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首页> 外文期刊>Deep-Sea Research >Gene flow between Atlantic and Pacific Ocean basins in three lineages of deep-sea clams (Bivalvia: Vesicomyidae: Pliocardiinae) and subsequent limited gene flow within the Atlantic
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Gene flow between Atlantic and Pacific Ocean basins in three lineages of deep-sea clams (Bivalvia: Vesicomyidae: Pliocardiinae) and subsequent limited gene flow within the Atlantic

机译:大西洋和太平洋海盆之间三个深海蛤类(双壳纲:Vesicomyidae:Pliocardiinae)之间的基因流以及随后在大西洋内有限的基因流

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Pliocardiin (vesicomyid) clams rely on microbial symbionts for nutrition and are obligate inhabitants of deep-sea chemosynthetic ecosystems. Unlike many other invertebrate hosts of chemosynthetic microbes, pliocardiin clams are found in every ocean in a variety of reducing habitats, including hydrothermal vents, cold seeps, organic falls and deep-sea fans. The global distribution of pliocardiin clams suggests historical gene flow between ocean basins. We focus on 3 pliocardiin genera 'Pliocardia' I, Calyptogena and Abyssogena each of which has a pair of sister clades in the Atlantic and Pacific. Our work tests the hypothesis that historical gene flow between the Atlantic and Pacific Oceans within these genera was interrupted by the closure of the Panamanian seaway and tests whether isolation between the ocean basins is the result of vicariance or past colonization. These questions are investigated in the context of fossil evidence, biogeography and phylogenetics. This study revealed a set of substitution rates consistent with other invertebrate studies (mu =0.8%/My/lineage), and a set consistent with much lower rates often attributed to deep-sea organisms (mu=0.3%/Myflineage). Among the Pacific/Atlantic sister pairs, 'Pilocardia' I COI divergence per lineage is intermediate (2.5%), Calyptogena is the highest (6.1%) and Abyssogena the lowest (0.8%). The substitution rates suggest that 'Pliocardia' I and Calyptogena have histories of at least 2.8 My in the Atlantic, with Calyptogena likely older. The slower rate, however, is inconsistent with both the maximum age of the family and several well studied fossils: leaving the faster rate preferred. With the faster rate, the Abyssogena southwardae Glade diverged from its Pacific sister Glade around 1 Mya, which likely post-dates the closure of the Isthmus of Panama and the opening of the Bering Strait. In light of this recent divergence, we test the previously proposed hypothesis that there is a high level of ongoing gene flow between Atlantic populations of A. southwardae. A. southwardae has colonized a broad geographic range of seep sites including the West Florida Escarpment, the Barbados Accretionary Prism, the Lobes of Congo, and the Mid-Atlantic Ridge north and south of the Romanche Transform Fault. Coalescent methods detect gene flow between Barbados and the Mid-Atlantic ridge; and between the West Florida Escarpment and the Lobes of Congo. All other comparisons failed to detect gene flow, contrary to prevailing interpretations of connectivity across the entire Atlantic Basin. (C) 2016 Elsevier Ltd. All rights reserved.
机译:心包in(囊泡)蛤依靠微生物共生素来营养,是深海化学合成生态系统的主要种群。与化学合成微生物的许多其他无脊椎动物宿主不同,在每个海洋中各种减少的生境中都发现了心形心蛤,包括热液喷口,冷渗漏,有机物落入和深海扇形。心包cardi的全球分布表明,历史流域在海盆之间流动。我们专注于3个心包心球菌属'Pliocardia'I,Calyptogena和Abyssogena,它们每个在大西洋和太平洋都有一对姐妹进化枝。我们的工作检验了这样一个假设,即该属中大西洋和太平洋之间的历史基因流因巴拿马海道的封闭而中断,并检验了海盆之间的隔离是偶然性还是过去殖民的结果。这些问题是在化石证据,生物地理学和系统发育学的背景下进行研究的。这项研究揭示了一组与其他无脊椎动物研究一致的替代率(μ= 0.8%/ My /谱系),与一组归因于深海生物的较低替代率(μ= 0.3%/ Myflineage)相符。在太平洋/大西洋姐妹对中,每个谱系的“心动过速” I COI差异中等(2.5%),Calyptogena最高(6.1%),Abyssogena最低(0.8%)。替代率表明,'Pliocardia'I和Calyptogena在大西洋的历史至少为2.8 My,而Calyptogena可能更老。但是,速度较慢与该家族的最大年龄以及一些经过充分研究的化石均不一致:因此,速度较快是首选。随着速度的加快,南洋深渊格莱德(Abyssogena southwardae Glade)与太平洋姊妹格莱德(Glade)在1 Mya附近分叉,这很可能是在巴拿马地峡关闭和白令海峡开放之后。鉴于这种最近的分歧,我们检验了先前提出的假设,即南向不动杆菌的大西洋种群之间存在大量正在进行的基因流动。南方疫病菌已在广泛的地理范围内定殖,包括西佛罗里达悬崖,巴巴多斯增生棱镜,刚果裂片以及罗曼奇变换断层南北的大西洋中脊。联合方法可检测巴巴多斯与大西洋中脊之间的基因流;以及在西佛罗里达悬崖和刚果裂片之间。所有其他比较均未能检测到基因流,这与对整个大西洋盆地的连通性的普遍解释相反。 (C)2016 Elsevier Ltd.保留所有权利。

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