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    • Journal of Range Management, Volume 55 (2002)
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    Bud viability in perennial grasses: water stress and defoliation effects

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    Author
    Flemmer, A. C.
    Busso, C. A.
    Fernández, O. A.
    Issue Date
    2002-03-01
    Keywords
    Nassella
    Stipa clarazii
    nassella tenuis
    buds
    Stipa tenuis
    Stipa gynerioides
    semiarid grasslands
    viability
    perennials
    tillering
    semiarid zones
    phenology
    Argentina
    defoliation
    Stipa
    water stress
    maturity stage
    Stipa clarazii
    Stipa tenuis
    Stipa gynerioides
    bud metabolic activity
    bud outgrowth
    water stress
    defoliation
    perennial grasses
    semiarid Argentina
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    Citation
    Flemmer, A. C., Busso, C. A., & Fernández, O. A. (2002). Bud viability in perennial grasses: water stress and defoliation effects. Journal of Range Management, 55(2), 150-163.
    Publisher
    Society for Range Management
    Journal
    Journal of Range Management
    URI
    http://hdl.handle.net/10150/643641
    DOI
    10.2307/4003351
    10.2458/azu_jrm_v55i2_flemmer
    Additional Links
    https://rangelands.org/
    Abstract
    Effects of the timing and frequency of defoliation under different levels of soil water availability were evaluated on bud metabolic activity and subsequent outgrowth in the desirable (i.e., palatable) Stipa clarazii Ball. and S. tenuis Phil. in competition with the undesirable (i.e., unpalatable) S. gynerioides Phil. Field studies on these native, perennial tussock grasses were conducted from 1995 to 1997 in temperate, semiarid Argentina. Our working hypotheses were 1) axillary bud activation and subsequent tillering are lower under water stress than under higher soil moisture conditions in S. clarazii, S. tenuis, and S. gynerioides, 2) when compared to undefoliated controls, activation, and subsequent outgrowth of axillary buds reach similar or greater values in S. clarazii and S. tenuis after early (vegetative stage of development), but not late (during internode elongation) defoliations or increased defoliation frequency (vegetative+ during internode elongation) during each growing cycle. Additionally, it was expected that the greatest reduction of axillary bud metabolic activity and outgrowth would ocurr on plants defoliated twice, and 3) axillary bud activation and succeeding tillering are greater in the undefoliated S. gynerioides when the desirable species are defoliated than when they remain undefoliated. With a few exceptions, our results led us to reject all 3 hypotheses. Responses of axillary buds were in general specific to the species and treatments, to sampling time, and to the cumulative effects of previous treatments. This makes predictions of plant responses of these species under natural field conditions difficult, where they are often defoliated under water stress.
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2307/4003351
    Scopus Count
    Collections
    Journal of Range Management, Volume 55, Number 2 (March 2002)

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