sample. Alignment of these anciently diverged sequences reveals at least five clusters of conserved nucleotides; at least two clusters appear to be in excess of the minimal set usually associated with intron excision, but their functions are unknown. Two equally most-parsimonious (MP) trees were found when indels were not included in the phylogenetic analysis, and six such trees were found when indels were included. The Neighbor-Joining and maximum-likelihood trees were identical to each other and to one of the MP trees in each MP analysis. Indels, as well as nucleotide substitutions, are phylogenetically informative, and bootstrap support exceeded 90% for 21 of 24 inferred nodes when indels were included in the MP analysis. All traditional orders represented by two or more species appear monophyletic. Relationships among avian orders are strongly supported with the exception of an inferred sister-group relationship between Caprimulgiformes and Columbiformes. A relatively close relationship between Piciformes and Passeriformes is inferred, at odds with earlier DNA-DNA hybridization studies but consistent with traditional classifications. Among Passeriformes, the traditional perspective of a sister-group relationship of suboscines and oscines is supported, as is the subsequent split of the oscines into a lineage representative of the Corvida before the diversification of the Passerida. The four species of owls divide into two strongly supported clades, corresponding to the widely accepted bifurcation of owls into two families, Tytonidae and Strigidae. A sister-group relationship between gallinaceous birds and waterfowl, the Galloanserae, is also strongly supported.
机译:我们对来自28种鸟类的β-纤维蛋白原内含子7(β-纤维蛋白7)进行了测序,这些鸟类代表9个订单的18个科。尽管禽类的古代估计为55到90 Myr,并且在不同的谱系中积累了大量indel,但内含子序列并不难于比对。但是,很难将禽类序列与哺乳动物或蛇类序列进行比对,并且残留的系统发生信号也较弱。 beta-fibint 7是富含AT的内含子,其基本组成在我们样品所代表的鸟类多样性中几乎没有变化。这些古老分歧的序列的比对揭示了至少五个保守核苷酸的簇。至少有两个簇似乎超出了通常与内含子切除相关的最小集,但其功能尚不清楚。当在系统发育分析中不包含插入缺失时,发现了两棵最简约的(MP)树,而在包含缺失插入序列时,发现了六棵这样的树木。邻居加入树和最大似然树彼此相同,并且在每次MP分析中均与MP树之一相同。插入缺失和核苷酸取代在系统发育上提供信息,当MP分析中包含插入缺失时,对于24个推断节点中的21个,引导程序支持超过90%。由两个或两个以上物种代表的所有传统秩序似乎都是单系的。强烈支持禽纲之间的关系,除了推断的Cap形纲和Co形纲之间的姐妹群关系。推断Pipicformes和Passeriformes之间的相对密切的关系与早期的DNA-DNA杂交研究不一致,但与传统分类一致。在Passeriformes中,支持亚传统的亚潜艇和潜艇的姐妹关系的观点,在随后的Passerida多样化之前,随后的潜艇被拆分为Corvida的血统代表。四种猫头鹰分为两个牢固支撑的进化枝,对应于广为接受的猫头鹰分叉成两个科,即Tytonidae和Strigidae。鸡胆鸟和水禽之间的姐妹群关系也得到了大力支持。

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