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Temporal change in the spatial distribution of visual organic enrichment indicators at aquaculture sites in Newfoundland, Canada

机译:加拿大纽芬兰水产养殖场地视觉有机浓缩指标空间分布的时间变化

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Growing salmon in sea cages results in the deposition of uneaten feed and wastes which can smother organisms, increase biological oxygen demand, and alter seafloor communities. At some sites with mainly hard-bottom substrates, opportunistic annelids and mat-forming bacteria are used as visual indicators of aquaculture waste and are monitored via drop camera imaging. Additionally, high organic matter sedimentation rates can result in the proliferation of microbes that release gas; this offgassing could also serve as a useful visual enrichment indicator. Little is known of how the distribution of opportunistic annelids, microbial mats, and offgassing might change over time and space, although coverage has important repercussions in some regulatory schemes. Here, we explore spatiotemporal distributions of offgassing, bacterial mats, annelids, and epibenthic taxon richness based on existing video-monitoring data collected along transects at four Newfoundland aquaculture sites in 2011-2012. A high degree of spatial and temporal patchiness was observed at both fallow and production sites, and combinations of time, transect, and distance to cage explained the distribution of bacterial mats, annelids, and taxon richness. Expected successional patterns resulting from organic enrichment or remediation were evident in some patches. Offgassing was observed only at fallow sites and may signal a distinct and persistent phase in organic matter degradation. Results highlight the spatial heterogeneity of benthic organic enrichment indicators across transects at Newfoundland aquaculture sites, with indicators appearing to form a mosaic of patches undergoing different stages of enrichment or recovery.
机译:在海上饲养的生长鲑鱼会导致膨胀的饲料和废物沉积,这些饲料和废物可以扼杀生物,增加生物需氧量,并改变海底社区。在一些具有主要硬底底物的某些地点,机会化的环形和形成的细菌被用作水产养殖废物的视觉指标,并通过掉落摄像头成像监测。另外,高有机质沉降率可导致释放气体的微生物的增殖;这种防涂剂也可以作为有用的视觉富集指标。虽然覆盖范围在某些监管计划中具有重要影响,但众所周知,如何随着时间和空间的分布而变化可能会发生变化。在这里,我们根据在2011-2012在2011-2012的四个纽芬兰水产养殖网站横断面收集的现有视频监测数据,探索过废气,细菌垫,环形和emibenthic分类的素质分布。在休耕和生产地点观察到高度的空间和时间斑块,以及时间,横断和笼的距离的组合解释了细菌垫,环形和分类机构的分布。在某些贴片中,有机富集或修复产生的预期成功模式是显而易见的。仅在休耕部位观察过氮化物,并且可以在有机物质降解中发出不同和持续的相位。结果突出了纽芬兰水产养殖网站横跨横断面的底栖有机富集指标的空间异质性,具有似乎形成富集或恢复阶段的斑块的马赛克。

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