Does genetic diversity reduce sibling competition?

Authors: J. David Aguirre and Dustin J. Marshall

Published in: Evolution, volume 6, issue 1, doi: 10.1111/j.1558-5646.2011.01413.x

Abstract

An enduring hypothesis for the proximal benefits of sex is that recombination increases the genetic variation among offspring and that this genetic variation increases offspring performance. A corollary of this hypothesis is that mothers that mate multiply increase genetic variation within a clutch and gain benefits due to genetic diversity alone.

Many studies have demonstrated that multiple mating can increase offspring performance, but most attribute this increase to sexual selection and the role of genetic diversity has received less attention. Here, we used a breeding design to generate populations of full-siblings, half-siblings, and unrelated individuals of the solitary ascidian Ciona intestinalis. Importantly, we preclude the potentially confounding influences of maternal effects and sexual selection.

We found that individuals in populations with greater genetic diversity had greater performance (metamorphic success, postmetamorphic survival, and postmetamorphic size) than individuals in populations with lower genetic diversity. Furthermore, we show that by mating with multiple males and thereby increasing genetic variation within a single clutch of offspring, females gain indirect fitness benefits in the absence of mate-choice.

Our results show that when siblings are likely to interact, genetic variation among individuals can decrease competition for resources and generate substantial fitness benefits within a single generation.

Full paper

Aguirre JD, Marshall DJ (2012) Does genetic diversity reduce sibling competition? Evolution, 66-1: 94–102 PDFPDF 688 KB doi: 10.1111/j.1558-5646.2011.01413.x

PhD positions available: the evolutionary ecology and/or quantative genetics of marine invertebrates

Two fully-funded PhD stipends are available to students interested in working on the evolutionary ecology of marine invertebrates in Dr Dustin Marshall’s group.

The stipends include all course fees plus ~$25,000 AUD per annum tax-free (the equivalent of  approx. $33,000 before tax) with no teaching requirements.

I can guarantee funding of project costs including the costs of attending at least one conference per year.

Project start dates can be any time in 2012.

Interested students should send their CVs, a brief statement of their interests and the contact details of two referees.

To be eligible, applicants must have completed at least one year of post-graduate research and ideally a masters degree.

Preference will be given to those with strong quantitative skills.