Species and genetic diversity relationships in benthic macroinvertebrate communities along a salinity gradient.

H Cecilie Petersen, Benni W Hansen, K Emily Knott, Gary T Banta
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引用次数: 1

Abstract

Background: Species- and genetic diversity can change in parallel, resulting in a species-genetic diversity correlation (SGDC) and raising the question if the same drivers influence both biological levels of diversity. The SGDC can be either positive or negative, depending on whether the species diversity and the genetic diversity of the measured species respond in the same or opposite way to drivers. Using a traditional species diversity approach together with ultra-conserved elements and high throughput sequencing, we evaluated the SGDCs in benthic macrofauna communities in the Baltic Sea, a geologically young brackish water sea characterised by its steep salinity gradient and low species richness. Assessing SGDCs from six focal marine invertebrate species from different taxonomic groups and with differing life histories and ecological functions on both a spatial and temporal scale gives a more comprehensive insight into the community dynamics of this young ecosystem and the extrinsic factors that might drive the SGDCs.

Results: No significant correlations between species diversity and genetic diversity were found for any of the focal species. However, both negative and positive trends of SGDCs for the individual focal species were observed. When examining the environmental drivers, no common trends between the species were found, even when restricting the analysis to specific taxonomic classes. Additionally, there were no common environmental factors driving the diversity relationships for species sharing the same SGDC trend (positive or negative). Local population dynamics, together with the invasion history of the individual species and their unique adaptation to the distinctive environment of the Baltic Sea, are expected to be of major influence on the outcome of the SGDCs.

Conclusions: The present results highlight the importance of assessing SGDCs using multiple species, not just a single indicator species. This emphasises a need to pay attention to the ecology and life history of the focal species. This study also provides insight into the large differences in both patterns and drivers of genetic diversity, which is important when including genetic biodiversity in conservation plans. We conclude that the effects of environmental and biological factors and processes that affects diversity patterns at both the community and genetic levels are likely species dependent, even in an environment such as the Baltic Sea with strong environmental gradients.

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大型底栖无脊椎动物群落沿盐度梯度的物种和遗传多样性关系。
背景:物种多样性和遗传多样性可以并行变化,导致物种-遗传多样性相关性(SGDC),并提出了相同驱动因素是否影响两种生物多样性水平的问题。SGDC可以是正的,也可以是负的,这取决于被测物种的物种多样性和遗传多样性对驱动因素的反应是相同的还是相反的。利用传统的物种多样性方法,结合超保守元素和高通量测序,我们评估了波罗的海底栖大型动物群落的sgdc。波罗的海是一个地质年轻的咸水海,其特征是盐度梯度大,物种丰富度低。在空间和时间尺度上对来自不同分类类群、具有不同生活史和生态功能的6种重点海洋无脊椎动物的sgdc进行评估,可以更全面地了解这个年轻生态系统的群落动态以及可能驱动sgdc的外部因素。结果:所有焦点种的物种多样性与遗传多样性均无显著相关。然而,个别焦点物种的sgdc呈负向和正向趋势。在研究环境驱动因素时,即使将分析限制在特定的分类类别上,也没有发现物种之间的共同趋势。此外,没有共同的环境因子驱动具有相同SGDC趋势的物种的多样性关系(正或负)。预计当地种群动态、单个物种的入侵历史以及它们对波罗的海独特环境的独特适应,将对生物多样性评估的结果产生重大影响。结论:目前的结果强调了使用多个物种来评估sgdc的重要性,而不仅仅是单一的指标物种。这强调需要关注焦点物种的生态和生活史。这项研究还提供了对遗传多样性模式和驱动因素的巨大差异的见解,这对于将遗传多样性纳入保护计划非常重要。我们的结论是,即使在波罗的海这样具有强环境梯度的环境中,影响群落和遗传水平多样性格局的环境和生物因素和过程的影响也可能是物种依赖的。
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