Pathogen Phytosensing: Plants to Report Plant Pathogens
暂无分享,去创建一个
C. N. Stewart | Mitra Mazarei | C. Neal Stewart | M. Mazarei | M. R. Hajimorad | I. Teplova | Irina Teplova | M. Reza Hajimorad | C. N. Stewart
[1] Olga Kovalchuk,et al. Transgenic Plants as Sensors of Environmental Pollution Genotoxicity , 2008, Sensors.
[2] H. Inui,et al. Aryl hydrocarbon receptor (AhR)-mediated reporter gene expression systems in transgenic tobacco plants , 2007, Planta.
[3] M. Venter,et al. Synthetic promoters: genetic control through cis engineering. , 2007, Trends in plant science.
[4] C. N. Stewart,et al. 'GM-gene-deletor': fused loxP-FRT recognition sequences dramatically improve the efficiency of FLP or CRE recombinase on transgene excision from pollen and seed of tobacco plants. , 2007, Plant biotechnology journal.
[5] Jonathan D. G. Jones,et al. The plant immune system , 2006, Nature.
[6] Uwe Conrath,et al. Systemic Acquired Resistance , 2006, Plant signaling & behavior.
[7] C. N. Stewart,et al. Go with the glow: fluorescent proteins to light transgenic organisms. , 2006, Trends in biotechnology.
[8] C. Lamb,et al. Systemic immunity. , 2006, Current opinion in plant biology.
[9] P. R. Scott,et al. Plant disease: a threat to global food security. , 2005, Annual review of phytopathology.
[10] J. Glazebrook. Contrasting mechanisms of defense against biotrophic and necrotrophic pathogens. , 2005, Annual review of phytopathology.
[11] C. N. Stewart,et al. Monitoring the presence and expression of transgenes in living plants. , 2005, Trends in plant science.
[12] P. Rushton,et al. Engineering plants with increased disease resistance: how are we going to express it? , 2005, Trends in biotechnology.
[13] P. Rushton,et al. Engineering plants with increased disease resistance: what are we going to express? , 2005, Trends in biotechnology.
[14] J. Ryals,et al. Activation of systemic acquired disease resistance in plants , 1994, European Journal of Plant Pathology.
[15] L. Piater,et al. Innate immunity in plants and animals: striking similarities and obvious differences , 2004, Immunological reviews.
[16] J. Metraux,et al. Systemic acquired resistance , 2002, Euphytica.
[17] S. Gan,et al. Identical promoter elements are involved in regulation of the OPR1 gene by senescence and jasmonic acid in Arabidopsis , 2001, Plant Molecular Biology.
[18] A. Bogdanove,et al. Understanding the functions of plant disease resistance proteins. , 2003, Annual review of plant biology.
[19] U. Grossniklaus,et al. A Gateway Cloning Vector Set for High-Throughput Functional Analysis of Genes in Planta[w] , 2003, Plant Physiology.
[20] C. N. Stewart,et al. Pathogen inducible reporting in transgenic tobacco using a GFP construct , 2003 .
[21] Kemal Kazan,et al. A Role for the GCC-Box in Jasmonate-Mediated Activation of the PDF1.2 Gene of Arabidopsis1 , 2003, Plant Physiology.
[22] Daoxiu Zhou,et al. A jasmonate-responsive element within the A. thaliana vsp1 promoter. , 2003, Journal of experimental botany.
[23] I. Somssich,et al. Synthetic Plant Promoters Containing Defined Regulatory Elements Provide Novel Insights into Pathogen- and Wound-Induced Signaling Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.010412. , 2002, The Plant Cell Online.
[24] Chunhong Chen,et al. Evidence for an Important Role of WRKY DNA Binding Proteins in the Regulation of NPR1 Gene Expression , 2001, The Plant Cell Online.
[25] M. R. Hajimorad,et al. Rsv1-mediated resistance against soybean mosaic virus-N is hypersensitive response-independent at inoculation site, but has the potential to initiate a hypersensitive response-like mechanism. , 2001, Molecular plant-microbe interactions : MPMI.
[26] I. Somssich,et al. A novel regulatory element involved in rapid activation of parsley ELI7 gene family members by fungal elicitor or pathogen infection. , 2000, Molecular plant pathology.
[27] J. Hancock,et al. Harpin induces mitogen-activated protein kinase activity during defence responses in Arabidopsis thaliana suspension cultures , 1999, Planta.
[28] J. Memelink,et al. A novel jasmonate‐ and elicitor‐responsive element in the periwinkle secondary metabolite biosynthetic gene Str interacts with a jasmonate‐ and elicitor‐inducible AP2‐domain transcription factor, ORCA2 , 1999, The EMBO journal.
[29] B. Thomma,et al. Separate jasmonate-dependent and salicylate-dependent defense-response pathways in Arabidopsis are essential for resistance to distinct microbial pathogens. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[30] S. Clough,et al. Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana. , 1998, The Plant journal : for cell and molecular biology.
[31] P. Heifetz,et al. Functional analysis of regulatory sequences controlling PR-1 gene expression in Arabidopsis. , 1998, The Plant journal : for cell and molecular biology.
[32] C. Pieterse,et al. A Novel Signaling Pathway Controlling Induced Systemic Resistance in Arabidopsis , 1998, Plant Cell.
[33] D. Klessig,et al. Identification of a salicylic acid-responsive element in the promoter of the tobacco pathogenesis-related beta-1,3-glucanase gene, PR-2d. , 1996, The Plant journal : for cell and molecular biology.
[34] M. Ohme-Takagi,et al. Ethylene-inducible DNA binding proteins that interact with an ethylene-responsive element. , 1995, The Plant cell.
[35] M. Rask,et al. A 20 bp cis-acting element is both necessary and sufficient to mediate elicitor response of a maize PRms gene. , 1995, The Plant journal : for cell and molecular biology.
[36] A. Theologis,et al. Transient transformation of Arabidopsis leaf protoplasts: a versatile experimental system to study gene expression. , 1994, The Plant journal : for cell and molecular biology.
[37] P. Benfey,et al. Tissue‐specific expression from CaMV 35S enhancer subdomains in early stages of plant development. , 1990, The EMBO journal.
[38] F. Nagy,et al. Multiple cis regulatory elements for maximal expression of the cauliflower mosaic virus 35S promoter in transgenic plants. , 1989, The Plant cell.
[39] L. Bastiaans,et al. Alfalfa mosaic virus isolates from lucerne in South Australia: biological variability and antigenic similarity , 1988 .
[40] M. Bevan,et al. GUS fusions: beta‐glucuronidase as a sensitive and versatile gene fusion marker in higher plants. , 1987, The EMBO journal.
[41] J. Fry,et al. A simple and general method for transferring genes into plants. , 1985, Science.