德尔塔气味分子病原体筛选方法的研究

Q3 Agricultural and Biological Sciences San Francisco Estuary and Watershed Science Pub Date : 2022-03-17 DOI:10.15447/sfews.2022v20iss20art4
D. Gille, Bryan T. Barney, A. Segarra, M. Baerwald, Andrea Schreier, R. Connon
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引用次数: 0

摘要

病原体监测必须是保护受威胁和濒危物种的任何种群补充或重新引入计划的一部分。病原体的意外传播可能会对这些已经处于危险之中的人群或整个自然生态系统产生毁灭性影响。在旧金山河口(河口),地方性三角洲气味(Hypomesus transpacificus)的丰富程度已经下降到监管管理人员正准备利用孵化场繁殖的鱼类来增加野生种群,以防止物种灭绝。尽管疾病不是人口下降的明显原因,但缺乏全面的病原体存在和流行率数据。在这里,我们进行了一项试点研究,应用最初在鲑鱼中开发的分子分析法来评估部署在河口围栏中的养殖和野生三角洲气味鱼以及养殖鱼类的鳃组织中是否存在多种病原体。我们发现这些检测方法具有高度敏感性,并在13%的培养的德尔塔嗅觉中观察到单一病原体——多发性鱼鳞病的阳性检测。我们还在培养的、部署的围栏和野生三角洲气味中检测到了其他十种非常低水平的病原体,这些病原体可能代表了河口的环境病原体组成(而不是实际感染)。我们的研究结果证实了之前的研究,即在种群补充或重新引入期间,培养的德尔塔气味似乎不会带来高风险的病原体传播。然而,这里测试的分子病原体筛查试验作为早期预警系统指标具有很大的实用性,可以指示何时可能需要进一步的诊断测试来限制疾病爆发的程度和频率;一旦为德尔塔冶炼厂定制,其效用将进一步提高。
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Investigation of Molecular Pathogen Screening Assays for Use in Delta Smelt
Pathogen surveillance must be part of any population supplementation or reintroduction program for the conservation of threatened and endangered species. The unintended transmission of pathogens can have devastating effects on these already at-risk populations or the natural ecosystem at large. In the San Francisco Estuary (estuary), abundance of the endemic Delta Smelt (Hypomesus transpacificus) has declined to the point where regulatory managers are preparing to augment the wild population using fish propagated in a hatchery to prevent species extinction. Although disease is not an overt cause of population decline, comprehensive pathogen presence and prevalence data are lacking. Here, we performed a pilot study that applied molecular assays originally developed in salmonids to assess the presence of a wide variety of pathogens in the gill tissue of cultured and wild Delta Smelt—as well as cultured fish—deployed in enclosures in the estuary. We found the assays to be highly sensitive, and observed positive detections of a single pathogen, Ichthyophthirius multifiliis, in 13% of cultured Delta Smelt. We also detected ten other pathogens at very low levels in cultured, enclosure-deployed, and wild Delta Smelt that likely represent the ambient pathogen composition in the estuary (as opposed to actual infection). Our results corroborate previous work that cultured Delta Smelt do not appear to present a high risk for pathogen transmission during population supplementation or reintroduction. However, the molecular pathogen screening assays tested here have great utility as an early warning system indicator of when further diagnostic testing might be necessary to limit the extent and frequency of disease outbreaks; their utility will be further increased once they are customized for Delta Smelt.
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来源期刊
San Francisco Estuary and Watershed Science
San Francisco Estuary and Watershed Science Environmental Science-Water Science and Technology
CiteScore
2.90
自引率
0.00%
发文量
24
审稿时长
24 weeks
期刊最新文献
Regional Diversity Trends of Nearshore Fish Assemblages of the Upper San Francisco Estuary Sub-Lethal Responses of Delta Smelt to Contaminants Under Different Flow Conditions Spatial Patterns of Water Supply and Use in California Managed Wetlands for Climate Action: Potential Greenhouse Gas and Subsidence Mitigation in the Sacramento–San Joaquin Delta Proofing Field and Laboratory Species Identification Procedures Developed for the Non-Native Osmerid Species Wakasagi (Hypomesus nipponensis) Using SHERLOCK-Based Genetic Verification
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