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OXIDATIVE STRESS AND THE EVOLUTION OF SEX DIFFERENCES IN LIFE SPAN AND AGEING IN THE DECORATED CRICKET,GRYLLODES SIGILLATUS
Authors:Catharine R Archer  Scott K Sakaluk  Colin Selman  Nick J Royle  John Hunt
Institution:1. Centre for Ecology and Conservation, The University of Exeter, Cornwall Campus, Penryn, Cornwall, TR10 9EZ, United Kingdom;2. School of Biological Sciences, Behavior, Ecology, Evolution and Systematics Section, Room 138 Felmley Science Annex, Illinois State University, Illinois;3. Institute of Biological and Environmental Sciences, University of Aberdeen, Tillydrone Avenue, Aberdeen, AB24 2TZ, United Kingdom;4. E‐mail: J.Hunt@exeter.ac.uk
Abstract:The Free Radical Theory of Ageing (FRTA) predicts that oxidative stress, induced when levels of reactive oxygen species exceed the capacity of antioxidant defenses, causes ageing. Recently, it has also been argued that oxidative damage may mediate important life‐history trade‐offs. Here, we use inbred lines of the decorated cricket, Gryllodes sigillatus, to estimate the genetic (co)variance between age‐dependent reproductive effort, life span, ageing, oxidative damage, and total antioxidant capacity within and between the sexes. The FRTA predicts that oxidative damage should accumulate with age and negatively correlate with life span. We find that protein oxidation is greater in the shorter lived sex (females) and negatively genetically correlated with life span in both sexes. However, oxidative damage did not accumulate with age in either sex. Previously we have shown antagonistic pleiotropy between the genes for early‐life reproductive effort and ageing rate in both sexes, although this was stronger in females. In females, we find that elevated fecundity early in life is associated with greater protein oxidation later in life, which is in turn positively correlated with the rate of ageing. Our results provide mixed support for the FRTA but suggest that oxidative stress may mediate sex‐specific life‐history strategies in G. sigillatus.
Keywords:Age‐dependent reproductive effort  ageing  life span  oxidative damage  protein oxidation  reactive oxygen species  sexual selection  total antioxidant capacity
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