Characterized constituents of insect herbivore oral secretions and their influence on the regulation of plant defenses
For more than 350 million years, there have been ongoing dynamic interactions between plants and insects. In several cases, insects cause-specific feeding damage with ensuing herbivore-associated molecular patterns that invoke characteristic defense responses. During feeding on plant tissue, insects...
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Veröffentlicht in: | Phytochemistry (Oxford) 2022-01, Vol.193, p.113008-113008, Article 113008 |
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Sprache: | eng |
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Zusammenfassung: | For more than 350 million years, there have been ongoing dynamic interactions between plants and insects. In several cases, insects cause-specific feeding damage with ensuing herbivore-associated molecular patterns that invoke characteristic defense responses. During feeding on plant tissue, insects release oral secretions (OSs) containing a repertoire of molecules affecting plant defense (effectors). Some of these OS components might elicit a defense response to combat insect attacks (elicitors), while some might curb the plant defenses (suppressors). Few reports suggest that the synthesis and function of OS components might depend on the host plant and associated microorganisms. We review these intricate plant-insect interactions, during which there is a continuous exchange of molecules between plants and feeding insects along with the associated microorganisms. We further provide a list of commonly identified inducible plant produced defensive molecules released upon insect attack as well as in response to OS treatments of the plants. Thus, we describe how plants specialized and defense-related metabolism is modulated at innumerable phases by OS during plant-insect interactions. A molecular understanding of these complex interactions will provide a means to design eco-friendly crop protection strategies.
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•Reviewed characterized constituents of the insect herbivore's oral secretion (OS).•Synthesis of constituents of insects OS is influenced by diet and related microbes.•Updates on the active molecules from OS viz, effectors.•Highlighted the potential markers to study the induced plant defense mechanisms@. |
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ISSN: | 0031-9422 1873-3700 |
DOI: | 10.1016/j.phytochem.2021.113008 |