4.7 Article

Dispersal ability and its consequences for population genetic differentiation and diversification

出版社

ROYAL SOC
DOI: 10.1098/rspb.2022.0489

关键词

dispersal; population structure; diversification; arthropod; spider; beetle

资金

  1. EDRF,EU
  2. la Caixa Foundation [LCF/BQ/PR21/11840006, 100010434]
  3. European Union [847648]
  4. Ministerio de Ciencia e Innovacion [PRE2018-083230]
  5. Ministerio de Educacion y Formacion Profesional [FPU18/04601]
  6. [CGL2017-85718-P]
  7. [MCIN/AEI/10.13039/501100011033]
  8. [PID2020-116788GB-I00]

向作者/读者索取更多资源

Dispersal ability plays a crucial role in shaping the genetic structure, population differentiation, and lineage diversification within species. This study on beetles and spiders in the Canary Islands reveals a positive relationship between population genetic structure and diversification. Non-dispersive lineages exhibit stronger population genetic structure, higher endemic species richness at the genus level, and greater proxies for diversification rate. These findings suggest that dispersal limitation influences species and lineage diversity across evolutionary timescales, with higher extinction rates in less dispersive lineages.
Dispersal ability is known to influence geographical structuring of genetic variation within species, with a direct relationship between low vagility and population genetic structure, which can potentially give rise to allopatric speciation. However, our general understanding of the relationship between dispersal ability, population differentiation and lineage diversification is limited. To address this issue, we sampled mitochondrial DNA variation within lineages of beetles and spiders across the Canary Islands to explore the relationships between dispersal ability, differentiation within lineages and diversification. We found positive relationships between population genetic structure and diversification for both beetles and spiders. Comparisons between dispersive and non-dispersive lineages revealed significant differences for both lineage differentiation and diversification. For both taxa, non-dispersive lineages had stronger population genetic structure. Genus-level endemic species richness and proxies for diversification rate within genera were higher in non-dispersive taxa for both beetles and spiders. Comparisons of average and maximum node divergences within genera suggest that species turnover may be higher in non-dispersive genera. Our results reveal a model where dispersal limitation may shape the diversity of lineages across evolutionary timescales by positively influencing intraspecific and species diversity, moderated by higher extinction rates compared to more dispersive lineages.

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