tpj12114-sup-0001-FigS1.tifimage/tif30272KFigure S1. Confocal micrographs of maize leaf and root colonization by GFP-transformed Colletotrichum graminicola-gGFP.
tpj12114-sup-0002-FigS2.tifimage/tif11200KFigure S2. C. graminicola is able to infect all maize root types.
tpj12114-sup-0003-FigS3.tifimage/tif1339KFigure S3. Gene expression profile of the various maize root types during C.  graminicola infection.
tpj12114-sup-0004-FigS4.tifimage/tif775KFigure S4. Systemic gene expression profile of seminal and crown roots 6 days after local infection of primary roots by C. graminicola.
tpj12114-sup-0005-FigS5.tifimage/tif127KFigure S5. PLS–DA of secondary metabolites in leaves of root-infected plants and leaves of plants that received a mock treatment.
tpj12114-sup-0006-FigS6.tifimage/tif19997KFigure S6. Confocal micrographs of infected maize leaf epidermal cells during early C. graminicola infection stages.
tpj12114-sup-0007-FigS7.tifimage/tif50KFigure S7. Chlorogenic acid, apigenin and genkwanin inhibit radial fungal growth in a dose-dependent manner.
tpj12114-sup-0008-FigS8.pptxapplication/144KFigure S8. UHPLC-MS/MS chromatogram of in vitro C. graminicola cultures.
tpj12114-sup-0009-SupportingInformationlegends.docxWord document16K 
tpj12114-sup-0010-TableS1.xlsxapplication/msexcel16KTable S1. Quantitative real-time PCR primers used in this study.
tpj12114-sup-0011-TableS2.xlsxapplication/msexcel44KTable S2. Statistical output of gene expression data analysed using REST 2009.
tpj12114-sup-0012-TableS3.xlsxapplication/msexcel111KTable S3. Comparison of basal and induced levels of metabolites identified in C. graminicola-infected maize leaves and roots.
tpj12114-sup-0013-TableS4.xlsapplication/msexcel654KTable S4. Clustering results for metabolomic markers in control and C. graminicola infected maize leaves and roots.
tpj12114-sup-0014-TableS5.xlsapplication/msexcel737KTable S5. Clustering results for metabolomic markers in systemic tissues during C. graminicola attack.

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