4.5 Article

Expressed mutational load increases toward the edge of a species' geographic range

Journal

EVOLUTION
Volume 74, Issue 8, Pages 1711-1723

Publisher

OXFORD UNIV PRESS
DOI: 10.1111/evo.14042

Keywords

Arabidopsis lyrata; genetic drift; geographic species distribution; heterosis; mutational load; range expansion; range limit; small population size

Funding

  1. Swiss National Science Foundation [31003A_166322]
  2. Swiss National Science Foundation (SNF) [31003A_166322] Funding Source: Swiss National Science Foundation (SNF)

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There is no general explanation for why species have restricted geographic distributions. One hypothesis posits that range expansion or increasing scarcity of suitable habitat results in accumulation of mutational load due to enhanced genetic drift, which constrains population performance toward range limits and further expansion. We tested this hypothesis in the North American plant,Arabidopsis lyrata. We experimentally assessed mutational load by crossing plants of 20 populations from across the entire species range and by raising the offspring of within- and between-population crosses at five common garden sites within and beyond the range. Offspring performance was tracked over three growing seasons. The heterosis effect, depicting expressed mutational load, was increased in populations with heightened genomic estimates of load, longer expansion distance or long-term isolation, and a selfing mating system. The decline in performance of within-population crosses amounted to 80%. Mutation accumulation due to past range expansion and long-term isolation of populations in the area of range margins is therefore a strong determinant of population-mean performance, and the magnitude of effect may be sufficient to cause range limits.

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