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Database Name: Article Citation Database
Search Request: Command = nkey Schulze-Lefert
Search Results: Displaying 1 through 63 of 63 entries.



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# Date Title Long Author
[ 1 ] 2009 Extracellular transport and integration of plant secretory proteins into pathogen-induced cell wall compartments [electronic resource]. Meyer, Dorit
[ 2 ] 2009 Glucosinolate Metabolism Pathway in Living Plant Cells Mediates Broad-Spectrum Antifungal Defense. Bednarek, Paweł
[ 3 ] 2008 Activity Determinants and Functional Specialization of Arabidopsis PEN1 Syntaxin in Innate Immunity. Pajonk, Simone
[ 4 ] 2008 Dual function of Arabidopsis glucan synthase-like genes GSL8 and GSL10 in male gametophyte development and plant growth [electronic resource]. Töller, Armin
[ 5 ] 2008 Secretory Pathways in Plant Immune Responses. Kwon, Chian
[ 6 ] 2007 Barley MLO Modulates Actin-Dependent and Actin-Independent Antifungal Defense Pathways at the Cell Periphery [electronic resource]. Miklis, Marco
[ 7 ] 2007 Chemical Interference of Pathogen-associated Molecular Pattern-triggered Immune Responses in Arabidopsis Reveals a Potential Role for Fatty-acid Synthase Type II Complex-derived Lipid Signals [electronic resource]. Serrano, Mario
[ 8 ] 2007 Nuclear Activity of MLA Immune Receptors Links Isolate-Specific and Basal Disease-Resistance Responses [electronic resource]. Shen, Qian-Hua
[ 9 ] 2007 Resistance to cereal rusts at the plant cell wall--what can we learn from other host-pathogen systems? Collins, N.C.
[ 10 ] 2007 Rumble in the nuclear jungle: compartmentalization, trafficking, and nuclear action of plant immune receptors [electronic resource]. Shen, Q.H.
[ 11 ] 2006 Arabidopsis PEN3/PDR8, an ATP Binding Cassette Transporter, Contributes to Nonhost Resistance to Inappropriate Pathogens That Enter by Direct Penetration [electronic resource]. Stein, Mónica
[ 12 ] 2006 Expression analysis of the AtMLO Gene Family Encoding Plant-Specific Seven-Transmembrane Domain Proteins [electronic resource]. Chen, Z.
[ 13 ] 2006 Mapped Ds/T-DNA launch pads for functional genomics in barley [electronic resource]. Zhao, Tiehan
[ 14 ] 2006 Metabolic consequences of susceptibility and resistance (race-specific and broad-spectrum) in barley leaves challenged with powdery mildew. SWARBRICK, PHILIP J.
[ 15 ] 2006 Nonhost resistance in Arabidopsis-Colletotrichum interactions acts at the cell periphery and requires actin filament function. Shimada, C.
[ 16 ] 2005 Barley Rom1 reveals a potential link between race-specific and nonhost resistance responses to powdery mildew fungi. Freialdenhoven, A.
[ 17 ] 2005 Conserved ERAD-like quality control of a plant polytopic membrane protein. Muller, J.
[ 18 ] 2005 Pre- and Postinvasion Defenses Both Contribute to Nonhost Resistance in Arabidopsis. Lipka, Volker
[ 19 ] 2005 Recruitment and interaction dynamics of plant penetration resistance components in a plasma membrane microdomain. Bhat, R.A.
[ 20 ] 2004 Barley cultivation-associated polymorphism conveys resistance to powdery mildew. Piffanelli, P.
[ 21 ] 2004 Host and non-host pathogens elicit different jasmonate/ethylene responses in Arabidopsis. Zimmerli, L.
[ 22 ] 2004 Knocking on the heaven's wall: pathogenesis of and resistance to biotrophic fungi at the cell wall. Schulze-Lefert, P.
[ 23 ] 2003 Complex formation, promiscuity and multi-functionality: protein interactions in disease-resistance pathways. Shirasu, K.
[ 24 ] 2003 Establishment of biotrophy by parasitic fungi and reprogramming of host cells for disease resistance. Schulze-Lefert, P.
[ 25 ] 2003 Molecular phylogeny and evolution of the plant-specific seven-transmembrane MLO family. Devoto, A.
[ 26 ] 2002 Calmodulin interacts with MLO protein to regulate defence against mildew in barley. Kim, M.C.
[ 27 ] 2002 Functional conservation of wheat and rice Mlo orthologs in defense modulation to the powdery mildew fungus. Elliott, C.
[ 28 ] 2002 Live and let live: insights into powdery mildew disease and resistance. Panstruga, R.
[ 29 ] 2002 RAR1 interactor SGT1, an essential component of R gene-triggered disease resistance. Azevedo, C.
[ 30 ] 2001 Cell-autonomous expression of barley Mla1 confers race-specific resistance to the powdery mildew fungus via a Rar1-independent signaling pathway. Zhou, F.
[ 31 ] 2001 High-resolution genetic map and a diagnostic RFLP marker for the Mlg resistance locus to powdery mildew in barley. Kurth, J.
[ 32 ] 2001 MLA6 coiled-coil, NBS-LRR protein confers AvrMla6-dependent resistance specificity to Blumeria graminis f. sp. hordei in barley and wheat. Halterman, D.
[ 33 ] 2001 Sequence haplotypes revealed by sequence-tagged site fine mapping of the Ror1 gene in the centromeric region of barley chromosome 1H. Collins, N.C.
[ 34 ] 2000 Closing the ranks to attack by powdery mildew. Schulze-Lefert, P.
[ 35 ] 2000 Double-stranded RNA interferes with gene function at the single-cell level in cereals. Schweizer, P.
[ 36 ] 2000 Regulators of cell death in disease resistance. Shirasu, K.
[ 37 ] 1999 Cell-autonomous complementation of mlo resistance using a biolistic transient expression system. Shirasu, K.
[ 38 ] 1999 Defence signalling pathways in cereals. Piffanelli, P.
[ 39 ] 1999 Mla (powdery mildew) resistance cluster is associated with three NBS-LRR gene families and suppressed recombination within a 240-kb DNA interval on chromosome 5S (1HS) of barley. Wei, F.
[ 40 ] 1999 RFLP- and physical mapping of resistance gene homologues in rice (O. sativa) and barley (H. vulgare). Leister, D.
[ 41 ] 1999 Topology, subcellular localization, and sequence diversity of the Mlo family in plants. Devoto, A.
[ 42 ] 1998 Chromosome landing at the barley Rar1 locus. Lahaye, T.
[ 43 ] 1998 Contiguous 60 kb genomic stretch from barley reveals molecular evidence for gene islands in a monocot genome. Panstruga, R.
[ 44 ] 1998 High-resolution genetic and physical mapping of the Rar1 locus in barley. Lahaye, T.
[ 45 ] 1998 Rapid reorganization of resistance gene homologues in cereal genomes. Leister, D.
[ 46 ] 1998 Structural analyses and dynamics of soluble and cell wall-bound phenolics in a broad spectrum resistance to the powdery mildew fungus in barley. Von Ropenack, E.
[ 47 ] 1998 Superfamily of disease resistance gene analogs is located on all homoeologous chromosome groups of wheat (Triticum aestivum). Spielmeyer, W.
[ 48 ] 1997 AFLP-based fine mapping of the Mlo gene to a 30-kb DNA segment of the barley genome. Simons, G.
[ 49 ] 1997 Interaction of analyses of genes required for resistance responses to powdery mildew in barley reveal distinct pathways leading to leaf cell death. Peterhansel, C.
[ 50 ] 1997 Mutation analysis for the dissection of resistance. Schulze-Lefert, P.
[ 51 ] 1997 Tissue dependence and differential cordycepin sensitivity of race-specific resistance responses in the barley-powdery mildew interaction. Schiffer, R.
[ 52 ] 1996 Identification of genes required for the function of non-race-specific mlo resistance to powdery mildew in barley. Freialdenhoven, A.
[ 53 ] 1995 Molecular cloning, characterization and expression analysis of two catalase isozyme genes in barley. Skadsen, R.W.
[ 54 ] 1994 Analysis of the parsley chalcone-synthase promoter in response to different light qualities. Merkle, T.
[ 55 ] 1994 Dissection of resistance pathways in barley to powdery mildew attack. Schulze-Lefert, P.
[ 56 ] 1994 Nar-1 and Nar-2, two loci required for Mla12-specified race-specific resistance to powdery mildew in barley. Freialdenhoven, A.
[ 57 ] 1993 Functional analysis and RFLP-mediated mapping of the Mlg resistance locus in barley. Gorg, R.
[ 58 ] 1993 Mlo resistance alleles to powdery mildew infection in barley trigger a developmentally controlled defence mimic phenotype. Wolter, M.
[ 59 ] 1991 Parsley 4CL-1 promoter fragment specifies complex expression patterns in transgenic tobacco. Hauffe, K.D.
[ 60 ] 1991 Restriction fragment length polymorphism-mediated targeting of the ml-o resistance locus in barley (Hordeum vulgare). Hinze, K.
[ 61 ] 1991 Structural comparison, modes of expression, and putative cis-acting elements of the two 4-coumarate:CoA ligase genes in potato. Becker-Andre, M.
[ 62 ] 1990 Functional borders, genetic fine structure, and distance requirements of cis elements mediating light responsiveness of the parsley chalcone synthase promoter. Block, A.
[ 63 ] 1989 Functional architecture of the light-responsive chalcone synthase promoter from parsley. Schulze-Lefert, P.

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