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Biology subjects

Dolby, G. A.

Publications and source records attributed to Dolby, G. A..

2 recordsLinked to original sources

Social determinants of health and disease in companion dogs: A cohort study from the Dog Aging Project

Exposure to social environmental adversity is associated with health and survival in many social species, including humans. However, little is known about if and how these health and mortality effects vary across the lifespan, largely due to the difficulty of studying long-lived organisms across much of their lifespan. Here, we leveraged a relatively new and powerful model for human aging, the companion dog, to investigate which components of the social environment are associated with dog health and how these associations vary across the lifespan. We drew on comprehensive survey data collected on 21,410 dogs from the Dog Aging Project and identified five factors that together explained 33.7% of the variation in a dogs social environment. Factors capturing financial and household adversity were associated with poorer health and lower physical mobility in companion dogs, while factors that captured social support, such as living with other dogs, were associated with better health when controlling for dog age and weight. Some of these associations differed across a dogs lifespan, including a stronger relationship between owner age and health in younger (as compared to older) dogs. Taken together, these findings suggest the importance of income, stability, and owner age on owner-reported health outcomes in companion dogs and point to potential behavioral and/or environmental modifiers that can be used to promote healthy aging across species.

evolutionary biology↗

The information signature of diverging lineages

Divergence and speciation are the generators of biodiversity on Earth. Yet, we still seek to understand why species are unevenly distributed across taxa and geographic settings. This is partly because we lack a way to directly compare aspects of population divergence across unrelated species and an integrative quantitative framework for how geographical setting relates to genetic divergence. Here we postulate that, based on communications theory, there is a communications channel between Earths surface and the structuring of genomic information among populations. Each species is a separate receiver of this message. Organism traits determine the clarity of that channel. Calculating the partial information decomposition (PID) of genetic metrics under different evolutionary scenarios can measure the signature of this communication. We show in silico how the informational decomposition of 97,200 genetic lattices varies as lineages diverge. The decomposed nodes of Tajimas D, {theta}W, and {pi} show strong context-dependent information signatures, while FST was least informative. Specific decompositions detected whether lineages divergence with or without gene flow better than current SFS-based tools. The study of information in an evolutionary genomic and landscape context suggests it may be a helpful framework and for understanding the diversity of life across Earth and their coevolution.

evolutionary biology↗