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Titlebook: Ecology and Evolution of the Acari; Proceedings of the 3 Jan Bruin,L. P. S. Geest,M. W. Sabelis Conference proceedings 1999 Springer Scienc

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Conference proceedings 1999strongimpetus on the field of Acarology, and has already led to significantprogress. This book contains many chapters that illustrate the recentprogress in - mainly evolutionary and ecological aspects of- Acarology.
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cks has a strongimpetus on the field of Acarology, and has already led to significantprogress. This book contains many chapters that illustrate the recentprogress in - mainly evolutionary and ecological aspects of- Acarology.978-90-481-5200-1978-94-017-1343-6
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Genetic differentiation in , (Acari: Tetranychidae) from greenhouses in Francet plant. We found that mite density and distribution of infested plants influence gene flow within greenhouses. Between greenhouses isolation by distance was significant. Differentiation did not appear to be associated with the colonized plant species.
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https://doi.org/10.1007/978-3-7091-4828-0ea by means of cladistic analysis. Co-speciation of parasites with their hosts is postulated as a main factor driving feather mite evolution. Examples are given of non-coevolutionary events, e.g. recolonization from one host species onto another, extinction and multiple speciation.
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https://doi.org/10.1007/978-981-15-3658-8ctors include starvation, specific hunger, experience, pathogen infestation and the presence of competitors. Investigating variation in the phytoseiid’s behavioural response in relation to these factors is important for understanding how and why behavioural strategies maximize phytoseiid fitness.
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Behavioural ecology of plant—phytoseiid interactions mediated by herbivore-induced plant volatilesctors include starvation, specific hunger, experience, pathogen infestation and the presence of competitors. Investigating variation in the phytoseiid’s behavioural response in relation to these factors is important for understanding how and why behavioural strategies maximize phytoseiid fitness.
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Evolution and systematics of the Cheliceratac assemblage of unrelated taxa, most morphologists, palaeontologists and molecular taxonomists agree that the Arthropoda are a monophylum. The Euarthropoda are composed of the Arachnomorpha and Mandibulata. Myriapods are usually considered to be mandibulates; however, new molecular data as well as s
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