水产养殖中导致鳃病的微生物相互作用

Emma O’Halloran, R. Mooney, K. Rodgers, F. Henriquez
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引用次数: 1

摘要

人口的快速增长导致对现成食物来源的需求增加。水产养殖业是维持粮食供应的基本来源;然而,为了满足供应需求,它承受着越来越大的压力。因此,对养殖水生生物的养殖产生负面影响的限制因素至关重要。Gill病是一个日益引起关注的领域,导致养殖鱼类大量损失。已知几种微生物病原体会导致鳃病,在许多情况下,多种病原体或因素可能与该疾病有关,从而导致复杂的鳃病(CGD)。混合感染在鳃疾病中的作用在很大程度上是未知的,因此这篇综述旨在检查以前感染的数据,并强调可能参与鳃疾病的各种微生物。鉴于物理化学极端与众多微生物鳃病原体之间的密切联系,还讨论了CGD背景下气候变化的影响。了解这些因素将有助于改进诊断和治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microbial Interactions That Contribute to Gill Disease in Aquaculture
The rapid growth in the human population has led to an increased requirement for readily available food sources. The aquaculture industry is a fundamental source for maintaining food supplies; however, it is subjected to mounting pressures to meet supply demands. Thus, limiting factors that negatively impact the cultivation of farmed aquatic organisms is essential. Gill disease is an increasing area of concern, resulting in substantial losses in farmed fish. Several microbial pathogens are known to cause gill disease and, in many instances, multiple pathogens or factors can be involved in the disease, resulting in complex gill disease (CGD). The role of mixed infections in gill disease is largely unknown, as such this review aims to examine data on previous infections and highlight the variety of microbes that might be involved in gill disease. The influence of climate change in the context of CGD is also discussed given the strong links between physicochemical extremes and numerous microbial gill pathogens. Understanding these factors will allow for improved diagnostic and therapeutic strategies to be implemented.
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CiteScore
1.70
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