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Within-individual phenotypic plasticity in flowers fosters pollination niche shift.

José María GómezFrancisco PerfecttiCristina ArmasEduardo NarbonaAdela González-MegiasLuis NavarroLucía DeSotoRubén Torices
Published in: Nature communications (2020)
Phenotypic plasticity, the ability of a genotype of producing different phenotypes when exposed to different environments, may impact ecological interactions. We study here how within-individual plasticity in Moricandia arvensis flowers modifies its pollination niche. During spring, this plant produces large, cross-shaped, UV-reflecting lilac flowers attracting mostly long-tongued large bees. However, unlike most co-occurring species, M. arvensis keeps flowering during the hot, dry summer due to its plasticity in key vegetative traits. Changes in temperature and photoperiod in summer trigger changes in gene expression and the production of small, rounded, UV-absorbing white flowers that attract a different assemblage of generalist pollinators. This shift in pollination niche potentially allows successful reproduction in harsh conditions, facilitating M. arvensis to face anthropogenic perturbations and climate change.
Keyphrases
  • climate change
  • gene expression
  • heat stress
  • human health
  • genome wide
  • risk assessment
  • aqueous solution
  • genetic diversity