Department of Integrative Marine Ecology, Stazione Zoologica Anton Dohrn, Villa Comunale , Naples 80121, Italy.
DiSTAV, Department of Earth, Environment and Life Sciences, University of Genoa, Corso Europa 26 , Genoa 16132, Italy.
Philos Trans R Soc Lond B Biol Sci. 2024 Aug 26;379(1908):20230178. doi: 10.1098/rstb.2023.0178. Epub 2024 Jul 22.
Environmental DNA metabarcoding (eDNA metaB) is fundamental for monitoring marine biodiversity and its spread in coastal ecosystems. We applied eDNA metaB to seawater samples to investigate the spatiotemporal variability of plankton and small pelagic fish, comparing sites with different environmental conditions across a coast-to-offshore gradient at river mouths along the Campania coast (Italy) over 2 years (2020-2021). We found a marked seasonality in the planktonic community at the regional scale, likely owing to the hydrodynamic connection among sampling sites, which was derived from numerical simulations. Nonetheless, spatial variability among plankton communities was detected during summer. Overall, slight changes in plankton and fish composition resulted in the potential reorganization of the pelagic food web at the local scale. This work supports the utility of eDNA metaB in combination with hydrodynamic modelling to study marine biodiversity in the water column of coastal systems. This article is part of the theme issue 'Connected interactions: enriching food web research by spatial and social interactions'.
环境 DNA 宏条形码 (eDNA 宏条形码) 是监测海洋生物多样性及其在沿海生态系统中传播的基础。我们应用 eDNA 宏条形码对海水样本进行分析,以调查浮游生物和小型洄游鱼类的时空变化,比较了意大利坎帕尼亚海岸河口沿岸到近海梯度上不同环境条件的地点,时间跨度为 2 年(2020-2021 年)。我们在区域尺度上发现浮游生物群落具有明显的季节性,这可能是由于采样点之间的水动力联系,这是通过数值模拟得出的。尽管如此,在夏季还是检测到了浮游生物群落之间的空间变异性。总的来说,浮游生物和鱼类组成的细微变化导致了局部尺度上的洄游食物网的潜在重组。这项工作支持了 eDNA 宏条形码与水动力模型相结合,用于研究沿海系统水柱中海洋生物多样性的实用性。本文是主题为“关联相互作用:通过空间和社会相互作用丰富食物网研究”的一部分。