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南极沉积物中两种具有不同栖息地偏好的海洋线虫的明显遗传分化和物种多样化。

Distinct genetic differentiation and species diversification within two marine nematodes with different habitat preference in Antarctic sediments.

作者信息

Hauquier Freija, Leliaert Frederik, Rigaux Annelien, Derycke Sofie, Vanreusel Ann

机构信息

Marine Biology Research Group, Biology Department, Ghent University, Krijgslaan 281, 9000, Ghent, Belgium.

Botanic Garden Meise, Nieuwelaan 38, 1860, Meise, Belgium.

出版信息

BMC Evol Biol. 2017 May 30;17(1):120. doi: 10.1186/s12862-017-0968-1.

Abstract

BACKGROUND

Dispersal ability, population genetic structure and species divergence in marine nematodes are still poorly understood, especially in remote areas such as the Southern Ocean. We investigated genetic differentiation of species and populations of the free-living endobenthic nematode genera Sabatieria and Desmodora using nuclear 18S rDNA, internal transcribed spacer (ITS) rDNA, and mitochondrial cytochrome oxidase I (COI) gene sequences. Specimens were collected at continental shelf depths (200-500 m) near the Antarctic Peninsula, Scotia Arc and eastern side of the Weddell Sea. The two nematode genera co-occurred at all sampled locations, but with different vertical distribution in the sediment. A combination of phylogenetic (GMYC, Bayesian Inference, Maximum Likelihood) and population genetic (AMOVA) analyses were used for species delimitation and assessment of gene flow between sampling locations.

RESULTS

Sequence analyses resulted in the delimitation of four divergent species lineages in Sabatieria, two of which could not be discriminated morphologically and most likely constitute cryptic species. Two species were recognised in Desmodora, one of which showed large intraspecific morphological variation. Both genera comprised species that were restricted to one side of the Weddell Sea and species that were widely spread across it. Population genetic structuring was highly significant and more pronounced in the deeper sediment-dwelling Sabatieria species, which are generally less prone to resuspension and passive dispersal in the water column than surface Desmodora species.

CONCLUSIONS

Our results indicate that gene flow is restricted at large geographic distance in the Southern Ocean, which casts doubt on the efficiency of the Weddell gyre and Antarctic Circumpolar Current in facilitating circum-Antarctic nematode species distributions. We also show that genetic structuring and cryptic speciation can be very different in nematode species isolated from the same geographic area, but with different habitat preferences (surface versus deeper sediment layers).

摘要

背景

海洋线虫的扩散能力、种群遗传结构和物种分化仍未得到充分了解,尤其是在南大洋等偏远地区。我们使用核18S rDNA、内转录间隔区(ITS)rDNA和线粒体细胞色素氧化酶I(COI)基因序列,研究了自由生活的底栖内寄生线虫属萨巴蒂埃线虫属(Sabatieria)和德斯莫多拉线虫属(Desmodora)的物种和种群的遗传分化。样本采集于南极半岛、斯科舍弧和威德尔海东侧大陆架深度(200-500米)处。这两个线虫属在所有采样地点均共存,但在沉积物中的垂直分布不同。系统发育分析(GMYC、贝叶斯推断、最大似然法)和种群遗传分析(AMOVA)相结合,用于物种界定和评估采样地点之间的基因流动。

结果

序列分析确定了萨巴蒂埃线虫属中的四个不同物种谱系,其中两个在形态上无法区分,很可能是隐性物种。在德斯莫多拉线虫属中识别出两个物种,其中一个表现出较大的种内形态变异。两个属都包括局限于威德尔海一侧的物种和广泛分布于威德尔海的物种。种群遗传结构非常显著,在生活于较深层沉积物中的萨巴蒂埃线虫属物种中更为明显,这些物种通常比表层的德斯莫多拉线虫属物种更不容易在水柱中被重新悬浮和被动扩散。

结论

我们的结果表明,南大洋中基因流动在大地理距离上受到限制,这对威德尔环流和南极绕极流促进南极线虫物种分布的效率提出了质疑。我们还表明,从同一地理区域分离但具有不同栖息地偏好(表层与较深层沉积层)的线虫物种,其遗传结构和隐性物种形成可能非常不同。

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