Coevolution of relative brain size and life expectancy in parrots

Author:

Smeele Simeon Q.ORCID,Conde Dalia A.ORCID,Baudisch AnnetteORCID,Bruslund SimonORCID,Iwaniuk AndrewORCID,Staerk JohannaORCID,Wright Timothy F.ORCID,Young Anna M.ORCID,McElreath Mary BrookeORCID,Aplin LucyORCID

Abstract

AbstractPrevious studies have demonstrated a correlation between longevity and brain size in a variety of taxa. Little research has been devoted to understanding this link in parrots; yet parrots are well-known for both their exceptionally long lives and cognitive complexity. We employed a large-scale comparative analysis that investigated the influence of brain size and life history variables on longevity in parrots. Specifically, we addressed two hypotheses for evolutionary drivers of longevity: the Cognitive Buffer Hypothesis, which proposes that increased cognitive abilities enable longer life spans, and the Expensive Brain Hypothesis, which holds that increases in life span are caused by prolonged developmental time of, and increased parental investment in, large brained offspring. We estimated life expectancy from detailed zoo records for 133,818 individuals across 244 parrot species. Using a principled Bayesian approach that addresses data uncertainty and imputation of missing values, we found a consistent correlation between relative brain size and life expectancy in parrots. This correlation was best explained by a direct effect of relative brain size. Notably, we found no effects of developmental time, clutch size, or age at first reproduction. Our results suggest that selection for enhanced cognitive abilities in parrots have in turn promoted longer lifespans.

Publisher

Cold Spring Harbor Laboratory

Reference58 articles.

1. Medawar PB , University College London. An Unsolved problem of biology; an inaugural lecture delivered at University College, London, 6 December, 1951. London: H.K. Lewis and Co.; 1952.

2. Williams GC . Pleiotropy, natural selection, and the evolution of senescence. Evolution. 1957;398– 411.

3. The moulding of senescence by natural selection

4. Evolution of ageing

5. Diversity of ageing across the tree of life

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