在一个中等孤立的古代湖泊中特有物种的起源:缅甸茵莱湖蛇头的案例

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-09-24 DOI:10.1111/zsc.12633
Yusuke Fuke, Prachya Musikasinthorn, Yuichi Kano, Ryoichi Tabata, Shoko Matsui, Sein Tun, L. K. C. Yun, Bunthang Touch, Phanara Thach, Katsutoshi Watanabe
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引用次数: 0

摘要

茵莱湖是缅甸境内一个古老的湖泊,是一个重要的地区,拥有独特而多样的动物。它的鱼类被认为是非辐射形成的,但其历史过程却知之甚少。为了阐明在这个中等隔离的生物地理“岛”上形成物种多样性的机制,本研究以Inle湖的典型特有鱼Channa harcourtbutleri (Channidae, Anabantiformes)及其广泛分布的姐妹种C. limbata为研究对象,并基于全基因组多态性(MIG - seq)和线粒体DNA数据估计了该特有鱼的历史分布和多样化过程。Channa harcourtbutleri包含两个遗传和形态上不同的群体,分别居住在Inle湖和周围的河流中。这两个群体在基因上是最接近的;然而,河流群与来自东南亚的近缘种C. limbata有一些相似之处。特有种的mtDNA单倍型不具有单系性;大多数河流种群的单倍型与伊洛瓦底江上游和萨尔温江上游的林巴塔相同或接近。时间树表明,C. harcourtbutleri在更新世早期与C. limbata发生分化,在更新世晚期与C. limbata发生二次接触。在遗传和形态上的分化表明,对不同环境的局部适应对其两种形态的共存和一定程度的生殖隔离起着重要作用。此外,研究结果强调了在长期、适度隔离的环境中,多重定植和异域物种形成在塑造生物多样性方面的重要性。
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Origin of endemic species in a moderately isolated ancient lake: The case of a snakehead in Inle Lake, Myanmar
Abstract Inle Lake is an ancient lake in Myanmar, which is an important area with unique and diverse fauna. Its ichthyofauna is believed to have formed non‐radiatively, but the historical processes are poorly understood. To elucidate the mechanisms that shape species diversity in this moderately isolated biogeographical ‘island’, this study focused on a typical endemic fish of Inle Lake, Channa harcourtbutleri (Channidae, Anabantiformes), with its widely distributed sister species, C. limbata , and estimated the historical distribution and diversification processes of the endemic fish based on genome‐wide polymorphism (MIG‐seq) and mitochondrial DNA data. Channa harcourtbutleri contained two genetically and morphologically distinct groups inhabiting Inle Lake and the surrounding rivers respectively. These two groups were genetically the closest to each other; however, the riverine group showed some similarity to the closely related species, C. limbata from Southeast Asia. The mtDNA haplotypes of the endemic species were not monophyletic; most of the riverine group had haplotypes identical or close to those of C. limbata from the upper Irrawaddy and Salween rivers. The time tree suggested that C. harcourtbutleri diverged from C. limbata in the early Pleistocene and then experienced secondary contact with C. limbata in the late Pleistocene. Genetic and morphological differentiation within C. harcourtbutleri suggests that local adaptation to different environments has played an important role for the coexistence of its two forms with some reproductive isolation. Further, the results highlight the importance of multiple colonization and allopatric speciation in shaping biodiversity in the long‐term, moderately isolated environments.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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