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    • Rangeland Ecology & Management, Volume 62 (2009)
    • Rangeland Ecology & Management, Volume 62, Number 4 (July 2009)
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    Fine-Scale Spatial Genetic Structure in Perennial Grasses in Three Environments

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    Author
    Smith, Steven E.
    Arredondo, Tulio
    Aguiar, Martín
    Huber-Sannwald, Elisabeth
    Alpuche, Angel
    Aguado, Armando
    Grageda, Oscar A.
    Halbrook, Kandres
    Bottini, Cecilia
    Issue Date
    2009-07-01
    Keywords
    apomixis
    genetic diversity
    grasslands
    grazing
    history
    
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    Citation
    Smith, S. E., Arredondo, T., Aguiar, M., Huber-Sannwald, E., Alpuche, A., Aguado, A., ... & Bottini, C. (2009). Fine-scale spatial genetic structure in perennial grasses in three environments. Rangeland Ecology & Management, 62(4), 356-363.
    Publisher
    Society for Range Management
    Journal
    Rangeland Ecology & Management
    URI
    http://hdl.handle.net/10150/643040
    DOI
    10.2111/08-159.1
    Additional Links
    https://rangelands.org/
    Abstract
    Past research has shown that changes in grazing-resistance traits may be associated with genetic changes in plant populations. Little is known about spatial genetic relationships within plant populations (spatial genetic structure) and any grazing effects on these relationships. Here we present observations of the fine-scale spatial genetic structure in three grass species in semiarid environments (Arizona, Mexico, and Argentina). In each environment, populations of a dominant grass species were sampled from two sites with contrasting livestock grazing histories. Plant genotypes were described with the use of amplified fragment length polymorphism markers. In Arizona, populations of sideoats grama (Bouteloua curtipendula var. caespitosa Gould and Kapadia) differed in that one has never experienced livestock grazing, whereas cattle have grazed the other. In the other two environments, populations exposed to long-term heavy grazing were examined, along with those that experienced either moderate grazing (Mexico, blue grama [Bouteloua gracilis {Willd. ex Kunt} Lag. ex Griffiths]) or extended exclusion of livestock (Argentina [Poa ligularis Nees ex Steud.]). Based on independent analysis of each population, we observed no differences in average gene diversity between populations of each species. With the use of analysis of molecular variance we found slight but significant genetic differentiation between populations with different grazing histories in Arizona and Argentina. Significant genetic structure was present in all populations and indicated an inverse relationship between spatial and genetic distance. Interestingly, this relationship was most pronounced in the cattle-free sideoats grama population, suggesting larger genetic neighborhood areas in the absence of livestock. Less distinct differences in spatial genetic structure associated with grazing history were evident in the other two species. We hypothesize that livestock grazing may lead to increased homogeneity in genetic structure at the landscape scale. Effectively examining this hypothesis presents many experimental challenges. 
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2111/08-159.1
    Scopus Count
    Collections
    Rangeland Ecology & Management, Volume 62, Number 4 (July 2009)

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