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Titlebook: Deciphering Chemical Language of Plant Communication; James D. Blande,Robert Glinwood Book 2016 Springer International Publishing Switzerl

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楼主: Carter
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1867-9048 des a broad perspective on a range of ecological interactionsmediated by volatile chemicals, and extends to cutting edge developments on thedetection of chemicals by plants.       .978-3-319-81530-5978-3-319-33498-1Series ISSN 1867-9048 Series E-ISSN 1867-9056
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Multimedia Systems and Applicationsf their ecosystem net flux from a well-defined area, which enables a holistic understanding of a habitat’s chemistry and physics. This chapter is intended to inspire chemical ecologists to view the bigger picture in chemical communication by applying real-time measurement approaches at larger scales
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Mathematical Concepts of Data Assimilationd enable uninjured plants to be more defended against herbivores moving from neighbouring herbivore-infested plants. Uptake and conversion of volatile compounds in plants is discussed in this chapter.
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Environmental Impacts on Plant Volatile Emissionhanistic understanding of environmental impacts on plant chemical communication channels, more work is needed to obtain quantitative stress dose versus emission responses for different stresses in species of differing stress tolerance.
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Impacts of Induction of Plant Volatiles by Individual and Multiple Stresses Across Trophic Levels can have an impact on herbivores, herbivore natural enemies and plant mutualists. We finish by discussing how future research should begin to investigate the importance of induced responses to multiple stresses in structuring plant-based communities.
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Neighbour Recognition Through Volatile-Mediated Interactionsas increasingly been shown to change VOC emission patterns and alter VOC atmospheric lifetimes, can disrupt VOC-mediated plant–plant communication. This chapter updates our current knowledge about these aspects and, through synthesising them, intends to point out gaps in existing research, in partic
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