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Differences in Life-Histories Refute Ecological Equivalence of Cryptic Species and Provide Clues to the Origin of Bathyal Halomonhystera (Nematoda)

机译:生命历史上的差异反驳了隐性物种的生态等效性并提供了对深蓝卤虫(线虫)起源的线索

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摘要

The discovery of morphologically very similar but genetically distinct species complicates a proper understanding of the link between biodiversity and ecosystem functioning. Cryptic species have been frequently observed to co-occur and are thus expected to be ecological equivalent. The marine nematode Halomonhystera disjuncta contains five cryptic species (GD1-5) that co-occur in the Westerschelde estuary. In this study, we investigated the effect of three abiotic factors (salinity, temperature and sulphide) on life-history traits of three cryptic H. disjuncta species (GD1-3). Our results show that temperature had the most profound influence on all life-cycle parameters compared to a smaller effect of salinity. Life-history traits of closely related cryptic species were differentially affected by temperature, salinity and presence of sulphides which shows that cryptic H. disjuncta species are not ecologically equivalent. Our results further revealed that GD1 had the highest tolerance to a combination of sulphides, high salinities and low temperatures. The close phylogenetic position of GD1 to Halomonhystera hermesi, the dominant species in sulphidic sediments of the Håkon Mosby mud volcano (Barent Sea, 1280 m depth), indicates that both species share a recent common ancestor. Differential life-history responses to environmental changes among cryptic species may have crucial consequences for our perception on ecosystem functioning and coexistence of cryptic species.
机译:在形态上非常相似但在遗传上不同的物种的发现使对生物多样性与生态系统功能之间的联系的正确理解变得复杂。经常发现隐性物种同时存在,因此有望成为生态等同物种。海洋线虫Halomonhystera disjuncta包含在Westerschelde河口共存的五个隐性物种(GD1-5)。在这项研究中,我们调查了三种非生物因素(盐度,温度和硫化物)对三种隐性分离粪链球菌(GD1-3)的生活史特征的影响。我们的结果表明,与盐度的影响相比,温度对所有生命周期参数的影响最大。温度,盐度和硫化物的存在对密切相关的隐性物种的生活史特征产生不同的影响,这表明隐性解节菌在生态学上并不等同。我们的结果进一步表明,GD1对硫化物,高盐度和低温的组合具有最高的耐受性。 GD1在HåkonMosby泥火山(Barent Sea,深度1280 m)的硫化物沉积物中的优势种Halmonmonsterstera hermesi的近缘系统发育位置,表明这两个物种具有最近的共同祖先。隐性物种对环境变化的不同生活史响应可能会对我们对生态系统功能和隐性物种共存的感知产生至关重要的影响。

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