Dynamic metabolic reprogramming of steroidal glycol-alkaloid and phenylpropanoid biosynthesis may impart early blight resistance in wild tomato (Solanum arcanum Peralta)
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A. Aharoni | I. Rogachev | A. Giri | S. Meir | B. B. Dholakia | S. Panda | A. Kamble | K. Hussain | B. A. Shinde
[1] Hezi Tenenboim,et al. Omic Relief for the Biotically Stressed: Metabolomics of Plant Biotic Interactions. , 2016, Trends in plant science.
[2] R. Wehrens,et al. The WEIZMASS spectral library for high-confidence metabolite identification , 2016, Nature Communications.
[3] D. Levy,et al. Corrigendum: Diverse human extracellular RNAs are widely detected in human plasma , 2016, Nature Communications.
[4] F. Mauch,et al. Regulatory and Functional Aspects of Indolic Metabolism in Plant Systemic Acquired Resistance. , 2016, Molecular plant.
[5] Keith Dobney,et al. Earliest “Domestic” Cats in China Identified as Leopard Cat (Prionailurus bengalensis) , 2016, PloS one.
[6] Wei Yang,et al. Rutin-Mediated Priming of Plant Resistance to Three Bacterial Pathogens Initiating the Early SA Signal Pathway , 2016, PloS one.
[7] P. Panigrahi,et al. Metabolic profiling of chickpea-Fusarium interaction identifies differential modulation of disease resistance pathways. , 2015, Phytochemistry.
[8] H. Endo,et al. NAC-MYB-based transcriptional regulation of secondary cell wall biosynthesis in land plants , 2015, Front. Plant Sci..
[9] A. Osbourn,et al. MYB Transcription Factors as Regulators of Phenylpropanoid Metabolism in Plants. , 2015, Molecular plant.
[10] David S. Wishart,et al. MetaboAnalyst 3.0—making metabolomics more meaningful , 2015, Nucleic Acids Res..
[11] J. Renaut,et al. An improved protocol to study the plant cell wall proteome , 2015, Front. Plant Sci..
[12] Jason A. Corwin,et al. An Arabidopsis Gene Regulatory Network for Secondary Cell Wall Synthesis , 2014, Nature.
[13] S. Bellevue. Transcription factor StWRKY1 regulates phenylpropanoid metabolites conferring late blight resistance in potato , 2015 .
[14] M. Reichelt,et al. N-Acyl-Homoserine Lactone Primes Plants for Cell Wall Reinforcement and Induces Resistance to Bacterial Pathogens via the Salicylic Acid/Oxylipin Pathway[C][W][OPEN] , 2014, Plant Cell.
[15] S. Shannon,et al. Steroidal alkaloids of Solanum lycopersicoides , 2014 .
[16] A. Aharoni,et al. Analysis of steroidal alkaloids and saponins in Solanaceae plant extracts using UPLC-qTOF mass spectrometry. , 2014, Methods in molecular biology.
[17] A. Kushalappa,et al. Identification of Late Blight Resistance-Related Metabolites and Genes in Potato through Nontargeted Metabolomics , 2013, Plant Molecular Biology Reporter.
[18] A. Aharoni,et al. Biosynthesis of Antinutritional Alkaloids in Solanaceous Crops Is Mediated by Clustered Genes , 2013, Science.
[19] S. Sattler,et al. Modifying lignin to improve bioenergy feedstocks: strengthening the barrier against pathogens? , 2013, Front. Plant Sci..
[20] Jian-Kang Zhu,et al. Rapid phosphatidic acid accumulation in response to low temperature stress in Arabidopsis is generated through diacylglycerol kinase , 2013, Front. Plant Sci..
[21] R. Datla,et al. Genome-wide identification and characterization of microRNA genes and their targets in flax (Linum usitatissimum) , 2013, Planta.
[22] J. Seo,et al. Nontargeted metabolite profiling in compatible pathogen-inoculated tobacco (Nicotiana tabacum L. cv. Wisconsin 38) using UPLC-Q-TOF/MS. , 2012, Journal of agricultural and food chemistry.
[23] A. Kushalappa,et al. Integrated Metabolo-Proteomic Approach to Decipher the Mechanisms by Which Wheat QTL (Fhb1) Contributes to Resistance against Fusarium graminearum , 2012, PloS one.
[24] Godelieve Gheysen,et al. Transcription factor WRKY23 assists auxin distribution patterns during Arabidopsis root development through local control on flavonol biosynthesis , 2012, Proceedings of the National Academy of Sciences.
[25] Simon C. Potter,et al. A Genome-Wide Association Search for Type 2 Diabetes Genes in African Americans , 2012, PLoS ONE.
[26] Poly Saha,et al. Assessment of Yield Loss Due to Early Blight (Alternaria solani) in Tomato , 2012 .
[27] A. Aharoni,et al. GLYCOALKALOID METABOLISM1 Is Required for Steroidal Alkaloid Glycosylation and Prevention of Phytotoxicity in Tomato[W] , 2011, Plant Cell.
[28] A. D. Jones,et al. Molecular and Biochemical Basis for Stress-Induced Accumulation of Free and Bound p-Coumaraldehyde in Cucumber1[W][OA] , 2011, Plant Physiology.
[29] Barbara Lachenbruch,et al. Reduced wood stiffness and strength, and altered stem form, in young antisense 4CL transgenic poplars with reduced lignin contents. , 2011, The New phytologist.
[30] B. Fan,et al. Functional Analysis of the Arabidopsis PAL Gene Family in Plant Growth, Development, and Response to Environmental Stress1[W][OA] , 2010, Plant Physiology.
[31] J. Pedersen,et al. Alteration in lignin biosynthesis restricts growth of Fusarium spp. in brown midrib sorghum. , 2010, Phytopathology.
[32] D. Roby,et al. Cinnamyl alcohol dehydrogenases-C and D, key enzymes in lignin biosynthesis, play an essential role in disease resistance in Arabidopsis. , 2010, Molecular plant pathology.
[33] I. Major,et al. Expression profiling and functional analysis of Populus WRKY23 reveals a regulatory role in defense. , 2009, The New phytologist.
[34] L. Jouanin,et al. Impact of CCR1 silencing on the assembly of lignified secondary walls in Arabidopsis thaliana. , 2009, The New phytologist.
[35] G. Selvaraj,et al. Role of lignification in plant defense , 2009, Plant signaling & behavior.
[36] R. Dixon,et al. Elicitor-induced transcription factors for metabolic reprogramming of secondary metabolism in Medicago truncatula , 2008, BMC Plant Biology.
[37] R. Zhong,et al. A Battery of Transcription Factors Involved in the Regulation of Secondary Cell Wall Biosynthesis in Arabidopsis , 2008, The Plant Cell Online.
[38] Thomas D. Schmittgen,et al. Analyzing real-time PCR data by the comparative CT method , 2008, Nature Protocols.
[39] Royston Goodacre,et al. Metabolomic technologies and their application to the study of plants and plant-host interactions. , 2007, Physiologia plantarum.
[40] C. Eynck,et al. Differential interactions of Verticillium longisporum and V. dahliae with Brassica napus detected with molecular and histological techniques , 2007, European Journal of Plant Pathology.
[41] R. Voorrips,et al. Assessment of early blight (Alternaria solani) resistance in tomato using a droplet inoculation method , 2007, Journal of General Plant Pathology.
[42] M. Friedman. Potato glycoalkaloids and metabolites: roles in the plant and in the diet. , 2006, Journal of agricultural and food chemistry.
[43] Kang-Chang Kim,et al. Pathogen-Induced Arabidopsis WRKY7 Is a Transcriptional Repressor and Enhances Plant Susceptibility to Pseudomonas syringae1[W] , 2006, Plant Physiology.
[44] Nan Wang,et al. AgBase: a functional genomics resource for agriculture , 2006, BMC Genomics.
[45] R. Abagyan,et al. XCMS: processing mass spectrometry data for metabolite profiling using nonlinear peak alignment, matching, and identification. , 2006, Analytical chemistry.
[46] V. Lattanzio,et al. Role of phenolics in the resistance mechanisms of plants against fungal pathogens and insects. , 2006 .
[47] S. Ito,et al. Tomatidine and lycotetraose, hydrolysis products of α‐tomatine by Fusarium oxysporum tomatinase, suppress induced defense responses in tomato cells , 2004, FEBS letters.
[48] Pierluigi Bonello,et al. Systemic Effects of Heterobasidion annosum on Ferulic Acid Glucoside and Lignin of Presymptomatic Ponderosa Pine Phloem, and Potential Effects on Bark-Beetle-Associated Fungi , 2003, Journal of Chemical Ecology.
[49] K. K. Pandey,et al. Resistance to early blight of tomato with respect to various parameters of disease epidemics , 2003, Journal of General Plant Pathology.
[50] P. Shannon,et al. Cytoscape: a software environment for integrated models of biomolecular interaction networks. , 2003, Genome research.
[51] Liangjiang Wang,et al. The phenylpropanoid pathway and plant defence-a genomics perspective. , 2002, Molecular plant pathology.
[52] A. Osbourn,et al. A saponin-detoxifying enzyme mediates suppression of plant defences , 2002, Nature.
[53] A. Osbourn,et al. Fungal Resistance to Plant Antibiotics as a Mechanism of Pathogenesis , 1999, Microbiology and Molecular Biology Reviews.
[54] A. Osbourn. Antimicrobial phytoprotectants and fungal pathogens: a commentary. , 1999, Fungal genetics and biology : FG & B.
[55] A. Osbourn. Preformed Antimicrobial Compounds and Plant Defense against Fungal Attack. , 1996, The Plant cell.
[56] A. Osbourn. Saponins and plant defence — a soap story , 1996 .
[57] J. Grima-Pettenati,et al. Biochemistry and molecular biology of lignification. , 1995, The New phytologist.
[58] S. Linn,et al. Partial purification and characterization of four endodeoxyribonuclease activities from Escherichia coli K-12. , 1974, Nucleic acids research.
[59] R. Durbin,et al. Studies on the mode of action of tomatine as a fungitoxic agent. , 1968, Plant physiology.