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Titlebook: Aphid Biodiversity under Environmental Change; Patterns and Process Pavel Kindlmann,A.F.G. Dixon,J.P. Michaud Book 2010 Springer Science+Bu

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Modelling Population Dynamics of Aphids and Their Natural Enemies,ted. Here we present a critical review of existing models of aphid population dynamics, examine biological assumptions that are incorporated in the models and present one of the latest models of aphid metapopulation dynamics. We conclude that natural enemies are unlikely to affect aphid population d
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Implications of Climate Change for , (Kirkaldy), a Disease Vector of Citrus in Florida,ature citrus trees go through a period of winter dormancy followed by a surge of growth in spring and periods of sporadic growth in summer and fall. Any significant rise in average winter temperatures will reduce the severity and duration of cool winter weather and may trigger earlier shoot growth b
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Ecological Factors Influencing Pea Aphid Outbreaks in the US Pacific Northwest,ing every 6–9 years in the Palouse region. Warming winter temperatures over several years bridging the 20th and 21st centuries could potentially compress the frequency of outbreaks by accelerating aphid population development on legumes that provide migrants that colonize peas and other spring-sown
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Temperature, Seasonal Development and Distribution of Insects with Particular Reference to Aphids,g on the leaves of birch indicates that the temporal patterns in their reproductive activity are associated with differences in their thermal tolerances. The thermal tolerance range of each species, their thermal window, is approximately 20°C, with some species better adapted to and therefore reprod
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Ecological Costs of Alarm Signalling in Aphids,F showed a reduced survival time (2.35±0.23 days; mean±s.e.) compared to the control treatment (3.51±0.42 days). Our results show that alarm signalling in aphids is associated with the ecological cost of attracting additional natural enemies and demonstrate that a full understanding of the evolution
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