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    Climate change effects on walnut pests in California

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    Authors
    Luedeling, Eike
    Steinmann KP
    Zhang M
    Brown, P.H.
    Gran J
    Girvetz, Evan H.
    Date Issued
    2011-01
    Date Online
    2010-12
    Language
    en
    Type
    Journal Article
    Accessibility
    Limited Access
    Metadata
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    Citation
    Luedeling E, Steinmann KP, Zhang M, Brown PH, Gran J, Girvetz EH. 2011. Climate change effects on walnut pests in California. Global Change Biology 17(1), 228-238.
    Permanent link to cite or share this item: https://hdl.handle.net/10568/42001
    DOI: https://doi.org/10.1111/j.1365-2486.2010.02227.x
    Abstract/Description
    Increasing temperatures are likely to impact ectothermic pests of fruits and nuts. This paper aims to assess changes to pest pressure in California's US$0.7 billion walnut industry due to recent historic and projected future temperature changes. For two past (1950 and 2000) and 18 future climate scenarios (2041 2060 and 2080 2099; each for three General Circulation Models and three greenhouse gas emissions scenarios), 100 years of hourly temperature were generated for 205 locations. Degree-day models were used to project mean generation numbers for codling moth (Cydia pomonella L.), navel orangeworm (Amyelois transitella Walker), two-spotted spider mite (Tetranychus urticae Koch), and European red mite (Panonychus ulmi Koch). In the Central Valley, the number of codling moth generations predicted for degree days accumulated between April 1 and October 1 rose from 2 4 in 1950 to 3 5 among all future scenarios. Generation numbers increased from 10 18 to 14 24 for two-spotted spider mite, from 9 14 to 14 20 for European red mite, and from 2 4 to up to 5 for navel orangeworm. Overall pest pressure can thus be expected to increase substantially. Our study did not include the possibility of higher winter survival rates, leading to higher initial pest counts in spring, or of extended pest development times in the summer, factors that are likely to exacerbate future pest pressure. On the other hand, initiation of diapause may prevent an extension of the season length for arthropods, and higher incidence of heat death in summer may constrain pest population sizes. More information on the impact of climate change on complex agroecological food webs and on the response of pests to high temperatures is needed for improving the reliability of projections.
    CGIAR Author ORCID iDs
    Evan Girvetzhttps://orcid.org/0000-0002-1062-9764
    Other CGIAR Affiliations
    Climate Change, Agriculture and Food Security
    AGROVOC Keywords
    agriculture; climate; cydia pomonella; amylois transitella; tetranycus urticae; panonychus ulmi; pests; nuts; fruit
    Subjects
    CLIMATE-SMART TECHNOLOGIES AND PRACTICES;
    Countries
    United States
    Regions
    Northern America
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    • CCAFS Journal Articles [1251]

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