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21.
Hupp, S.* ; Rosenkranz, M. ; Bonfig, K.* ; Pandey, C.* & Roitsch, T.*: Noninvasive phenotyping of plant-pathogen interaction: Consecutive in situ imaging of fluorescing Pseudomonas syringae, plant phenolic fluorescence, and chlorophyll fluorescence in Arabidopsis leaves. Front. Plant Sci. 10:1239 (2019)
22.
Keilwagen, J.* et al.: Detecting large chromosomal modifications using short read data from genotyping-by-sequencing. Front. Plant Sci. 10:1133 (2019)
23.
Millan, R.* ; Schröder, P. & Saebo, A.*: Editorial: Options for transition of land towards intensive and sustainable agricultural systems. Front. Plant Sci. 10:346 (2019)
24.
Benckiser, G.* ; Hartmann, A. ; Kumar, K.G.* & Honermeier, B.*: Editorial: Plant-microbe-insect interaction: Source for bio-fertilizers, bio-medicines and agent research. Front. Plant Sci. 9:931 (2018)
25.
Gullner, G.* ; Komives, T.* ; Király, L.* & Schröder, P.: Glutathione s-transferase enzymes in plant-pathogen interactions. Front. Plant Sci. 871, 1836:1836 (2018)
26.
Maksym, R.P. et al.: The defense-related isoleucic acid differentially accumulates in arabidopsis among branched-chain amino acid-related 2-hydroxy carboxylic acids. Front. Plant Sci. 9, 766 (2018)
27.
Reichel, R.* et al.: Potential of wheat straw, spruce sawdust, and lignin as high organic carbon soil amendments to improve agricultural nitrogen retention capacity: An incubation study. Front. Plant Sci. 9:900 (2018)
28.
Adrian, M.V.* et al.: Metabolic fingerprint of ps3-induced resistance of grapevine leaves against plasmopara viticola revealed differences in elicitor-triggered defenses. Front. Plant Sci. 8:101 (2017)
29.
Estendorfer, J. et al.: The influence of land use intensity on the plant-associated microbiome of Dactylis glomerata L. Front. Plant Sci. 8:930 (2017)
30.
Kasten, D. ; Durner, J. & Gaupels, F.: Gas alert: The NO2 pitfall during NO fumigation of plants. Front. Plant Sci. 8:85 (2017)
31.
Leite, J.* et al.: Cowpea nodules harbor non-rhizobial bacterial communities that are shaped by soil type rather than plant genotype. Front. Plant Sci. 7:2064 (2017)
32.
Yang, L. et al.: Dominant groups of potentially active bacteria shared by barley seeds become less abundant in root associated microbiome. Front. Plant Sci. 8:1005 (2017)
33.
Astier, J. ; Loake, G.* ; Velikova, V.B.* & Gaupels, F.: Editorial: Interplay between NO signaling, ROS, and the antioxidant system in plants. Front. Plant Sci. 7:1731 (2016)
34.
Frank, U. & Ernst, D.: Effects of NO2 and ozone on pollen allergenicity. Front. Plant Sci. 7:91 (2016)
35.
Gaupels, F. et al.: Systemic induction of NO-, redox-, and cGMP signaling in the pumpkin extrafascicular phloem upon local leaf wounding. Front. Plant Sci. 7:154 (2016)
36.
Gaupels, F. et al.: Corrigendum: Systemic induction of NO-, Redox-, and cGMP signaling in the pumpkin extrafascicular phloem upon local leaf wounding (vol 7, 154, 2016). Front. Plant Sci. 7:281 (2016)
37.
Gross, I. & Durner, J.: In search of enzymes with a role in 3′, 5′-cyclic guanosine monophosphate metabolism in plants. Front. Plant Sci. 7:576 (2016)
38.
Han, S. et al.: Systemic responses of Barley to the 3-hydroxy-decanoyl-homoserine lactone producing plant beneficial endophyte acidovorax radicis N35. Front. Plant Sci. 7:1868 (2016)
39.
Kovacs, I. et al.: ROS-mediated inhibition of S-nitrosoglutathione reductase contributes to the activation of anti-oxidative mechanisms. Front. Plant Sci. 7:1669 (2016)
40.
Chalal, M.* et al.: Sesquiterpene Volatile Organic Compounds (VOCs) are markers of elicitation by sulfated laminarine in grapevine. Front. Plant Sci. 6:350 (2015)