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选定鸟类及其他脊椎动物属中线粒体DNA分化的比较描述。

A comparative description of mitochondrial DNA differentiation in selected avian and other vertebrate genera.

作者信息

Kessler L G, Avise J C

机构信息

Department of Genetics, University of Georgia, Athens 30602.

出版信息

Mol Biol Evol. 1985 Mar;2(2):109-25. doi: 10.1093/oxfordjournals.molbev.a040339.

Abstract

Levels of mitochondrial DNA (mtDNA) sequence divergence between species within each of several avian (Anas, Aythya, Dendroica, Melospiza, and Zonotrichia) and nonavian (Lepomis and Hyla) vertebrate genera were compared. An analysis of digestion profiles generated by 13-18 restriction endonucleases indicates little overlap in magnitude of mtDNA divergence for the avian versus nonavian taxa examined. In 55 interspecific comparisons among the avian congeners, the fraction of identical fragment lengths (F) ranged from 0.26 to 0.96 (F = 0.46), and, given certain assumptions, these translate into estimates of nucleotide sequence divergence (p) ranging from 0.007 to 0.088; in 46 comparisons among the fish and amphibian congeners, F values ranged from 0.00 to 0.36 (F = 0.09), yielding estimates of P greater than 0.070. The small mtDNA distances among avian congeners are associated with protein-electrophoretic distances (D values) less than approximately 0.2, while the mtDNA distances among assayed fish and amphibian congeners are associated with D values usually greater than 0.4. Since the conservative pattern of protein differentiation previously reported for many avian versus nonavian taxa now appears to be paralleled by a conservative pattern of mtDNA divergence, it seems increasingly likely that many avian species have shared more recent common ancestors than have their nonavian taxonomic counterparts. However, estimates of avian divergence times derived from mtDNA- and protein-calibrated clocks cannot readily be reconciled with some published dates based on limited fossil remains. If the earlier paleontological interpretations are valid, then protein and mtDNA evolution must be somewhat decelerated in birds. The empirical and conceptual issues raised by these findings are highly analogous to those in the long-standing debate about rates of molecular evolution and times of separation of ancestral hominids from African apes.

摘要

对几个鸟类(鸭属、潜鸭属、森莺属、歌带鹀属和白冠带鹀属)和非鸟类(太阳鱼属和雨蛙属)脊椎动物属内各物种之间的线粒体DNA(mtDNA)序列差异水平进行了比较。对由13 - 18种限制性内切酶产生的消化图谱分析表明,所研究的鸟类与非鸟类分类群的mtDNA差异程度几乎没有重叠。在鸟类同属物种间的55次种间比较中,相同片段长度的比例(F)范围为0.26至0.96(F = 0.46),并且在某些假设条件下,这些转化为核苷酸序列差异(p)的估计值范围为从鸟类同属物种间的55次种间比较中,相同片段长度的比例(F)范围为0.26至0.96(F = 0.46),并且在某些假设条件下,这些转化为核苷酸序列差异(p)的估计值范围为0.007至0.088;在鱼类和两栖类同属物种间的46次比较中,F值范围为0.00至0.36(F = 0.09),得出p大于0.070的估计值。鸟类同属物种间较小的mtDNA距离与小于约0.2的蛋白质电泳距离(D值)相关,而经检测的鱼类和两栖类同属物种间的mtDNA距离与通常大于0.4的D值相关。由于先前报道的许多鸟类与非鸟类分类群的蛋白质分化保守模式现在似乎与mtDNA差异的保守模式相似,因此越来越有可能的是,许多鸟类物种比它们的非鸟类分类对应物拥有更近的共同祖先。然而,从mtDNA和蛋白质校准时钟得出的鸟类分化时间估计值与基于有限化石遗迹的一些已发表日期难以协调一致。如果早期的古生物学解释是有效的,那么蛋白质和mtDNA进化在鸟类中必定有所减速。这些发现所引发的实证和概念性问题与关于分子进化速率以及祖先人类与非洲猿类分离时间的长期争论中的问题高度相似。 0.007至0.088;在鱼类和两栖类同属物种间的46次比较中,F值范围为0.00至0.36(F = 0.09),得出p大于0.070的估计值。鸟类同属物种间较小的mtDNA距离与小于约0.2的蛋白质电泳距离(D值)相关,而经检测的鱼类和两栖类同属物种间的mtDNA距离与通常大于0.4的D值相关。由于先前报道的许多鸟类与非鸟类分类群的蛋白质分化保守模式现在似乎与mtDNA差异的保守模式相似,因此越来越有可能的是,许多鸟类物种比它们的非鸟类分类对应物拥有更近的共同祖先。然而,从mtDNA和蛋白质校准时钟得出的鸟类分化时间估计值与基于有限化石遗迹的一些已发表日期难以协调一致。如果早期的古生物学解释是有效的,那么蛋白质和mtDNA进化在鸟类中必定有所减速。这些发现所引发 的实证和概念性问题与关于分子进化速率以及祖先人类与非洲猿类分离时间的长期争论中的问题高度相似

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