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欧洲长耳蝠(Plecotus)相互冲突的分子系统发育可以通过隐存多样性来解释。

Conflicting molecular phylogenies of European long-eared bats (Plecotus) can be explained by cryptic diversity.

作者信息

Kiefer A, Mayer F, Kosuch J, von Helversen O, Veith M

机构信息

Department of Ecology, Institute of Zoology, Mainz University, Saarstrasse 21, Germany.

出版信息

Mol Phylogenet Evol. 2002 Dec;25(3):557-66. doi: 10.1016/s1055-7903(02)00299-3.

DOI:10.1016/s1055-7903(02)00299-3
PMID:12450759
Abstract

Conflicting phylogenetic signals of two data sets that analyse different portions of the same molecule are unexpected and require an explanation. In the present paper we test whether (i) differential evolution of two mitochondrial genes or (ii) cryptic diversity can better explain conflicting results of two recently published molecular phylogenies on the same set of species of long-eared bats (genus Plecotus). We sequenced 1714bp of three mitochondrial regions (16S, ND1, and D-loop) of 35 Plecotus populations from 10 European countries. A likelihood ratio test revealed congruent phylogenetic signals of the three data partitions. Our phylogenetic analyses demonstrated that the existence of a previously undetected Plecotus lineage caused the incongruities of previous studies. This lineage is differentiated on the species level and lives in sympatry with its sister lineage, Plecotus auritus, in Switzerland and Northern Italy. A molecular clock indicates that all European Plecotus species are of mid or late Pliocene origin. Plecotus indet. was previously described as an intergrade between P. auritus and Plecotus austriacus since it shares morphological characters with both. It is currently known from elevations above 800 m a.s.l. in the Alps, the Dinarian Alps and the Pindos mountains in Greece. Since we could demonstrate that incongruities of two molecular analyses simply arose from the mis-identification of one lineage, we conclude that molecular phylogenetic analyses do not free systematists from a thorough inclusion of morphological and ecological data.

摘要

分析同一分子不同部分的两个数据集出现相互冲突的系统发育信号是出乎意料的,需要作出解释。在本文中,我们检验了(i)两个线粒体基因的差异进化或(ii)隐秘多样性能否更好地解释最近发表的关于同一组长耳蝠(普氏蹄蝠属)物种的两个分子系统发育研究结果相互冲突的情况。我们对来自10个欧洲国家的35个普氏蹄蝠种群的三个线粒体区域(16S、ND1和D-loop)的1714bp进行了测序。似然比检验揭示了三个数据分区的系统发育信号是一致的。我们的系统发育分析表明,一个先前未被发现的普氏蹄蝠谱系的存在导致了先前研究结果的不一致。这个谱系在物种水平上是有区别的,并且在瑞士和意大利北部与其姐妹谱系普氏长耳蝠同域分布。分子钟表明,所有欧洲的普氏蹄蝠物种都起源于上新世中期或晚期。普氏蹄蝠未定种以前被描述为普氏长耳蝠和奥地利普氏蹄蝠之间的中间类型,因为它与两者都有形态特征上的相似之处。目前已知它分布在阿尔卑斯山、迪纳拉阿尔卑斯山以及希腊品都斯山脉海拔800米以上的地区。由于我们能够证明两个分子分析结果的不一致仅仅是由于一个谱系的错误鉴定造成的,所以我们得出结论,分子系统发育分析并不能使分类学家免除全面纳入形态学和生态学数据的工作。

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