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Speciation in North American Junonia from a genomic perspective

机译:从基因组视角下北美俊尼亚的形态

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摘要

Delineating species boundaries in phylogenetic groups undergoing recent radiation is a daunting challenge akin to discretizing continuity. Here, we propose a general approach exemplified by American butterflies from the genus Junonia Hubner notorious for the variety of similar phenotypes, ease of hybridization, and the lack of consensus about their classification. We obtain whole-genome shotgun sequences of about 200 specimens. We reason that discreteness emerges from continuity by means of a small number of key players, and search for the proteins that diverged markedly between sympatric populations of different species, while keeping low polymorphism within these species. Being 0.25% of the total number, these three dozen 'speciation' proteins indeed partition pairs of Junonia populations into two clusters with a prominent break in between, while all proteins taken together fail to reveal this discontinuity. Populations with larger divergence from each other, comparable to that between two sympatric species, form the first cluster and correspond to different species. The other cluster is characterized by smaller divergence, similar to that between allopatric populations of the same species and comprise conspecific pairs. Using this method, we conclude that J. genoveva (Cramer), J. litoralis Brevignon, J. evarete (Cramer), and J. divaricata C. & R. Felder are restricted to South America. We find that six species of Junonia are present in the United States, one of which is new: Junonia stemosa Grishin, sp.n. (i), found in south Texas and phenotypically closest to J. nigrosuffusa W. Barnes & McDunnough (ii) in its dark appearance. In the pale nudum of the antennal club, these two species resemble J. zonalis C. & R. Felder (iii) from Florida and the Caribbean Islands. The pair of sister species, J. grisea Austin & J. Emmel (iv) and J. coenia Hubner (v), represent the classic west/east U.S.A. split. The mangrove feeder (as caterpillar), dark nudum J. neildi Brevignon (vi) enters south Texas as a new subspecies Junonia neildi varia Grishin ssp.n. characterized by more extensive hybridization with and introgression from J. coenia, and, as a consequence, more variable wing patterns compared with the nominal J. n. neildi in Florida. Furthermore, a new mangrove-feeding species from the Pacific Coast of Mexico is described as Junonia pacoma Grishin sp.n. Finally, genomic analysis suggests that J. nigrosuffusa may be a hybrid species formed by the ancestors of J. grisea and J. stemosa sp.n.
机译:划分物种在近期辐射的系统发育基团中的界限是一种令人生畏的挑战,类似于离散连续性。在这里,我们提出了一种普遍的方法,示例着来自Junonia Hubner Genus Hubner的各种类似表型,易于杂交的易忍度,以及对他们的分类缺乏共识。我们获得大约200个标本的全基因组霰弹枪序列。我们有理由通过少量关键球员从连续性出现,并搜索在不同物种的分组群之间显着发散的蛋白质,同时在这些物种内保持低多态性。作为总数的0.25%,这三十名“物种”蛋白质确实将junonia群体分配成两组,其中突出的突破,同时所有蛋白质都没有揭示这种不连续性。彼此差异较大的群体,与两个合并物种之间相当,形成第一簇,并对应于不同的物种。另一个簇的特征在于发散较小,类似于相同物种的各种产物之间的群体之间并包括具有的结特对。使用这种方法,我们得出结论,J.Genoveva(Cramer),J. Literalis Brevignon,J. Evarete(Cramer)和J. Divaricata C.&R. Felder仅限于南美洲。我们发现,美国存在六种朱尼尼亚,其中一个是新的:Junonia Stemosa Grishin,Sp.n. (i),在南德克萨斯州发现,并在其黑暗的外表中最接近J. Nigrosuffusa W. Barnes&McDunnough(ii)。在壁球俱乐部的苍白裸露,这两个物种类似于来自佛罗里达和加勒比群岛的J. Zonalis C.&R. Felder(III)。这对姐妹种类,J.Grisea Austin&J. Emmel(IV)和J.Coenia Hubner(v)代表了经典西/东U.A.分裂。红树林饲养者(作为毛虫),黑暗Nudum J. Neildi Brevignon(VI)将南德克萨斯州作为新的亚种Junonia Neildi Varia Grishin SSP.N。以与J.Coenia的更广泛的杂交和引入更广泛的杂交,以及与标称J.N相比的更具可变的翼模式。佛罗里达州的内娘。此外,来自墨西哥太平洋海岸的新红树林饲养物种被描述为Junonia Pacoma Grishin Sp.n.最后,基因组分析表明J. nigrosuffusa可以是由J.Grisea和J.Stemosa Sp.n的祖先形成的杂种物种。

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  • 来源
    《Systematic Entomology》 |2020年第4期|共35页
  • 作者单位

    Univ Texas Southwestern Med Ctr Dallas Dept Biophys 5323 Harry Hines Blvd Dallas TX 75390 USA;

    Univ Texas Southwestern Med Ctr Dallas Dept Biophys 5323 Harry Hines Blvd Dallas TX 75390 USA;

    Univ Texas Southwestern Med Ctr Dallas Dept Biophys 5323 Harry Hines Blvd Dallas TX 75390 USA;

    Univ Texas Southwestern Med Ctr Dallas Dept Biophys 5323 Harry Hines Blvd Dallas TX 75390 USA;

    Villa A7 Rochambeau Matoury French Guiana;

    Univ Texas Southwestern Med Ctr Dallas Dept Biophys 5323 Harry Hines Blvd Dallas TX 75390 USA;

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  • 正文语种 eng
  • 中图分类 昆虫学;
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