DOI: https://doi.org/10.3354/dao03634
copiedElectron microscopy reveals viral-like particles and mitochondrial degradation in scombrid puffy snout syndrome
- Emily A. Miller
- Savanah Leidholt
- Tatiana Galvin
- Alexander Norton
- Kyle S. Van Houtan
- Rebecca Vega Thurber
- Andre Boustany
ABSTRACT: Aquaculture is an increasingly important food resource, but its sustainability is often limited by disease. In Scombridae fishes, puffy snout syndrome (PSS) is a debilitating condition where tumor-like collagenous growths form around the eyes, nares, and mandibles which impair vision and feeding and frequently lead to mortality. While PSS is considered an infectious or metabolic disease, no disease agents or promoters have been identified. Here, we used electron microscopy (EM) to describe the cellular pathology and search for etiological agents of PSS in Pacific mackerel Scomber japonicus, the first use of this approach for PSS. We examined aquaculture specimens across a range of apparent PSS severity, comparing the results to both wild and aquaculture asymptomatic mackerel. EM imagery consistently revealed viral-like particles in PSS samples, as well as the uniform absence of bacteria, protists, fungi, and other multicellular parasites. In addition to viral-like particles, symptomatic fish had a higher mean percentage of swollen and disintegrating mitochondria than both asymptomatic aquaculture and wild mackerel. This suggests that degraded mitochondria may be related to PSS and could be important to further understanding the origin, promoters, and prevention of PSS. This study serves as a first step in identifying the etiological agents of PSS.
KEYWORDS
Emily A. Miller (Corresponding Author)
- Monterey Bay Aquarium, 886 Cannery Row, Monterey, CA 93940, USA
- Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039, USA
Savanah Leidholt (Co-author)
- Oregon State University, Department of Microbiology, 220 Nash Hall, Corvallis, OR 97331, USA
Tatiana Galvin (Co-author)
- Oregon State University, Department of Microbiology, 220 Nash Hall, Corvallis, OR 97331, USA
Alexander Norton (Co-author)
- Monterey Bay Aquarium, 886 Cannery Row, Monterey, CA 93940, USA
Kyle S. Van Houtan (Co-author)
- Monterey Bay Aquarium, 886 Cannery Row, Monterey, CA 93940, USA
- Nicholas School of the Environment, Duke University, Box 90328, Durham, NC 27708, USA
- Loggerhead Marinelife Center, 14200 Hwy 1, Juno Beach, FL 33408, USA
Rebecca Vega Thurber (Co-author)
- Oregon State University, Department of Microbiology, 220 Nash Hall, Corvallis, OR 97331, USA
Andre Boustany (Co-author)
- Monterey Bay Aquarium, 886 Cannery Row, Monterey, CA 93940, USA
- Nicholas School of the Environment, Duke University, Box 90328, Durham, NC 27708, USA
