Inducing resistance in plants by the application of elicitors of defense reactions is an attractive plant protection strategy, particularly for grapevine (Vitis vinifera), which is susceptible to severe fungal diseases. Although induced resistance (IR) can be successful under controlled conditions, in most cases, IR is not sufficiently effective for practical disease control under outdoor conditions. Progress in the application of IR requires a better understanding of grapevine defense mechanisms and the ability to monitor defense markers to identify factors, such as physiological and environmental factors, that can impact IR in the vineyard. Volatile organic compounds (VOCs) are well-known plant defense compounds that have received little ...
Volatile organic compounds (VOCs) play a crucial role in the communication of plants with other org...
International audienceThe present study is aimed at determining whether leaf volatile organic compou...
Plants can produce a wide variety of volatile organic compounds (VOCs), which can play a crucial rol...
Inducing resistance in plants by the application of elicitors of defense reactions is an attractive ...
SPE IPM UB CT1International audienceInducing resistance in plants by the application of elicitors of...
Grapevine is susceptible to fungal diseases generally controlled by numerous chemical fungicides. El...
International audienceGrapevine is susceptible to fungal diseases generally controlled by numerous c...
Grapevine is susceptible to fungal diseases generally controlled by numerous chemical fungicides. El...
SPE IPMInternational audienceAs Vitis vinifera varieties are susceptible to fungal diseases, numerou...
Volatile organic compounds (VOCs) synthesis is triggered in plants in response to external stimuli a...
The grapevine (Vitis vinifera) is one of the most widely cultivated fruit crops globally, and one of...
Vitis vinifera is susceptible to several pathogens including Plasmopara viticola, the causal agent o...
Vitis vinifera is susceptible to several pathogens including Plasmopara viticola, the causal agent o...
Volatile organic compounds (VOCs) play a crucial role in the communication of plants with other org...
International audienceThe present study is aimed at determining whether leaf volatile organic compou...
Plants can produce a wide variety of volatile organic compounds (VOCs), which can play a crucial rol...
Inducing resistance in plants by the application of elicitors of defense reactions is an attractive ...
SPE IPM UB CT1International audienceInducing resistance in plants by the application of elicitors of...
Grapevine is susceptible to fungal diseases generally controlled by numerous chemical fungicides. El...
International audienceGrapevine is susceptible to fungal diseases generally controlled by numerous c...
Grapevine is susceptible to fungal diseases generally controlled by numerous chemical fungicides. El...
SPE IPMInternational audienceAs Vitis vinifera varieties are susceptible to fungal diseases, numerou...
Volatile organic compounds (VOCs) synthesis is triggered in plants in response to external stimuli a...
The grapevine (Vitis vinifera) is one of the most widely cultivated fruit crops globally, and one of...
Vitis vinifera is susceptible to several pathogens including Plasmopara viticola, the causal agent o...
Vitis vinifera is susceptible to several pathogens including Plasmopara viticola, the causal agent o...
Volatile organic compounds (VOCs) play a crucial role in the communication of plants with other org...
International audienceThe present study is aimed at determining whether leaf volatile organic compou...
Plants can produce a wide variety of volatile organic compounds (VOCs), which can play a crucial rol...