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ARS Home » Southeast Area » Auburn, Alabama » Aquatic Animal Health Research » Research » Publications at this Location » Publication #423922

Research Project: Integrated Research to Improve Aquatic Animal Health in Warmwater Aquaculture

Location: Aquatic Animal Health Research

Title: Something fishy! The difficulties of diagnosing piscine Lactococcosis

Author
item HECKMAN, TAYLOR - University Of California, Davis
item YAZDI, ZEINAB - University Of California, Davis
item Older, Caitlin
item GRIFFIN, MATT - Mississippi State University
item Waldbieser, Geoffrey
item CHOW, ALEXANDER - University Of California, Davis
item SILVA, ISABELLA - University Of California, Davis
item ANENSON, KELSEY - University Of California, Davis
item Garcia, Julio
item Lafrentz, Benjamin
item SLAVIC, DURDA - University Of Guelph
item TOOHEY-KURTH, KATHY - University Of California, Davis
item YANT, PAULA - University Of California, Davis
item FRITZ, HEATHER - University Of California, Davis
item HENDERSON, EILEEN - University Of California, Davis
item ADKINSON, MARK - California Department Of Fish & Game
item SOTO, ESTEBAN - University Of California, Davis

Submitted to: Aquaculture America
Publication Type: Abstract Only
Publication Acceptance Date: 1/19/2024
Publication Date: 2/18/2024
Citation: Heckman, T.I., Yazdi, Z., Older, C.E., Griffin, M.J., Waldbieser, G.C., Chow, A.M., Silva, I.M., Anenson, K.M., Garcia, J.C., Lafrentz, B.R., Slavic, D., Toohey-Kurth, K.L., Yant, P., Fritz, H.M., Henderson, E.E., Adkinson, M., Soto, E. 2024. Something fishy! The difficulties of diagnosing piscine Lactococcosis. Aquaculture America [ABSTRACT]. Aquaculture America 2024, San Antonio, Texas. Feb. 18-21, 2024

Interpretive Summary:

Technical Abstract: Piscine lactococcosis is a significant emerging threat to wild and cultured fish in the United States. A wide range of hosts are susceptible, including fish from cold, temperate, and warm environments in freshwater or marine systems, as well as humans and other terrestrial animals. The disease in an established issue in European and Asian aquaculture but is rapidly encroaching on ecologically and economically important fish populations in the Americas. Lactococcosis typically presents as a hemorrhagic septicemia causing high mortality rates. Antimicrobial treatment often fails, and development of carrier fish or biofilm formation may lead to recurrent outbreaks. Historically, the disease was attributed to the gram-positive pathogen Lactococcus garvieae. However, recent work revealed there are three distinct agents of piscine lactococcosis – L. garvieae, L. petauri and L. formosensis – which are phenotypically and genetically similar, leading to widespread misdiagnosis. While the three species overlap in host and geographic range, there are relevant differences in host-specific virulence, regional prevalence and antimicrobial susceptibility that impact the success of management interventions. Practical and reliable methods for diagnosis of the specific lactococcosis agents is therefore crucial for implementing appropriate preventative and treatment strategies. To this end, we compared currently available and recently developed diagnostic methods for their ability to distinguish isolates to the species level, including single and multi-locus gene sequencing, end-point and quantitative PCR (qPCR) assays, matrixassisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS), fatty acid methyl ester analysis (FAME), and API® and Biolog™ systems. Sequencing of the gyrB gene was the most accurate and discriminatory single-gene analysis method (Fig. 1). A qPCR assay based on a putative glycosyltransferase gene was also able to specifically distinguish L. petauri. Biochemical tests and MALDI-TOF MS showed some species-specific patterns in sugar, fatty acid metabolism or protein profiles, but should be complimented by additional analysis. This work provides direct recommendations for specific diagnosis of piscine lactococcosis for improved disease management