Results 211 to 220 of about 112,158 (253)
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The chemical ecology of the fly
Current Opinion in Neurobiology, 2015Not only is the sense of smell of pivotal importance to most animals but also serves as a significant model system in biological research. In recent years, great strides in our understanding of how the olfactory system is organized and operates have been made. Instrumental in these efforts has been work performed in Drosophila melanogaster. In spite of
Suzan, Mansourian, Marcus C, Stensmyr
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Chemical Ecology of Neuroptera
Annual Review of Entomology, 2016With 6,000 species, Neuroptera (lacewings, antlions, dustywings, and allies) is a relatively small order; however, most larval neuropterans are predacious, often in agricultural systems, lending added importance to this group. Advances in neuropteran phylogeny, most recently through genomic studies, stabilized the nomenclature of this ancestral order ...
Jeffrey R, Aldrich, Qing-He, Zhang
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Natural Product Reports, 2008
This review covers the recent marine chemical ecology literature for benthic cyanobacteria, macroalgae, sponges, octocorals, molluscs, other benthic invertebrates, fish and seabirds.
Valerie J, Paul +1 more
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This review covers the recent marine chemical ecology literature for benthic cyanobacteria, macroalgae, sponges, octocorals, molluscs, other benthic invertebrates, fish and seabirds.
Valerie J, Paul +1 more
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Natural Product Reports, 2015
Stefan Schulz, Julia Kubanek and Joern Piel introduce the Natural Product Reports themed issue on ‘Chemical ecology’.
Stefan, Schulz +2 more
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Stefan Schulz, Julia Kubanek and Joern Piel introduce the Natural Product Reports themed issue on ‘Chemical ecology’.
Stefan, Schulz +2 more
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Natural Product Reports, 2015
This review intends to cover the chemistry of important interactions between fungi and other organisms, ranging from chemical defence against enemies to symbiotic and parasitic interactions.
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This review intends to cover the chemistry of important interactions between fungi and other organisms, ranging from chemical defence against enemies to symbiotic and parasitic interactions.
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Chemical Ecology of the Heteroptera
Annual Review of Entomology, 1988A review is given of the pheromones and allomones of the Coreidae, Alydidae, Rhopalidae, Pyrrhocoridae, Berytidae, Lygaeidae, Pentatomidae, Scutelleridae, Plataspididae, Cydnidae, Acanthosomatidae, Reduviidae, Phymatidae, Cimicidae, Anthocoridae, Miridae, Tingidae, Pleidae, Notonectidae, Naucoridae, Corixidae, Gelastocoridae, Belostomatidae ...
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Chemical ecology of the marine plankton
Natural Product Reports, 2013This review summarizes recent work in the chemical ecology of pelagic marine ecosystems. In order to provide a comprehensive overview of advances in the field over the period covered, we have organized this review by ecological interaction type beginning with intraspecific interactions, then interspecific interactions (including mutualism, parasitism ...
Jessie S, Roy +4 more
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Chemical ecology in aquatic systems
Marine and Freshwater Behaviour and Physiology, 2007Preface of Volume 40 (2007), Issue 3. Special Issue: Chemical ecology in aquatic systems. Guest Editors: Francesca Gherardi & Roberto Berti.
GHERARDI, FRANCESCA, BERTI, ROBERTO
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Dynamic Scaling in Chemical Ecology
Journal of Chemical Ecology, 2008Natural rates of chemical production, release, and transport of fluid-borne molecules drive fundamental biological responses to these stimuli. The scaling of the field signaling environment to laboratory conditions recreates essential features of the dynamics and establishes ecological relevance.
Richard K, Zimmer, Cheryl Ann, Zimmer
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2018
Most benthic marine invertebrates have complex life cycles which include motile larvae and more or less immobile adult stages. The colonization of surfaces by marine invertebrate larvae is a fundamental process that governs distribution patterns and biodiversity of marine invertebrates.
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Most benthic marine invertebrates have complex life cycles which include motile larvae and more or less immobile adult stages. The colonization of surfaces by marine invertebrate larvae is a fundamental process that governs distribution patterns and biodiversity of marine invertebrates.
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