Monitoring and managing microbes in aquaculture – Towards a sustainable industry
Summary Microorganisms are of great importance to aquaculture where they occur naturally, and can be added artificially, fulfilling different roles. They recycle nutrients, degrade organic matter and, occasionally, they infect and kill the fish, their larvae or the live feed. Also, some microorganis...
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Veröffentlicht in: | Microbial Biotechnology 2016-09, Vol.9 (5), p.576-584 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Summary
Microorganisms are of great importance to aquaculture where they occur naturally, and can be added artificially, fulfilling different roles. They recycle nutrients, degrade organic matter and, occasionally, they infect and kill the fish, their larvae or the live feed. Also, some microorganisms may protect fish and larvae against disease. Hence, monitoring and manipulating the microbial communities in aquaculture environments hold great potential; both in terms of assessing and improving water quality, but also in terms of controlling the development of microbial infections. Using microbial communities to monitor water quality and to efficiently carry out ecosystem services within the aquaculture systems may only be a few years away. Initially, however, we need to thoroughly understand the microbiomes of both healthy and diseased aquaculture systems, and we need to determine how to successfully manipulate and engineer these microbiomes. Similarly, we can reduce the need to apply antibiotics in aquaculture through manipulation of the microbiome, i.e. by the use of probiotic bacteria. Recent studies have demonstrated that fish pathogenic bacteria in live feed can be controlled by probiotics and that mortality of infected fish larvae can be reduced significantly by probiotic bacteria. However, the successful management of the aquaculture microbiota is currently hampered by our lack of knowledge of relevant microbial interactions and the overall ecology of these systems.
In aquaculture, which is the fastest food‐producing sector in the world, microorganisms play pivotal roles. Through the advancement of our understanding of the ecology and the microbial interactions taking place in these systems, we will likely be able to increase yield and sustainability of the industry in the years to come. |
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ISSN: | 1751-7915 1751-7915 |
DOI: | 10.1111/1751-7915.12392 |