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41.
Vanderauwera, S.* et al.: Genome-wide analysis of hydrogen peroxide-regulated gene expression in Arabidopsis reveals a high light-induced transcriptional cluster involved in anthocyanin biosynthesis. Plant Physiol. 139, 806-821 (2005)
42.
Wilkinson, M.* ; Schoof, H. ; Ernst, R. & Haase, D.: BioMOBY successfully integrates distributed heterogeneous bioinformatics Web services. The plaNet exemplar case. Plant Physiol. 138, 5-17 (2005)
43.
Haberer, G. ; Hindemitt, T. ; Meyers, B.C.* & Mayer, K.F.X.: Transcriptional similarities, dissimilarities and conservation of cis-elements in duplicated genes of Arabidopsis. Plant Physiol. 136, 3009-3022 (2004)
44.
Lamotte, O.* et al.: Analysis of nitric oxide signaling functions in tobacco cells challenged by the elicitor cryptogein. Plant Physiol. 135, 516-529 (2004)
45.
Rudd, S. et al.: Genome-wide in silico mapping of scaffold/matrix attachment regions in Arabidopsis suggests correlation of intragenic scaffold/matrix attachment regions with gene expression. Plant Physiol. 135, 715-722 (2004)
46.
Moeder, W. et al.: Ethylene synthesis regulated by biphasic induction of 1-aminocyclopropane-1-carboxylic acid synthase and 1-aminocyclopropane-1-carboxylic acid oxidase genes is regulated for hydrogen peroxide accumulation and cell death in ozone-exposed tomato. Plant Physiol. 130, 1-9 (2002)
47.
Chiron, H.* et al.: Gene induction of stilbene biosynthesis in scots pine in response to ozone treatment, wounding and fungal infection. Plant Physiol. 124, 865-872 (2000)
48.
Navarre, D.A.* ; Wendehenne, D.* ; Durner, J. ; Noad, R.* & Klessig, D.F.*: Nitric Oxide Modulates the Activity of Tobacco Aconitase. Plant Physiol. 122, 573-582 (2000)
49.
Eckey-Kaltenbach, H. ; Ernst, D. ; Heller, W. & Sandermann, H.: Biochemical plant responses to ozone: IV. Cross-induction of defensive pathways in parsley (Petroselinum crispum L.) plants. Plant Physiol. 104, 67-74 (1994)
50.
Bach, M. ; Schnitzler, J.-P. & Seitz, H.-U.: Elicitor-induced Changes of Ca2+, Influx, K+ Efflux, and 4-hydroxybenzoic Acid Synthesis in Protoplasts of Daucus Carota L. Plant Physiol. 103, 407-412 (1993)
51.
Bach, M.* ; Schnitzler, J.-P. & Seitz, H.U.*: Elicitor-induced changes in Ca2+ influx, K+ efflux, and 4-hydroxybenzoic acid synthesis in protoplasts of Daucus carota L. Plant Physiol. 103, 407-412 (1993)
52.
Bauer, S. et al.: Plant Gene Register: Isolation and Characterization of a cDNA Clone Encoding a Novel Short- Chain Alcohol Dehydrogenase from Norway Spruce (Picea abies L. Karst). Plant Physiol. 103, 1479-1480 (1993)
53.
Bauer, S. et al.: Isolation and characterization of a cDNA clone encoding a novel short-chain alcohol dehydrogenase from Norway spruce (Picea abies L. Karst.). Plant Physiol. 103, 1479-1480 (1993)
54.
Polle, A.* et al.: Antioxidants and manganese deficiency in needles of Norway spruce (Picea abies L) trees. Plant Physiol. 99, 1084-1089 (1992)
55.
Schraudner, M. ; Ernst, D. ; Langebartels, C. & Sandermann, H.: Biochemical Plant Response to Ozone. III. Activation of the Defense-Related Proteins ß-1,3- Glucanase and Chitinase in Tobacco Leavers. Plant Physiol. 99, 1321-1328 (1992)
56.
Ernst, D. & Weyrauch, C.: D-myo-inositol 1,4,5-trisphosphate Levels in Rye Seedlings. Plant Physiol. 10, 73-75 (1991)
57.
Langebartels, C. et al.: Biochemical plant responses to ozone: I. Differential induction of polyamine and ethylene biosynthesis in tobacco. Plant Physiol. 95, 882-889 (1991)
58.
Rosemann, D. ; Heller, W.E. & Sandermann, H.J.: Biochemical plant responses to ozone. II. Induction of stilbene biosynthesis in scots pine (Pinus sylvestris L.) seedlings. Plant Physiol. 97, 1280-1286 (1991)
59.
Adams, W.W. ; Winter, K. ; Schreiber, U. & Schramel, P.: Photosynthesis and Chlorophyll Fluorescence Characteristics in Relationship to Changes in Pigment and Element Composition of Leaves of Plantanus occidentalis L. during Autumnal Leaf Senescence. Plant Physiol. 93, 1184-1190 (1990)
60.
Adams, W.W.I.I.* ; Winter, K.A.* ; Schreiber, U.K.* & Schramel, P.: Photosynthesis and chlorophyll fluorescence characteristics in relationship to changes in pigment and element composition of leaves of Platanus occidentalis L. during autumnal leaf senescence. Plant Physiol. 92, 1184-1190 (1990)