Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Data from: Immune stability predicts tuberculosis infection risk in a wild mammal

Domain:

healthcare

Record type:

dataset
Creator:
Seguel, MauricioBeechler, BriannaCoon, CourtneySnyder, Paul
Publisher:
Dry
Host:avatar
Immunity is one of the most variable phenotypic traits in animals; however, some individuals may show less fluctuation in immune traits, resulting in stable patterns of immune variation over time. It is currently unknown whether immune variation has consequences for infectious disease risk. In this study, we identified moderately stable immune traits in wild African buffalo and asked whether the stability of these traits affected bovine tuberculosis (TB) infection risk. We found that adaptive immune traits such as the level of IFN-γ released after white blood cell stimulation, the number of circulating lymphocytes, and the level of antibodies against bovine adenovirus-3 were moderately repeatable (i.e. stable) over time, whereas parameters related to innate immunity either had low repeatability (circulating eosinophil numbers) or were not repeatable (e.g. neutrophil numbers, plasma bacteria killing capacity). Intriguingly, individuals with more repeatable IFN-γ and lymphocyte levels were at a significantly higher risk of acquiring TB infection. In stark contrast, average IFN-γ and lymphocyte levels were poor predictors of TB risk, indicating that immune variability rather than absolute response level better captured variation in disease susceptibility. This work highlights the important and under-appreciated role of immune variability as a predictor of infection risk. Seguel_2019_PRSB_data1Set of immune and physiological parameters measured over 4-years in African buffalo (Syncerus caffer)Seguel_2019_PRSB_data2Indexes of variability in immune parameters, including repeatability and coefficient of variation, in African buffalo (Syncerus caffer)

Visit

doi.orgdatadryad.org

Tags

Infection riskImmune stabilityTuberculosisSyncerus caffer

Licenses

Creative Commons Zero v1.0 Universalhttps://creativecommons.org/publicdomain/zero/1.0/legalcode

Similar

Data from: Risk alleles for tuberculosis infection associate with reduced immune reactivity in a wild mammalian hostData from: Juvenile concentrations of IGF-1 predict life-history trade-offs in a wild mammalInflammation and immune activation are associated with risk of Mycobacterium tuberculosis infection in BCG-vaccinated infants

Data from: Risk alleles for tuberculosis infection associate with reduced immune reactivity in a wild mammalian host

Integrating biological processes across scales remains a central challenge in disease ecology. Gene

Data from: Juvenile concentrations of IGF-1 predict life-history trade-offs in a wild mammal

Early postnatal development can have profound effects on life-history traits later in life. One mec

Inflammation and immune activation are associated with risk of Mycobacterium tuberculosis infection in BCG-vaccinated infants

Tuberculosis vaccine development is hindered by the lack of validated immune correlates of protec