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Diversity in mimicry: paradox or paradigm?拟态的多样性:悖论还是范例?
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Testing mitochondrial sequences and anonymous nuclear markers for phylogeny reconstruction in a rapidly radiating group: molecular systematics of the Delphininae (Cetacea: Odontoceti: Delphinidae).利用线粒体序列和匿名核标记进行快速辐射类群的系统发育重建:海豚亚科(鲸目:齿鲸亚目:海豚科)的分子系统学研究
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Species delimitation and phylogeny of a New Zealand plant species radiation.一种新西兰植物物种辐射的物种界定与系统发育
BMC Evol Biol. 2009 May 20;9:111. doi: 10.1186/1471-2148-9-111.
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A single origin of Batesian mimicry among hybridizing populations of admiral butterflies (Limenitis arthemis) rejects an evolutionary reversion to the ancestral phenotype.樗蚕峡蝶(北美君王蝶,学名:Limenitis arthemis)杂交种群中贝氏拟态的单一起源否定了向祖先表型的进化逆转。
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Inference of population structure using multilocus genotype data: dominant markers and null alleles.利用多位点基因型数据推断群体结构:显性标记和无效等位基因。
Mol Ecol Notes. 2007 Jul 1;7(4):574-578. doi: 10.1111/j.1471-8286.2007.01758.x.
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Evolution of feeding specialization in Tanganyikan scale-eating cichlids: a molecular phylogenetic approach.坦噶尼喀湖食鳞丽鱼食性特化的演化:一种分子系统发育方法
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Non-gradual variation in colour morphs of the strawberry poison frog Dendrobates pumilio: genetic and geographical isolation suggest a role for selection in maintaining polymorphism.草莓箭毒蛙(Dendrobates pumilio)颜色变体的非渐变式变化:遗传和地理隔离表明选择在维持多态性中发挥作用。
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解析海伦娜蝶类的协同辐射揭示了趋同蝴蝶的不同历史。

Dissecting comimetic radiations in Heliconius reveals divergent histories of convergent butterflies.

机构信息

Faculty of Arts and Sciences Center for Systems Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Apr 20;107(16):7365-70. doi: 10.1073/pnas.0911572107. Epub 2010 Apr 5.

DOI:10.1073/pnas.0911572107
PMID:20368448
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2867687/
Abstract

Mimicry among Heliconius butterflies provides a classic example of coevolution but unresolved relationships among mimetic subspecies have prevented examination of codiversification between species. We present amplified fragment length polymorphism and mtDNA datasets for the major comimetic races of Heliconius erato and H. melpomene. The AFLP data reveal unprecedented resolution, clustering samples by geography and race in both species. Our results show that, although H. erato and H. melpomene co-occur, mimic each other, and exhibit parallel shifts in color pattern, they experienced very different modes of diversification and geographic histories. Our results suggest that H. erato originated on the western side of South America whereas H. melpomene originated in the east. H. erato underwent rapid diversification and expansion with continued gene-flow following diversification, resulting in widely dispersed sister taxa. In contrast, H. melpomene underwent a slower pace of diversification with lower levels of gene flow, producing a stepwise directional expansion from west to east. Our results also suggest that each of the three main wing pattern phenotypes originated and/or was lost multiple times in each species. The rayed pattern is likely to be the ancestral phenotype in H. erato whereas postman or red patch is likely to be ancestral in H. melpomene. Finally, H. cydno and H. himera are monophyletic entities clearly nested within H. melpomene and H. erato, rather than being their respective sister species. Estimates of mtDNA divergence suggest a minimum age of 2.8 and 2.1 My for H. erato and H. melpomene, respectively, placing their origins in the late Pliocene.

摘要

拟态蝴蝶中的雌雄斑纹蝴蝶为协同进化提供了一个经典的例子,但由于模拟亚种之间的关系尚未解决,因此无法检查物种之间的共同进化。我们提供了主要拟态种的扩增片段长度多态性和 mtDNA 数据集。AFLP 数据显示了前所未有的分辨率,将两个物种的地理和种族样本聚类在一起。我们的结果表明,尽管 H. erato 和 H. melpomene 共同出现、相互模拟并且颜色图案呈平行变化,但它们经历了非常不同的多样化模式和地理历史。我们的结果表明,H. erato 起源于南美洲的西侧,而 H. melpomene 起源于东侧。H. erato 经历了快速多样化和扩张,在多样化后继续有基因流动,导致姊妹分类群广泛分散。相比之下,H. melpomene 的多样化速度较慢,基因流动水平较低,从西向东呈逐步定向扩张。我们的结果还表明,在每个物种中,三种主要翼图案表型中的每一种都多次起源和/或丢失。射线图案可能是 H. erato 的祖先表型,而邮差或红色斑块可能是 H. melpomene 的祖先表型。最后,H. cydno 和 H. himera 是单系实体,明显嵌套在 H. melpomene 和 H. erato 内,而不是它们各自的姊妹种。mtDNA 分歧的估计表明,H. erato 和 H. melpomene 的起源分别在 280 万和 210 万年前,属于上新世晚期。