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Recent Speciation in Three Closely Related Sympatric Specialists: Inferences Using Multi-Locus Sequence Post-Mating Isolation and Endosymbiont Data

机译:三位亲属关系密切的专家的最新物种:使用多基因座序列交配后隔离和内胚轴数据的推论

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摘要

Shifting between unrelated host plants is relatively rare for phytophagous insects, and distinct host specificity may play crucial roles in reproductive isolation. However, the isolation status and the relationship between parental divergence and post-mating isolation among closely related sympatric specialists are still poorly understood. Here, multi-locus sequence were used to estimate the relationship among three host plant–specific closely related flea beetles, Altica cirsicola, A. fragariae and A. viridicyanea (abbreviated as AC, AF and AV respectively). The tree topologies were inconsistent using different gene or different combinations of gene fragments. The relationship of AF+(AC+AV) was supported, however, by both gene tree and species tree based on concatenated data. Post-mating reproductive data on the results of crossing these three species are best interpreted in the light of a well established phylogeny. Nuclear-induced but not Wolbachia-induced unidirectional cytoplasmic incompatibility, which was detected in AC-AF and AF-AV but not in AC-AV, may also suggest more close genetic affinity between AC and AV. Prevalence of Wolbachia in these three beetles, and the endosymbiont in most individuals of AV and AC sharing a same wsp haplotype may give another evidence of AF+(AC+AV). Our study also suggested that these three flea beetles diverged in a relative short time (0.94 My), which may be the result of shifting between unrelated host plants and distinct host specificity. Incomplete post-mating isolation while almost complete lineage sorting indicated that effective pre-mating isolation among these three species should have evolved.
机译:对于植食性昆虫而言,在不相关的寄主植物之间转移相对罕见,并且不同的寄主特异性可能在生殖分离中起关键作用。但是,人们对亲密关系密切的同胞专家之间的隔离状态以及父母的分歧和交配后隔离之间的关系仍然知之甚少。在这里,多位点序列被用来估计三种与寄主植物密切相关的跳蚤甲虫,Altica cirsicola,A。fragariae和A. viridicyanea(分别缩写为AC,AF和AV)之间的关系。使用不同的基因或基因片段的不同组合,树形拓扑不一致。然而,基于连接数据的基因树和物种树都支持AF +(AC + AV)的关系。鉴于建立良好的系统发育,最好能解释这三个物种杂交后的繁殖后数据。在AC-AF和AF-AV中检测到但不是在AC-AV中检测到的核诱导而不是由Wolbachia诱导的单向胞质不相容性,也可能表明AC和AV之间具有更紧密的遗传亲和力。这三个甲虫中的Wolbachia患病率以及大多数具有相同wsp单倍型的AV和AC个体的共生共生可能为AF +(AC + AV)提供了另一个证据。我们的研究还表明,这三个跳蚤甲虫在相对较短的时间内发散(0.94 My),这可能是不相关的寄主植物之间转移和寄主特异性不同的结果。交配后隔离不完全,而谱系分选几乎完全表明这三个物种之间的有效交配前隔离已经发生。

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