University of Kaiserslautern, Ecology Group, D-67663 Kaiserslautern, Germany.
University of Kaiserslautern, Ecology Group, D-67663 Kaiserslautern, Germany.
Mar Pollut Bull. 2018 Feb;127:139-149. doi: 10.1016/j.marpolbul.2017.11.065. Epub 2017 Dec 6.
We evaluated benthic bacterial communities as bioindicators in environmental impact assessments of salmon aquaculture, a rapidly growing sector of seafood industry. Sediment samples (n=72) were collected from below salmon cages towards distant reference sites. Bacterial community profiles inferred from DNA metabarcodes were compared to reference data from standard macrofauna biomonitoring surveys of the same samples. Deltaproteobacteria were predominant in immediate vicinity of the salmon cages. Along the transect, significant shifts in bacterial community structures were observed with Gammaproteobacteria dominating the less-impacted sites. Alpha- and beta-diversity measures of bacterial communities correlated significantly with macrofauna diversity metrics and with five ecological status indices. Benthic bacterial communities mirror the reaction of macrofauna bioindicators to environmental disturbances caused by salmon farming. The implementation of bacterial eDNA metabarcoding in future Strategic Framework Directives is an alternative cost-effective high-throughput biomonitoring solution, providing a basis for management strategies in a matter of days rather than months.
我们评估了底栖细菌群落作为鲑鱼养殖环境影响评估中的生物指标,鲑鱼养殖是海鲜产业中一个快速发展的领域。从鲑鱼笼下方采集了 72 个沉积物样本,并将其与来自同一样本的标准大型动物生物监测调查的参考数据进行了比较。在鲑鱼笼附近,δ变形菌是主要的优势菌。沿着这条线,观察到细菌群落结构发生了显著变化,γ变形菌在受影响较小的地方占主导地位。细菌群落的α和β多样性与大型动物多样性指标以及五个生态状况指数显著相关。底栖细菌群落反映了大型动物生物指标对鲑鱼养殖引起的环境干扰的反应。在未来的战略框架指令中实施细菌 eDNA metabarcoding 是一种替代的具有成本效益的高通量生物监测解决方案,为管理策略提供了基础,可以在几天内而不是几个月内完成。