4.7 Article

Disentangling the environmental processes responsible for the world's largest farmed fish-killing harmful algal bloom: Chile, 2016

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 766, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2020.144383

关键词

Pseudochattonella verruculosa; Life cycle; Thin layer; Ichthyotoxicity; Fish mortality; Mitigation strategies

资金

  1. Instituto de Fomento Pesquero (IFOP) [MR656-129, CORFO 480-018]
  2. Woods Hole Center for Oceans and Human Health (National Science Foundation grant) [OCE-1840381]
  3. Woods Hole Center for Oceans and Human Health (National Institutes of Health grants) [NIEHS-1P01-ES028938-01]

向作者/读者索取更多资源

The Pseudochattonella verruculosa led to the largest farmed fish mortality ever recorded in the world, causing losses of US$ 800 M for the Chilean salmon industry in 2016. Strong climatic anomalies resulted in vertical water column stratification, promoting development of a dynamic P. verruculosa thin layer. The algal cell densities were high and contained potentially harmful fatty acids, which may have contributed to the fish mortality.
The dictyochophyte microalga Pseudochattonella verruculosa was responsible for the largest farmed fish mortality ever recorded in the world, with losses for the Chilean salmon industry amounting to US$ 800 M in austral summer 2016. Super-scale climatic anomalies resulted in strong vertical water column stratification that stimulated development of a dynamic P. verruculosa thin layer (up to 38 mu g chl a L-1) for several weeks in Reloncavi Sound. Hydrodynamic modeling (MIKE 3D) indicated that the Sound had extremely low flushing rates (between 121 and 200 days) in summer 2016. Reported algal cell densities of 7000-20,000 cells mL(-1) generated respiratory distress in fish that was unlikely due to low dissolved oxygen (permanently >4 mg L-1). Histological examination of salmon showed that gills were the most affected organ with significant tissue damage and circulatory disorders. It is possible that some of this damage was due to a diatom bloom that preceded the Pseudochattonella event, thereby rendering the fish more susceptible to Pseudochattonella. No correlation between magnitude of fish mortality and algal cell abundance nor fish age was evident. Algal cultures revealed rapid growth rates and high cell densities (up to 600,000 cells mL(-1)), as well as highly complex life cycle stages that can be easily overlooked in monitoring programs. In cell-based bioassays, Chilean P. verruculosa was only toxic to the RTgillWI cell line following exposures to high cell densities of lysed cells (>100,000 cells mL(-1)). Fatty acid profiles of a cultured strain showed elevated concentrations of potentially ichthyotoxic, long-chain polyunsaturated fatty acids (PUFAs) (69.7% +/- 1.8%)- stearidonic (SDA, 18:4 omega 3-28.9%), and docosahexaenoic add (DHA, 22:6 omega 3-22.3%), suggesting that lipid peroxidation may help to explain the mortalities, though superoxide production by Pseudochattonella was low (< 0.21 +/- 0.19 pmol O-2(-) cell(-1) h(-1)). It therefore remains unknown what the mechanisms of salmon mortality were during the Pseudochattonella bloom. Multiple mitigation strategies were used by salmon farmers during the event, with only delayed seeding of juvenile fish into the cages and towing of cages to sanctuary sites being effective. Airlift pumping, used effectively against other fish-killing HABs in the US and Canada was not effective, perhaps because it brought subsurface layers of Pseudochattonella to the surface, or and it also may have lysed the fragile cells, rendering them more lethal. The present study highlights knowledge gaps and inefficiency of contingency plans by the fish farming industry to overcome future fish-killing algal blooms under future climate change scenarios. The use of new technologies based on molecular methods for species detection, good farm practices by fish farms, and possible mitigation strategies are discussed. (C) 2020 Elsevier B.V. All rights reserved. reserved.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据