Literature DB >> 31480972

Meiotic drive reduces egg-to-adult viability in stalk-eyed flies.

Sam Ronan Finnegan1, Nathan Joseph White1,2, Dixon Koh1, M Florencia Camus1, Kevin Fowler1, Andrew Pomiankowski1,3.   

Abstract

A number of species are affected by Sex-Ratio (SR) meiotic drive, a selfish genetic element located on the X-chromosome that causes dysfunction of Y-bearing sperm. SR is transmitted to up to 100% of offspring, causing extreme sex ratio bias. SR in several species is found in a stable polymorphism at a moderate frequency, suggesting there must be strong frequency-dependent selection resisting its spread. We investigate the effect of SR on female and male egg-to-adult viability in the Malaysian stalk-eyed fly, Teleopsis dalmanni. SR meiotic drive in this species is old, and appears to be broadly stable at a moderate (approx. 20%) frequency. We use large-scale controlled crosses to estimate the strength of selection acting against SR in female and male carriers. We find that SR reduces the egg-to-adult viability of both sexes. In females, homozygous females experience greater reduction in viability (sf = 0.242) and the deleterious effects of SR are additive (h = 0.511). The male deficit in viability (sm = 0.214) is not different from that in homozygous females. The evidence does not support the expectation that deleterious side effects of SR are recessive or sex-limited. We discuss how these reductions in egg-to-adult survival, as well as other forms of selection acting on SR, may maintain the SR polymorphism in this species.

Entities:  

Keywords:  Teleopsis; meiotic drive; selfish genetic element; sex ratio; sexual selection; stalk-eyed fly

Mesh:

Year:  2019        PMID: 31480972      PMCID: PMC6742991          DOI: 10.1098/rspb.2019.1414

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  53 in total

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7.  Ancient gene drives: an evolutionary paradox.

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