Fifteen-year microbiome survey of endangered killer whales ( Orcinus orca ) reveals declining diversity and population differences

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A 15-year survey of Southern Resident killer whale fecal microbiomes revealed declining species richness and distinct compositions compared to healthier populations, with some individuals showing pathogen dominance near death.

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The study used fecal samples collected non-invasively over 15 years (2005–2019) from the endangered Southern Resident killer whale population, encompassing 56 individuals with 1–17 time points each, along with fecal samples from nearby Northern and Alaska Resident killer whale populations, to characterize distal gut microbiota structure and genomic composition. The authors found that SRKW gut microbiotas were individualized and distinct from those of the other populations, which showed higher fecundity and survivorship. Over the study period, SRKW fecal microbiota species richness declined, even though microbiota metrics were stable within shorter windows of one year or less. The paper also reported that potential bacterial pathogens such as Fusobacterium spp. became dominant in some SRKW individuals sampled within six months of death, and it does not state specific limitations beyond noting the surveillance context. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

ABSTRACT The endangered Southern Resident killer whale ( Orcinus orca ) (SRKW) population is burdened by multiple anthropogenic stressors with limited non-invasive approaches for health surveillance. The gut microbiome is interconnected with host physiology and can be characterized using remotely collected fecal samples, creating unique opportunities to integrate environmental and individualized host-associated features of health. In this study, we used fecal samples collected over a 15-year period (2005-2019) from 77% of the living, wild SRKW population (56 individuals, 1-17 time points per individual), as well as fecal samples from the conspecific Northern and Alaska Resident killer whale populations, to characterize distal gut microbiota structure and genomic composition. SRKW microbiotas were individualized and distinct from those of the nearby Northern and Alaska Resident populations, both of which exhibit consistently higher fecundity and survivorship. During the study period, SRKW fecal microbiota species richness declined, despite stability over periods of time less than or equal to 1 year. Several potential bacterial pathogens, such as Fusobacterium spp., achieved dominance in the fecal microbiotas of SRKW individuals sampled within 6 months of death. These findings demonstrate the feasibility and value of harnessing non-invasively collected fecal samples and microbiome profiles for longitudinal killer whale health surveillance.
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ABSTRACT The endangered Southern Resident killer whale (Orcinus orca) (SRKW) population is burdened by multiple anthropogenic stressors with limited non-invasive approaches for health surveillance. The gut microbiome is interconnected with host physiology and can be characterized using remotely collected fecal samples, creating unique opportunities to integrate environmental and individualized host-associated features of health. In this study, we used fecal samples collected over a 15-year period (2005-2019) from 77% of the living, wild SRKW population (56 individuals, 1-17 time points per individual), as well as fecal samples from the conspecific Northern and Alaska Resident killer whale populations, to characterize distal gut microbiota structure and genomic composition. SRKW microbiotas were individualized and distinct from those of the nearby Northern and Alaska Resident populations, both of which exhibit consistently higher fecundity and survivorship. During the study period, SRKW fecal microbiota species richness declined, despite stability over periods of time less than or equal to 1 year. Several potential bacterial pathogens, such as Fusobacterium spp., achieved dominance in the fecal microbiotas of SRKW individuals sampled within 6 months of death. These findings demonstrate the feasibility and value of harnessing non-invasively collected fecal samples and microbiome profiles for longitudinal killer whale health surveillance. Competing Interest Statement The authors have declared no competing interest. Footnotes The list of authors has been corrected.

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