Biomarkers of Animal Nutrition: From Seasonal to Lifetime Indicators of Environmental Conditions

Author:

Smiley Rachel A.ORCID,LaSharr Tayler N.,Abernathy Heather N.ORCID,Shakeri Yasaman N.ORCID,Levine Rebecca L.ORCID,Rankins Seth T.ORCID,Jakopak Rhiannon P.ORCID,Rafferty Rebekah T.ORCID,Kolek Jaron T.ORCID,Wagler Brittany L.ORCID,Dwinnell Samantha P. H.,Robinson Timothy J.ORCID,Randall Jill E.,Kaiser Rusty C.,Thonhoff Mark,Scurlock BrandonORCID,Fieseler Troy,Fralick Gary L.,Monteith Kevin L.

Abstract

Nutrition underpins survival and reproduction in animal populations; reliable nutritional biomarkers are therefore requisites to understanding environmental drivers of population dynamics. Biomarkers vary in scope of inference and sensitivity, making it important to know what and when to measure to properly quantify biological responses. We evaluated the repeatability of three nutritional biomarkers in a large, iteroparous mammal to evaluate the level of intrinsic and extrinsic contributions to those traits. During a long-term, individual-based study in a highly variable environment, we measured body fat, body mass, and lean mass of mule deer (Odocoileus hemionus) each autumn and spring. Lean mass was the most repeatable biomarker (0.72 autumn; 0.61 spring), followed by body mass (0.64 autumn; 0.53 spring), and then body fat (0.22 autumn; 0.01 spring). High repeatability in body and lean mass likely reflects primary structural composition, which is conserved across seasons. Low repeatability of body fat supports that it is the primary labile source of energy that is largely a product of environmental contributions of the previous season. Based on the disparate levels in repeatability among nutritional biomarkers, we contend that body and lean mass are better indicators of nutritional legacies (e.g., maternal effects), whereas body fat is a direct and sensitive reflection of recent nutritional gains and losses.

Funder

Wyoming Game and Fish Department

Bureau of Land Management

Knobloch Family Foundation

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

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