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Convergent consequences of parthenogenesis on stick insect genomes

  • Kamil S Jaron
  • , Darren J Parker
  • , Yoann Anselmetti
  • , Patrick Tran Van
  • , Jens Bast
  • , Zoé Dumas
  • , Emeric Figuet
  • , Clémentine M François
  • , Keith Hayward
  • , Victor Rossier
  • , Paul Simion
  • , Marc Robinson-Rechavi
  • , Nicolas Galtier
  • , Tanja Schwander
  • University of Lausanne
  • Swiss Institute of Bioinformatics, Geneva
  • ISEM-Institut des Sciences de l'Evolution

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

88 Wedi eu Llwytho i Lawr (Pure)

Crynodeb

The shift from sexual reproduction to parthenogenesis has occurred repeatedly in animals, but how the loss of sex affects genome evolution remains poorly understood. We generated reference genomes for five independently evolved parthenogenetic species in the stick insect genus Timema and their closest sexual relatives. Using these references and population genomic data, we show that parthenogenesis results in an extreme reduction of heterozygosity and often leads to genetically uniform populations. We also find evidence for less effective positive selection in parthenogenetic species, suggesting that sex is ubiquitous in natural populations because it facilitates fast rates of adaptation. Parthenogenetic species did not show increased transposable element (TE) accumulation, likely because there is little TE activity in the genus. By using replicated sexual-parthenogenetic comparisons, our study reveals how the absence of sex affects genome evolution in natural populations, providing empirical support for the negative consequences of parthenogenesis as predicted by theory.

Iaith wreiddiolSaesneg
Rhif yr erthygleabg3842
CyfnodolynScience Advances
Cyfrol8
Rhif cyhoeddi8
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - 23 Chwef 2022
Cyhoeddwyd yn allanolIe

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