- Research Article
- 10.1016/j.jcpa.2026.03.001
Malignant ovarian granulosa cell tumour of corpus luteum origin in a California sea lion (Zalophuscalifornianus).
- Apr 01, 2026
- Journal of comparative pathology
- Nancy Stedman + 6 more +6
Publications from 2021 to 2026
Showing 10 of 147 papers
Malignant ovarian granulosa cell tumour of corpus luteum origin in a California sea lion (Zalophuscalifornianus).
Drone observations reveal white shark (Carcharodon carcharias) dorsal fins are highly flexible and possible investigatory structures.
Drones are becoming increasingly useful in their ability to observe wildlife. They have been especially useful in documenting marine animals such as sharks. Here we present novel aerial drone observations of a previously unknown dorsal-fin behaviour in white sharks (Carcharodon carcharias). We found that white sharks might investigate surface objects by rotating their first dorsal fin on its axis towards the object. Our videos suggest that the dorsal fin in white sharks may have additional capabilities beyond being a stabilizing appendage.
Read moreManaging Bivalve Aquaculture to Enhance Blue Carbon Ecosystems and Carbon Sequestration
ABSTRACT Transforming the way food is produced to address its widespread negative effects on habitats, biodiversity and climate change is emerging as a priority intervention for achieving global goals for sustainable and equitable development. If the negative effects of industry activity are mitigated, regenerative farming approaches offer an opportunity to shape reciprocal solutions that can reduce these impacts and provide food and nutritional outcomes alongside ecological benefits. We review the potential for bivalve aquaculture to contribute positively to blue carbon ecosystems, coastal and marine environments that are critical to ocean carbon cycling and storage (seagrasses, mangroves and tidal marshes) and other highly productive or depositional coastal ecosystems (macroalgae, tidal flats and marine sediment). We identify the negative effects of bivalve aquaculture that must be avoided and mitigated to ensure farming does not generate environmental greenhouse gas emissions and discuss the ecological processes bivalves in a farmed environment enhance that could enable the industry to positively support ocean carbon sequestration in these ecosystems. If designed and used with the benefits of carbon cycling and storage in mind, restorative bivalve aquaculture could be used to increase protection of these important ecosystems and mitigative efforts for climate change.
Read moreAdvancing genetic improvement in the omics era: status and priorities for United States aquaculture
BackgroundThe innovations of the “Omics Era” have ushered in significant advancements in genetic improvement of agriculturally important animal species through transforming genetics, genomics and breeding strategies. These advancements were often coordinated, in part, by support provided over 30 years through the 1993–2023 National Research Support Project 8 (NRSP8, National Animal Genome Research Program, NAGRP) and affiliate projects focused on enabling genomic discoveries in livestock, poultry, and aquaculture species. These significant and parallel advances demand strategic planning of future research priorities. This paper, as an output from the May 2023 Aquaculture Genomics, Genetics, and Breeding Workshop, provides an updated status of genomic resources for United States aquaculture species, highlighting major achievements and emerging priorities.Main textFinfish and shellfish genome and omics resources enhance our understanding of genetic architecture and heritability of performance and production traits. The 2023 Workshop identified present aims for aquaculture genomics/omics research to build on this progress: (1) advancing reference genome assembly quality; (2) integrating multi-omics data to enhance analysis of production and performance traits; (3) developing resources for the collection and integration of phenomics data; (4) creating pathways for applying and integrating genomics information across animal industries; and (5) providing training, extension, and outreach to support the application of genome to phenome. Research focuses should emphasize phenomics data collection, artificial intelligence, identifying causative relationships between genotypes and phenotypes, establishing pathways to apply genomic information and tools across aquaculture industries, and an expansion of training programs for the next-generation workforce to facilitate integration of genomic sciences into aquaculture operations to enhance productivity, competitiveness, and sustainability.ConclusionThis collective vision of applying genomics to aquaculture breeding with focus on the highlighted priorities is intended to facilitate the continued advancement of the United States aquaculture genomics, genetics and breeding research community and industries. Critical challenges ahead include the practical application of genomic tools and analytical frameworks beyond academic and research communities that require collaborative partnerships between academia, government, and industry. The scope of this review encompasses the use of omics tools and applications in the study of aquatic animals cultivated for human consumption in aquaculture settings throughout their life-cycle.
Read moreDo the hormetic effects of chlorogenic acid mediate some of the beneficial effects of coffee?
Analytical Tools for Investigation and Generation of Supporting Evidence
Case Study: Dissolution OOT Observed for an Extended-Release Tablet Formulation
Initial Actions and Information Gathering
Shotgun metabolomic analysis of killer whale (Orcinus orca) exhaled breath condensate.
The ocean is facing many anthropogenic stressors caused from both pollution and climate change. These stressors are significantly impacting and changing the ocean's ecosystem, and as such, methods must continually be developed that can improve our ability to monitor the health of marine life. For cetaceans, the current practice for health assessments of individuals requires live capture and release, which is expensive, usually stressful, and for larger species impractical. In this study, we investigated the potential of exhaled breath condensate (EBC) samples to provide unique metabolomic profiles from healthy killer whales (Orcinus orca) of varying known age and sex. EBC collection is a non-invasive procedure that has potential for remote collection using unmanned aerial vehicles, thus improving our ability to understand physiologic parameters within wild populations while minimizing stress from collection procedures. However, descriptions of the available metabolome within EBC and its clinical significance within animals of known health and age must be described before this technique can be considered diagnostically useful. We describe normal variations of the metabolome across age and sex and provide evidence for the potential of this breath analysis method to become a valuable adjunctive tool for assessing the health of managed-care and free-ranging killer whales.
Read moreAssessment of per- and poly-fluoroalkyl substances and physiological biomarkers in aquarium-based bottlenose dolphins and killer whales