Both Jean-Pierre Métraux and Felix Mauch figured on the ISI Highly Cited authors list (www.ISIHighlyCited.com)
Recent Publications |
| 2012 | 2011 | 2010 | 2009 | 2008 | 2007 | ||
| 2006 | 2005 | 2004 | 2003 | 2002 | 2001 | 2000 | 1999 |
2013
M Geisler, B Wang & J Zhu (2013).
Auxin transport during root gravitropism - transporters and techniques. Plant Biology (online doi: 10.1111/plb.12030).
M Geisler (2013).
Evolution of membrane signaling and trafficking in plants. Frontiers in Plant Science (editorial, online doi: 10.3389/fpls.2013.00040)
B Wang, A Bailly, M Zwieka, S Henrichs, E Azzarello, S Mancuso, M Masayoshi, J Frimi, A Schulz & M Geissler (2013).
Arabidopsis TWISTED DWARF1 functionally interacts with auxin exporter ABCB1 on the root plasma membrane. Plant Cell 25: 202-214.
2012
Urban aquatic ecosystems: Habitat loss and depletion of native macrophyte diversity during the 20th century in four Swiss cities. Urban Ecosystems (online doi:10.1007/s11252-012-0284-x.
Pipecolic acid, an endogenous mediator of defense amplification and priming, is a critical regulator of inducible plant immunity. Plant Cell 24: 5123-5141.
Arabidopsis ABCB21 is a facultative auxin im/exporter regulated by cytoplasmic auxin concentration. Plant & Cell Physiology 53: 2090-2100.
The AGC kinase, PINOID, blocks interactive ABCB/PIN auxin transport. Plant Signaling & Behavior 7: 1515-1517.
How membranes shape plant symbioses: Signaling and transport in nodulation and arbuscular mycorrhiza. Frontiers in Plant Science 3: 223. doi: 10.3389/fpls.2012.00223.
ER-localized auxin transporter PIN8 regulates auxin homeostasis and male gametophyte development in Arabidopsis. Nature Communications 3: #941 (online doi:10.1038/ncomms1941).
Small does not mean young: age estimation of severely browsed trees in anthropogenic Mediterranean landscapes. Biological Conservation. 153: 97-100.
La corbeille d'or des sables (Alyssum loiseleurii P. Fourn. subsp. loiseleurii), une endémique à aire restreint menacée. Bull. Soc. Linn. Bordeaux 147(3): 5 pages.
Grapevine trunk disease: complex and still poorly understood. Plant Pathology (DOI: 10.1111/j.1365-3059.2012.02674.x n press).
Morpho-environmental characterization of the genus Baldellia Parl. (Alismataceae) in the Iberian Peninsula, Balearic Islands and North Morocco. Plant Biosystems 146: 334-344.
Regulation of ABCB1/PGP1-catalysed auxin transport by linker phosphorylation. EMBO Journal 31: 2965-2980.
A novel putative auxin carrier family regulates intracellular auxin homeostasis in plants. Nature 485: 119-122.
Elastic domains regulate growth and organogenesis in the plant shoot apical meristem. Science 335: 1096-1099.
A petunia ABC protein controls strigolactone-dependent symbiotic signalling and branching. Nature 483: 341-344..
High genetic and morphological diversity despite range contraction in the diploid Hieracium eriophorum (Asteraceae) endemic to the coastal sand dunes of south-west France. Botanical Journal of the Linnean Society 169: 365-377 (2012).
Conservation of threatened relict trees through living ex situ collections: lessons from the global survey of the genus Zelkova (Ulmaceae). Biodiversity & Conservation 21; 671-685.
NMR assignments of the FKBP-type PPIase domain of FKBP42 from Arabidopsis thaliana. Biomolecular NMR assignments. 6: 185-188.
Plant lessons: exploring ABCD functionality through structural modeling. Frontiers in Plant Traffic and Transport 2: # 108 (online doi:10.3389/fpls.2011.00108).
Glutathione deficiency of the Arabidopsis mutant pad2-1 affects oxidative stress-related events, defense gene expression and hypersensitive response. Plant Physiology 157: 2012-2022.
M. Bessire, S. Borel, G. Fabre, L. Carraça, N. Efremova, A. Yephremov, Y. Cao, R. Jetter, AC Jacquat, JP Métraux & C Nawrath (2011).The glutaredoxin ATGRXS13 is required to facilitate Botrytis cinerea infection of Arabidopsis thaliana. Plant Journal 68:507-519.
A member of the PLEIOTROPIC DRUG RESISTANCE family of ATP binding cassette transporters is required for the formation of a functional cuticle in Arabidopsis. Plant Cell 23: 1958-1970.
A permeable cuticle is associated with a release of reactive oxygen species and induction of innate immunity. PLoS Pathogens (on line) 7(7): e1002148. doi:10.1371/journal.ppat.1002148).
Salicylic acid and its location in response to biotic and abiotic stress. FEBS Letters 585: 1847-1852.
Flavonols accumulate asymmetrically and affect transport in Arabidopsis thaliana. Plant Physiology 156: 585-595.
High resolution linkage maps of the model organism Petunia reveal substantial synteny decay with the related genome of tomato. Genome 54: 327-340.
Successful joint ventures of plants: arbuscular mycorrhiza and beyond. Trends in Plant Science 16: 356-362.
Conserved residues in the ankyrin domain of VAPYRIN indicate potential protein-protein interaction surfaces. Plant Signaling & Behavior 6: 680-684.
Phylogenetics and phylogeography of the monocot genus Baldellia (Alismataceae): Mediterranean refugia, suture zones and implications for conservation. Molecular Phylogenetics & Evolution 58: 33-42.
Tobacco leaf spot and root rot caused by Rhizoctonia solani Kühn. Molecular Plant Pathology 12: 209-216.
Expression of selected genes involved in cadmium detoxification in tobacco plants grown on a sulphur-amended metal-contaminated field. Environmental and Experimental Botany 70:158-165.
Immunocytochemical determination of the subcellular distribution of ascorbate in plants. Planta 233: 1-12.
Phosphate systemically inhibits development of arbuscular mycorrhiza in Petunia hybrida and represses genes involved in mycorrhizal functioning. Plant Journal 64: 1002-1017.
Die Flora der Voralpen zwischen Thuner- und Genfersee. Haupt Verlag/ La Flore des préalpes, Editions Rossolis.
Post-translational derepression of invertase activity in source leaves via down-regulation of invertase inhibitor expression Is part of the plant defense response. Molecular Plant 6: 1037-1048.
The PAM1 Gene of Petunia, required for intracellular accommodation and morphogenesis of arbuscular mycorrhizal fungi, encodes a homologue of VAPYRIN. Plant Journal 64: 470-481.
Transcriptome responses to aluminium stress in the roots of aspen (Populus tremula). BMC Plant Biology 10: 185 doi:10.1186/1471-2229-10-185 (on line).
Indolic secondary metabolites protect Arabidopsis from the oomycete pathogen Phytophthora brassicae. Plant Signaling & Behavior 5: 1099-1101.
A role for ß-sitosterol to stigmasterol conversion in plant-pathogen interactions. Plant Journal 63: 254-268.
Insect eggs suppress plant defence against chewing herbivores. Plant Journal 62:876-885.
Glucosinolates are an important first layer defence of Arabidopsis against Phytophthora brassicae. in "Biology of Molecular Plant-Microbe Interactions" Vol. 7 (CD-ROM), 2009 IS-MPMI Symposium Proceedings, eds. H. Antoun, L. Brisson, M. Trepanier, T. Avis & D. Prévost, APS Press.
Kretschmer, M. Leroch M, A Mosbach, A.S. Walker, S. Fillinger, D Mernke, H.-J. Schoonbeek, J.M. Pradier, P. Leroux, M.A. De Waard & M. Hahn (2009).
Fungicide-driven evolution and molecular basis of multidrug resistance in field populations of the grey mould fungus Botrytis cinerea. PLOS Pathogens (5) #e1000696.
J.-P. Métraux, R.W. Jackson, E. Schnettler & R.W. Goldbach (2009).
Plant pathogens as suppressors of host defense. In "Advances in Botanical Research" ed. L.C. Van Loon, Vol. 51, Chap 2, 39-89, Elsevier Ltd.
F. Mauch, S. Torche, K. Schläppi, L. Branciard, K. Belhaj, V. Parisy & A. Si-Ammour (2009).
Methyl salicylate production and jasmonate signaling are not essential for systemic acquired resistance in Arabidopsis. Plant Cell 21: 954-971.
Global conservation status assessment of the threatened aquatic plant genus Baldellia (Alismataceae): challenges and limitations. Biodiversity and Conservation 18: 2307-2325.
2008
B. Zechmann, F. Mauch, L. Sticher & M. Müller (2008).
Cadmium detoxication in plants: involvement of ABC transporters, Chap 18, In "Trace elements as contaminants in ecosystems and human health" (ed. M.N.V. Prasad) John Wiley & Sons Inc., Hoboken (USA). (on line).
T. Genoud, M.B. Santa-Cruz, J.P. Métraux & C. Nawrath (2003).
Salicylic acid in the plant signaling network. In "Advances in plant physiology", Vol. 6, ed. A. Hemantaranjan, Scientific Publishers, Jodhpur, India, pp179-193.
S. Heck, T. Grau, A.J. Buchala, J.P.Metraux & C. Nawrath (2003).Genetic evidence that expression of NahG modifies defence pathways independent of salicylic acid biosynthesis in the Arabidopsis - Pseudomonas syringae pv. tomato interaction. Plant Journal 36: 342-352. U. Landergott, G. Kozlowski, J.J. Schneller & R. Holderegger (2003). The importance of recent population history for understanding geneticdiversity in threatened species, with special reference to Dryopteris cristata. Fern Gazette 17: 37-49. D. Lieberherr, U. Wagner, P.-H. Dubuis, J.-P. Métraux & F. Mauch (2003). The rapid induction of glutathione S-transferases AtGSTF2 and AtGSTF6 by avirulent Pseudomonas syringae is the result of combined salicylic acid and ethylene signaling. Plant & Cell Physiology 44: 750-757. N. Baumberger, M. Steiner, U. Ryser, B. Keller & C. Ringli (2003). Synergistic interaction of the two paralogous Arabidopsis genes LRX1 and LRX2 in cell wall formation during root hair development. The Plant Journal 35: 71-81. A. Si-Ammour, B. Mauch-Mani & F. Mauch (2003). Quantification of induced resistance against Phytophthora species expressing GFP as a vital marker: Beta-aminobutyric acid but not BTH protects potato and Arabidopsis from infection. Molecular Plant Pathology 4: 237-248. G. Jakab, A. Manrique, L. Zimmerli, J.-P. Métraux & B. Mauch-Mani (2003). Molecular Characterization of a Novel Lipase-Like Pathogen-Inducible Gene Family of Arabidopsis. Plant Physiology 132: 2230-2239.
A. Iavicoli, E. Boutet, A. Buchala, Jean-Pierre Métraux (2003). Induced systemic resistance in Arabidopsis thaliana in response to root inoculation with Pseudomonas fluorescens CHA0. Molecular Plant-Microbe Interactions 16: 851-858. Glazebrook J., Chen W., Estes B., Chang H.-S., Nawrath C., Métraux J.-P., Zhu T., & Katagiri F. (2003). Topology of the network integrating salicylic acid and jasmonate signaltransduction derived from global expression phenotyping. The PlantJournal 34: 217-228. Wick P., Gansel X., Oulevey C., Page V., Studer I., Dürst M. & Sicher L. (2003). The expression of the t-SNARE AtSNAP33 is induced by pathogens and mechanical stimulation. Plant Physiology 132: 343-351. SpoelS.H., Koornneef A., Claessens S.M.C., Korzelius J.P, Van Pelt J.A.,Mueller M.J., Buchala A.J., Métraux. J.-P., Brown R., Kazan K.,Van Loon L.C., Dong X. & Pieterse C.M.J. (2003). NPR1 modulates cross talk between salicylic acid- and jasmonate-dependentdefense pathways through a novel function in the cytosol. Plant Cell 15: 760-770. Ryser U. (2003). Protoxylem:the deposition of a network containing glycine-rich cell wall proteinsstarts in the cell corners in close association with the pectins of the middle lamella. Planta 216: 854-864. Genoud T., Trevino Santa Cruz M.B., and Métraux J.-P. (2003). Networks of cellular information processing: digital approach and simulation. Current Genomics 4: 27-36. 2002
M. Schneider, E. Droz, P. Malnoë, C. Chatot, E. Bonnel and J.-P. Métraux (2002). Transgenic potato plants expressing oxalate oxidase have increased resistance to oomycete and bacterial pathogens. Potato Research 45: 177-185. Johansen J.E., Binnerup S.J., Lejbolle K.B., Mascher F., Sorensen J. & Keel C. (2002). Impact of biocontrol strain Pseudomonas fluoresecens CHA0 on rhizosphere bacteria isolated from barley (Hordeum vulgare L.) with special referenec to Cytophaga-like bacteria. Journal of Applied Microbiology 93: 1065-1074. Wagner U., Edwards R., Dixon D.P. and Mauch F. (2002). Probing the diversity of the Arabidopsis glutathione S-transferase gene family. Plant Molecular Biology 49: 515-523. Nawrath C. (2002). Thebiopolymers cutin and suberin, in "The Arabidopsis Book" (eds. eds.C.R. Somerville and E.M. Meyerowitz) American Society of PlantBiologists, Rockville, MD, doi/10.1199/tab.0021. VauclareP., Kopriva S., Fell D., Suter M., Sticher L., von Ballmoos P.,Krähenbühl U., Op den Camp R. and Brunold C. (2002). Flux control of sulphate assimilation in Arabidopsis thaliana: adenosine 5'-phosphate reductase is more susceptible than ATP sulphurylase to negative control by thiols. The Plant Journal 31: 729-740. Métraux J.-P. (2002). Recent breakthroughs in the study of salicylic acid biosynthesis. Trends in Plant Science 7: 332-334. Métraux J.-P., Nawrath C. and Genoud T. (2002). Systemic acquired resistance. Euphytica 124: 237-243. Genoud T., Buchala A.J., Chua N.-H. and Métraux J.-P. (2002). Phytochrome signaling modulates the SA-perceptive pathway in Arabidopsis.The Plant Journal 31: 87-95. ChenWQ, Provart NJ, Glazebrook J, Katagiri F, Chang HS, Eulgem T, Mauch F,Luan S, Zou GZ, Whitham SA, Budworth PR, Tao Y, Xie ZY, Chen X, Lam S,Kreps JA, Harper JF, Si-Ammour A, Mauch-Mani B, Heinlein M, KobayashiK, Hohn T, Dangl JL, Wang X, Zhu. T. (2002). Expressionprofile matrix of Arabidopsis transcription factor genes suggests theirputative functions in response to environmental stresses. Plant Cell 14: 559-574. Nawrath C., and Métraux J.P. (2002).
Lucht J.M., Mauch-Mani B., Steiner H.-Y., Metraux J.-P., Ryals J. and Hohn B. (2002). Pathogen stress increases somatic recombination frequency in Arabidopsis. Nature Genetics, 30: 311-314. Nawrath C., Heck S., Parinthawong N. and Métraux J.P. (2002). EDS5, an essential component of salicylic acid-dependent signaling for disease resistance in Arabidopsis, is a member of the MATE-transporter family. Plant Cell 14: 275-286. Ton J., De Vos M., Robben C., Buchala A.J., Métraux J.-P., Van Loon L.C. and Pieterse, C.M.J. (2002) Characterization of Arabidopsis enhanced disease susceptibility mutants that are affected in systemically induced resistance. The Plant Journal 29: 11-21. Roulin S., Buchala A.J. and Fincher G.B. (2002). Induction of (1,3/1,4)-beta-D-glucan hydrolases in leaves of dark-incubated barley seedlings. Planta 215: 51-59. 2001
Métraux J.-P. (2001). Systemic acquired resistance. Encycl. Genetics (Brenner S, Miller JH, eds) pp 1913-1917. Roetschi A., Si-Ammour A., Belbahri L., Mauch F. and Mauch-Mani B. (2001). Characterization of an Arabidopsis-Phytophthora pathosystem: resistance requires a functional PAD2 gene and isindependent of salicylic acid, ethylene and jamonic acid signalling.Plant Journal 28: 293-305. Kozlowsi G. (2001). Bedeutung der Herbarien des Naturhistorischen Museums Freiburg (Schweiz) für die Erforschung und Erhaltung der Freiburger Flora. Bull. Soc. Frib. Sc. Nat. 90: 49-59. Kozlowski G. (2001). Une plante rarissime dans le canton de Fribourg: le Nénuphar nain [Nuphar pumila (Timm.) DC.]. Bull. Soc. Frib. Sc. Nat. 90: 60-71. Kargul J., Gansel X., Tyrrell M., Sticher L. and Blatt M.R. (2001). Protein-binding partners of the tobacco syntaxin NtSyr1. FEBS Letters 508: 253-258. Heese M., Gansel X., Sticher L., Wick P., Grebe M., Granier, F. and Jürgens G. (2001). Functional characterization of the KNOLLE-interacting t-SNARE AtSNAP33 and its role in plant cytokinesis. J. Cell Biol. 155: 239-250. Genoud T., Trevino Santa Crux M., Métraux J.-P. (2001). Digital Simulation of Plant Signaling Networks. Plant Physiology 126: 1430-1437. Zimmerli L., Métraux J.P. and Mauch-Mani, B. (2001). Beta-aminobutyric acid-induced protection of Arabidopsis against the necrotrophic fungus Botrytis cinerea. Plant Physiology, 126: 517-523. Thomma B.P.H.J., Tierens K. F.M.-J., Penninckx I.A.M.A., Mauch-Mani, B., Broekaert W.F. and CammueB.P.A. (2001).Different micro-organisms differentially induce Arabidopsis disease response pathways. Plant Physiology andBiochemistry, 39: 673-680. Hilpert B., Bohlmann H., op den Camp R., Przybyta D., Miersch O., Buchala A., Apel K (2001). Isolation and characterization of signal transduction mutants of Arabiopsis thaliana that constitutively activate the octadecanoid pathway and form necrotic microlesions. Plant Journal 26: 435-446. Tierens K. F.M.-J., Thomma B.P.H.J., Brouwer M., Schmidt J., Kistner K., Porzel A., Mauch-Mani B., CammueB.P.A. and Broekaert W.F. (2001).Study of the role of antimicrobial glucosinolate-derived isothiocyanates in resistance of Arabidopsis tomicrobial pathogens. Plant Physiology 125: 1688-1699. Hammerschmidt, R., Métraux, J.-P., van Loon, L.C. (2001). InducingResistance: A Summary of Papers Presented at the First International Symposium on Induced Resistance to Plant Diseases, Corfu, May 2000.European Journal of Plant Pathology, 107: 1-6. Jakab G., Cottier V., Toquin V., Rigoli G., Zimmerli L., Métraux J.-P., Mauch-Mani, B. (2001). Beta-Aminobutyric Acid-induced Resistance in Plants. European Journal of Plant Pathology, 107: 29-37. Métraux J.-P. (2001). Systemic Acquired Resistance and Salicylic Acid: Current State of Knowledge. European Journal of Plant Pathology, 107: 13-18. Mauch F., Mauch-Mani B., Gaille C., Kull B., Haas D., Reimmannn C. (2001). Manipulation of salicylate content in Arabidopsis thaliana by the expression of an engineered bacterial salicylate synthase. The Plant Journal, 25: 67-77. Landergott U, R. Holderegger, Kozlowski G., Schneller J. (2001) Historical bottlenecks decrease genetic diversity in natural populations of Dryopteris cristata. Heredity, 87: 344-355. Ringli, C., Keller, B., Ryser, U. (2001).
2000
Mayda E., B. Mauch-Mani, and P. Vera (2000). The Arabidopsis dth9 mutation identifies a gene involved in regulating disease susceptibility without affecting SA-dependent responses. Plant Cell 12: 2119 - 2128. Schaffrath U., Mauch F., Freydl E., Schweizer P., and Dudler R. (2000). Constitutive expression of the defense-related Rir1b gene in transgenic rice plants confers enhanced resistance to the rice blast fungus Magnaporthe grisea. Plant Molecular Biology 43: 59-66. Ibrahim M., Si-Ammour A., Celio M.R., Mauch F. and Menoud P.-A. Menoud (2000). Construction and Application of a Microprojectile System for the Transformation of Organotypic Brain Slices. Jounal of Neuroscience Methods 101: 171-179. Zimmerli, L., Jakab, G., Métraux, J.P., Mauch-Mani, B. (2000). Potentiation of pathogen-specific defense mechanisms in Arabidopsis by beta-aminobutyric acid. Proceedings National Academy of Sciences (USA) 97: 12920-12925. Bohmert K., Balbo I., Kopka J., Mittendorf V., Nawrath C., Poirier Y., Tischendorf G., Trethewey R.N., Willmitzer L. (2000) Transgenic Arabidopsis plants can accumulate polyhydroxybutyrate to up to 4% of their fresh weight. Planta 211: 841-845. Pieterse C.M.J., van Pelt J.A., Ton J., Parchmann S., Müller M.J., Buchala A.J., Métraux J.P., van Loon L.C. (2000) Rhizobacteria-mediated induced systemic resistance (ISR) in Arabidopsis requires sensitivity to jasmonate and ethylene but is not accompanied by an increase intheir production. Physiological and Molecular Plant Pathology 57: 123-134. Sticher L., Métraux J.P. (2000) Inhibitorsof N-linked glycosylation induce systemic acquired resistance incucumber. Physiological and Molecular Plant Pathology 56: 245-252. Sieber P., Schorderet M., Ryser U., Buchala A., Kolattukudy P., Métraux J.P., Nawrath. (2000) Transgenic Arabidopsis Plants Expressing a Fungal Cutinase Show Alterations in the Structure and Properties of the Cuticle and Postgenital Organ Fusions.Plant Cell 12: 721-738. Landergott U, R. Holderegger, Schneller J., Kozlowski G. (2000) Populationsgeschichte des seltenen Kammfarns Dryopteris cristata in der Schweiz, Botanica Helvetica, 110: 151-170. Purro Ch, Kozlowski G. (2000) Situation du sabot de Vénus (Cypripedium calceolus L.) dans le canton de Fribourg, Bull. Soc. Frib. Sc. Nat. 89: 117-131. Kozlowski G. (2000) Gefährdungsstatus einiger Begleiter der Vulpia myuros-Gesellschaften im Kanton Freiburg, Bull. Soc. Frib. Sc. Nat., 89(2): 133-162. Kozlowski G. (2000) Der Kammfarn [Dryopteris cristata (L.) GRAY] in den Mösern von Düdingen und Sâles (Kt. Freiburg), Das Prothallium., 5: 1-5.
1999
Kozlowski, G., Métraux, J.-P. (1999) Antifungal properties of Norway Spruce (Picea abies (L.) Karst.) seedling homogenates. Acta Societatis Botanicorum Poloniae 68: 191-195. Genoud, T., Metraux, J.P. (1999) Crosstalk in plant cell signaling: structure function of the genetic network. Trends in Plant Science 4: 503-507. Schafleitner R., Buchala, A., Wilhelm, E. (1999) Class III Chitinase Expression and Salicylic Acid Accumulation in Chestnut after Challenge with Hypovirulent and Virulent Cryphonectria parasitica (Murr.) Barr Phyton 39: 191-196. Kozlowski, G., Buchala , A., Métraux, J.-P. (1999) Methyl jasmonate protects Norway spruce [Picea abies (L.) Karst.] seedlings against Pythium ultimum Trow. Physiol. Molec. Plant Pathology 55: 53-58. Buchala A.J. (1999) Non-cellulosicCarbohydrates in cotton fibres. In: A.S. Basra (ed.) Cotton Fibers Developmental Biology, Quality Improvement and Textile Processing. Haworth Press, Binghampton. Chap. 5. Ryser U. (1999)
Towards the elucidation of the pathway leading to the biosynthesis of salicylic acid in Arabidopsis. In: Biology of Plant-Microbe Interactions, Volume 3, Eds. Leong, S., Allen, C., Triplett, E.W. International Society for Plant-Microbe Interatcions, St. Paul, MN, USA, pp 64-71.
Glycine-rich proteins as structural components of plant cell walls. Cellular and Molecular Life Sciences 58: 1430-1441.
Cotton fiber initiation and histodifferentiation. In: A.S. Basra (ed.) Cotton Fibers Developmental Biology, Quality Improvement and Textile Processing. Haworth Press, Binghampton. Chap. 1.
Chemical analysis and immunolocalisation of lignin and suberin in the endodermis and hypodermis/rhizodermis of developing maize (Zea mays L.) roots. Planta 209: 1-12.