Literature DB >> 21884055

Rapid evolution caused by pollinator loss in Mimulus guttatus.

Sarah A Bodbyl Roels1, John K Kelly.   

Abstract

Anthropogenic perturbations including habitat loss and emerging disease are changing pollinator communities and generating novel selection pressures on plant populations. Disruption of plant-pollinator relationships is predicted to cause plant mating system evolution, although this process has not been directly observed. This study demonstrates the immediate evolutionary effects of pollinator loss within experimental populations of a predominately outcrossing wildflower. Initially equivalent populations evolved for five generations within two pollination treatments: abundant bumblebee pollinators versus no pollinators. The populations without pollinators suffered greatly reduced fitness in early generations but rebounded as they evolved an improved ability to self-fertilize. All populations diverged in floral, developmental, and life-history traits, but only a subset of characters showed clear association with pollination treatment. Pronounced treatment effects were noted for anther-stigma separation and autogamous seed set. Dramatic allele frequency changes at two chromosomal polymorphisms occurred in the no pollinator populations, explaining a large fraction of divergence in pollen viability. The pattern of phenotypic and genetic changes in this experiment favors a sequential model for the evolution of the multitrait "selfing syndrome" observed throughout angiosperms.
© 2011 The Author(s).

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Year:  2011        PMID: 21884055      PMCID: PMC5958604          DOI: 10.1111/j.1558-5646.2011.01326.x

Source DB:  PubMed          Journal:  Evolution        ISSN: 0014-3820            Impact factor:   3.694


  40 in total

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9.  Contribution of chromosomal polymorphisms to the G-matrix of Mimulus guttatus.

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  43 in total

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Review 5.  The evolution of plant reproductive systems: how often are transitions irreversible?

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6.  Tests for the joint evolution of mating system and drought escape in Mimulus.

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7.  Interactions among flower-size QTL of Mimulus guttatus are abundant but highly variable in nature.

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8.  The relative importance of reproductive assurance and automatic selection as hypotheses for the evolution of self-fertilization.

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Review 9.  Plant-pollinator interactions along the pathway to paternity.

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10.  Mating systems and avoidance of inbreeding depression as evolutionary drivers of pollen limitation in animal-pollinated self-compatible plants.

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