虹鳟鱼petauri乳球菌菌株的温度相关毒力、物种易感性和种间传播。

IF 1.1 4区 农林科学 Q3 FISHERIES
Eric Maxwell Littman, Taylor I Heckman, Zeinab Yazdi, Tresa Veek, Kaveramma Mukkatira, Mark Adkison, Ashley Powell, Alvin Camus, Esteban Soto
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引用次数: 0

摘要

petauri乳球菌是美国重要的新兴水产养殖病原体。为了更好地了解有利于鱼乳球菌病的环境条件和鱼类的易感性,采用实验室控制的挑战作为感染模型。将维持在13或18°C的虹鳟(Oncorhynchus mykiss)进行卵腔内(ICe)注射,每条鱼有101、103或105个菌落形成单位(CFU鱼-1),并监测21 d。在13°C时,鳟鱼的死亡率分别为7%、7%和0%,幸存者的细菌持久性分别为0%、20%和0%。当暴露于相同细菌剂量时,保持在18°C的鳟鱼的死亡率分别为59%、84%和91%,幸存者的细菌持久性分别为60%、66%和0%,证实了温度在乳球菌病发病机制中的重要作用。此外,在18°C的冰激淋条件下,比较了虹鳟鱼、奇努克鲑鱼Oncorhynchus tshawytscha、白鲟acpenser transmontanus、尼罗罗非鱼Oreochromis niloticus和鲤鱼鲤对L. petauri感染的敏感性。鳟鱼和鲑鱼的累计死亡率分别为96%和56%,存活的鲑鱼中有17%仍然持续感染。其他鱼类没有死亡,在挑战结束时没有可培养的细菌恢复。然而,当将存活的鱼用于进一步的同居试验时,naïve鳟鱼与先前暴露的罗非鱼一起饲养,显示出6%的死亡率,表明非鲑科鱼类可以成为这种病原体的亚临床携带者。获得的数据提供了有关温度相关毒力、鱼类易感性和潜在载体传播的有用信息,可用于制定更好的管理措施,以防止鱼类乳球菌病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature-associated virulence, species susceptibility and interspecies transmission of a Lactococcus petauri strain from rainbow trout.

Lactococcus petauri is an important emergent aquaculture pathogen in the USA. To better understand environmental conditions conducive to piscine lactococcosis and the susceptibility of fish species, laboratory-controlled challenges were used as models of infection. Rainbow trout Oncorhynchus mykiss maintained at 13 or 18°C were challenged by intracoelomic (ICe) injection with 101, 103 or 105 colony-forming units per fish (CFU fish-1) and monitored for 21 d. At 13°C, trout experienced mortalities of 7, 7 and 0%, and bacterial persistence of 0, 20 and 0% in survivors, respectively. When exposed to the same bacterial doses, trout maintained at 18°C experienced mortalities of 59, 84 and 91%, and bacterial persistence of 60, 66 and 0% in survivors, confirming a significant role of temperature in the pathogenesis of lactococcosis. Additionally, the susceptibility of rainbow trout, Chinook salmon Oncorhynchus tshawytscha, white sturgeon Acipenser transmontanus, Nile tilapia Oreochromis niloticus, and koi Cyprinus carpio to infection by L. petauri was compared using ICe challenges at 18°C. Trout and salmon experienced 96 and 56% cumulative mortality, respectively, and 17% of surviving salmon remained persistently infected. There were no mortalities in the other fish species, and no culturable bacteria recovered at the end of the challenge. However, when surviving fish were used in further cohabitation trials, naïve trout housed with previously exposed tilapia exhibited 6% mortality, demonstrating that non-salmonids can become sub-clinical carriers of this pathogen. The data obtained provide useful information regarding temperature-associated virulence, fish species susceptibility, and potential carrier transmission of L. petauri that can be used in the development of better management practices to protect against piscine lactococcosis.

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来源期刊
Diseases of aquatic organisms
Diseases of aquatic organisms 农林科学-兽医学
CiteScore
3.10
自引率
0.00%
发文量
53
审稿时长
8-16 weeks
期刊介绍: DAO publishes Research Articles, Reviews, and Notes, as well as Comments/Reply Comments (for details see DAO 48:161), Theme Sections and Opinion Pieces. For details consult the Guidelines for Authors. Papers may cover all forms of life - animals, plants and microorganisms - in marine, limnetic and brackish habitats. DAO''s scope includes any research focusing on diseases in aquatic organisms, specifically: -Diseases caused by coexisting organisms, e.g. viruses, bacteria, fungi, protistans, metazoans; characterization of pathogens -Diseases caused by abiotic factors (critical intensities of environmental properties, including pollution)- Diseases due to internal circumstances (innate, idiopathic, genetic)- Diseases due to proliferative disorders (neoplasms)- Disease diagnosis, treatment and prevention- Molecular aspects of diseases- Nutritional disorders- Stress and physical injuries- Epidemiology/epizootiology- Parasitology- Toxicology- Diseases of aquatic organisms affecting human health and well-being (with the focus on the aquatic organism)- Diseases as indicators of humanity''s detrimental impact on nature- Genomics, proteomics and metabolomics of disease- Immunology and disease prevention- Animal welfare- Zoonosis
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