Metabolomics reveals simultaneous influences of plant defence system and fungal growth in Botrytis cinerea-infected Vitis vinifera cv. Chardonnay berries

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Metabolomics reveals simultaneous influences of plant defence system and fungal growth in Botrytis cinerea-infected Vitis vinifera cv. Chardonnay berries is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1093/JXB/ERS228
P698PubMed publication ID22945941

P50authorClara CilindreQ37367900
Jean-Marc NuzillardQ37837625
Agathe MartinezQ58865343
P2093author name stringYoung-Shick Hong
Gérard Liger-Belair
Philippe Jeandet
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Disruption of Botrytis cinerea Pectin Methylesterase Gene Bcpme1 Reduces Virulence on Several Host PlantsQ44439284
An aspartic proteinase gene family in the filamentous fungus Botrytis cinerea contains members with novel featuresQ44980909
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Dynamic carbon transfer during pathogenesis of sunflower by the necrotrophic fungus Botrytis cinerea: from plant hexoses to mannitol.Q45981185
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Transcriptional and metabolic profiling of grape (Vitis vinifera L.) leaves unravel possible innate resistance against pathogenic fungiQ46468208
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Monitoring biochemical changes during grape berry development in Portuguese cultivars by NMR spectroscopyQ57057934
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Metabolomic approaches reveal that cell wall modifications play a major role in ethylene-mediated resistance against Botrytis cinereaQ57797588
P433issue16
P921main subjectBotrytis cinereaQ1135851
defence against herbivoryQ2004252
metabolomicsQ12149006
Vitis viniferaQ30046
P304page(s)5773-5785
P577publication date2012-09-03
P1433published inJournal of Experimental BotanyQ6295179
P1476titleMetabolomics reveals simultaneous influences of plant defence system and fungal growth in Botrytis cinerea-infected Vitis vinifera cv. Chardonnay berries
P478volume63

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