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Image Search Results
Journal: Frontiers in Plant Science
Article Title: Seed Metabolism and Pathogen Resistance Enhancement in Pisum sativum During Colonization of Arbuscular Mycorrhizal Fungi: An Integrative Metabolomics-Proteomics Approach
doi: 10.3389/fpls.2020.00872
Figure Lengend Snippet: Three-way ANOVA of main effects of AMF, pathogen, cultivar type, and their interactions impact on above–belowground yield and growth components of P. sativum .
Article Snippet: To study the major impacts of factors (microsymbiont, cultivar, and pathogen) and their interactions for phenotypic data,
Techniques: Infection
Journal: Frontiers in Plant Science
Article Title: Seed Metabolism and Pathogen Resistance Enhancement in Pisum sativum During Colonization of Arbuscular Mycorrhizal Fungi: An Integrative Metabolomics-Proteomics Approach
doi: 10.3389/fpls.2020.00872
Figure Lengend Snippet: Clustered heatmaps of mapped functional categories which including ≥ 10 proteins of seed proteins significantly changed (Kruskal-Wallis; ANOVA, Tukey HSD test; p < 0.05 and ≥ two-fold change) in M compared with NM treatments upon I and U conditions across both cultivars. The heatmap cells are z-transformed of mean LFQ intensities per treatment. Me, cv. Messire; Pr, cv. Protecta; M, mycorrhizal; NM, non-mycorrhizal; I, infected (diseased); U, uninfected (healthy).
Article Snippet: To study the major impacts of factors (microsymbiont, cultivar, and pathogen) and their interactions for phenotypic data,
Techniques: Functional Assay, Transformation Assay, Infection
Journal: Frontiers in Plant Science
Article Title: Seed Metabolism and Pathogen Resistance Enhancement in Pisum sativum During Colonization of Arbuscular Mycorrhizal Fungi: An Integrative Metabolomics-Proteomics Approach
doi: 10.3389/fpls.2020.00872
Figure Lengend Snippet: ICA of integrated seed metabolomics-proteomics data including remarkably changed (Kruskal-Wallis; ANOVA, Tukey HSD test; p < 0.05 and ≥ two-fold change) seed metabolites and proteins in M vs. NM upon diseased conditions of both cultivars. Numeric data were z-transformed. The loadings graphs illustrate the components with the top ten of the highest loadings (> 0.01 and < −0.01) on IC2 and IC3. Me, cv. Messire; Pr, cv. Protecta; M, mycorrhizal; I, infected (diseased).
Article Snippet: To study the major impacts of factors (microsymbiont, cultivar, and pathogen) and their interactions for phenotypic data,
Techniques: Transformation Assay, Infection
Journal: Frontiers in Plant Science
Article Title: Seed Metabolism and Pathogen Resistance Enhancement in Pisum sativum During Colonization of Arbuscular Mycorrhizal Fungi: An Integrative Metabolomics-Proteomics Approach
doi: 10.3389/fpls.2020.00872
Figure Lengend Snippet: Schematic overview of mycorrizal induced response of pea seed (grown in pots) against D. pinodes infection. Seed metabolites and proteins significantly (Tukey HSD, p < 0.05; n = 3; and ) enhanced with the highest ICA loadings (> 0.01 and < −0.01; ) are shown. MI, Mycorrhizae inoculated, and pathogen-infected.
Article Snippet: To study the major impacts of factors (microsymbiont, cultivar, and pathogen) and their interactions for phenotypic data,
Techniques: Infection