Dehydration enhances innate immunity in a semiaquatic snake from the wet-dry tropics

George A. Brusch*, Keith Christian, Gregory P. Brown, Richard Shine, Dale F. DeNardo

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    8 Citations (Scopus)
    40 Downloads (Pure)

    Abstract

    Dehydration is considered a physiological challenge, and many organisms live in environments that undergo periods of reduced water availability that can lead to dehydration. Recent studies have found a positive relationship between dehydration and innate immune function in animals adapted to xeric or semixeric environments. To explore the generality of this relationship, we examined the impact of dehydration on innate immune performance in water pythons (Liasis fuscus), a semiaquatic snake from the wet-dry tropics of Australia. We collected blood samples from male and female water pythons held in the laboratory without food and water for 4 weeks. We also collected blood from free-ranging snakes throughout the Austral dry-season. We evaluated plasma osmolality and innate immune function (agglutination, lysis, and bacterial-killing ability) and found that increased osmolality, whether manipulated in the laboratory or as a result of natural water limitation, resulted in enhanced aspects of innate immune performance. Counter-intuitively, snakes in the wild became more hydrated as the dry season progressed, suggesting the dehydrated snakes move to water sources periodically to rehydrate. Comparing our data with those from previous studies, we suspect species divergence in the level of dehydration (i.e., hyperosmolality) that triggers enhanced immune capabilities.

    Original languageEnglish
    Pages (from-to)245-252
    Number of pages8
    JournalJournal of Experimental Zoology Part A: Ecological and Integrative Physiology
    Volume331
    Issue number4
    Early online date14 Mar 2019
    DOIs
    Publication statusPublished - 1 Apr 2019

    Keywords

    • hydration
    • immunocompetence
    • Liasis fuscus
    • osmotic stress
    • water limitations
    • water python

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