Display Settings:

Format

Send to:

Choose Destination
    Nature. 2010 Jun 3;465(7298):632-6.

    Natural allelic variation underlying a major fitness trade-off in Arabidopsis thaliana.

    Source

    Department of Molecular Biology, Max Planck Institute for Developmental Biology, 72076 Tübingen, Germany.

    Abstract

    Plants can defend themselves against a wide array of enemies, from microbes to large animals, yet there is great variability in the effectiveness of such defences, both within and between species. Some of this variation can be explained by conflicting pressures from pathogens with different modes of attack. A second explanation comes from an evolutionary 'tug of war', in which pathogens adapt to evade detection, until the plant has evolved new recognition capabilities for pathogen invasion. If selection is, however, sufficiently strong, susceptible hosts should remain rare. That this is not the case is best explained by costs incurred from constitutive defences in a pest-free environment. Using a combination of forward genetics and genome-wide association analyses, we demonstrate that allelic diversity at a single locus, ACCELERATED CELL DEATH 6 (ACD6), underpins marked pleiotropic differences in both vegetative growth and resistance to microbial infection and herbivory among natural Arabidopsis thaliana strains. A hyperactive ACD6 allele, compared to the reference allele, strongly enhances resistance to a broad range of pathogens from different phyla, but at the same time slows the production of new leaves and greatly reduces the biomass of mature leaves. This allele segregates at intermediate frequency both throughout the worldwide range of A. thaliana and within local populations, consistent with this allele providing substantial fitness benefits despite its marked impact on growth.

    PMID:
    20520716
    [PubMed - indexed for MEDLINE]
    PMCID: PMC3055268
    Free PMC Article

    Images from this publication.See all images (5) Free text

    Figure 5
    Figure 2
    Figure 4
    Figure 1
    Figure 3

    Publication Types, MeSH Terms, Substances, Secondary Source ID, Grant Support

    Publication Types

    MeSH Terms

    Substances

    Secondary Source ID

    Grant Support

      Supplemental Content

      Click here to read Click here to read

      Recent activity

      Your browsing activity is empty.

      Activity recording is turned off.

      Turn recording back on

      See more...
      Write to the Help Desk