Early Detection of the Fungal Banana Black Sigatoka Pathogen Pseudocercospora fijiensis by an SPR Immunosensor Method
暂无分享,去创建一个
Juan Francisco Villarreal-Chiu | Donato Luna-Moreno | Araceli Sánchez-Álvarez | Melissa Marlene Rodriguez-Delgado | Ignacio Islas-Flores | Blondy Canto-Canche | Mildred Carrillo-Pech | I. Islas-Flores | D. Luna-Moreno | B. Canto-Canché | M. Rodríguez-Delgado | Mildred Carrillo-Pech | J. Villarreal-Chiu | A. Sánchez-Álvarez
[1] Yang Li,et al. Detection of picomolar levels of interleukin-8 in human saliva by SPR. , 2005, Lab on a chip.
[2] S. German-Retana,et al. Analysis of the serological variability of Lettuce mosaic virus using monoclonal antibodies and surface plasmon resonance technology. , 2007, The Journal of general virology.
[3] T. Mengiste,et al. Necrotroph Attacks on Plants: Wanton Destruction or Covert Extortion? , 2010, The arabidopsis book.
[4] Chen-Han Huang,et al. Direct detection of orchid viruses using nanorod-based fiber optic particle plasmon resonance immunosensor. , 2014, Biosensors & bioelectronics.
[5] Alfredo de la Escosura-Muñiz,et al. Biosensors for plant pathogen detection. , 2017, Biosensors & bioelectronics.
[6] L Torrance,et al. Oriented immobilisation of engineered single-chain antibodies to develop biosensors for virus detection. , 2006, Journal of virological methods.
[7] H. Radecka,et al. Impedimetric Immunosensor for Detection of Plum Pox Virus in Plant Extracts , 2011 .
[8] D. Luna-Moreno,et al. Control of Stepper Motor Rotary Stages applied to optical sensing technique using LabView , 2018, Optik.
[9] A. M. Escuela,et al. Indirect competitive immunoassay for the detection of fungicide Thiabendazole in whole orange samples by Surface Plasmon Resonance. , 2012, The Analyst.
[10] Enrique Rico-García,et al. The effect of climate change on plant diseases , 2012 .
[11] J. Schmutz,et al. Combating a Global Threat to a Clonal Crop: Banana Black Sigatoka Pathogen Pseudocercospora fijiensis (Synonym Mycosphaerella fijiensis) Genomes Reveal Clues for Disease Control , 2016, PLoS Genetics.
[12] Xuan Weng,et al. Agro-defense: Biosensors for food from healthy crops and animals , 2017 .
[13] Hanna Radecka,et al. Detection of Prunus Necrotic Ringspot Virus in Plant Extracts with Impedimetric Immunosensor based on Glassy Carbon Electrode , 2013 .
[14] M. Jiménez,et al. Monoclonal Antibody‐based TAS‐ELISA for Quantitative Detection of Mycosphaerella fijiensis Antigens , 2007 .
[15] J. Homola,et al. Surface Plasmon Resonance (SPR) Sensors , 2006 .
[16] Liqiang Liu,et al. Dual amplified electrochemical immunosensor for highly sensitive detection of Pantoea stewartii sbusp. stewartii. , 2014, ACS applied materials & interfaces.
[17] Alok K. Srivastava,et al. Nanodiagnostics for plant pathogens , 2016, Environmental Chemistry Letters.
[18] M. Villanueva,et al. Biochemical characterization and immunolocalization studies of a Capsicum chinense Jacq. protein fraction containing DING proteins and anti-microbial activity. , 2016, Plant physiology and biochemistry : PPB.
[19] Reza Ehsani,et al. Review: A review of advanced techniques for detecting plant diseases , 2010 .
[20] Amy Elliott,et al. Smoothing Group-Based Trajectory Models Through B-Splines , 2016 .
[21] Alberto Salomone,et al. RELIABILITY OF DETECTION OF CITRUS TRISTEZA VIRUS BY AN IMMUNOCHROMATOGRAPHIC LATERAL FLOW ASSAY IN COMPARISON WITH ELISA , 2004 .
[22] Hong Yan Song,et al. Comparative study of random and oriented antibody immobilization as measured by dual polarization interferometry and surface plasmon resonance spectroscopy. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[23] The future of food and agriculture: Trends and challenges , 2016 .
[24] K. Jiao,et al. Sensitive detection of a plant virus by electrochemical enzyme-linked immunoassay , 2000, Fresenius' journal of analytical chemistry.
[25] S. K. Vashist,et al. Effect of antibody immobilization strategies on the analytical performance of a surface plasmon resonance-based immunoassay. , 2011, The Analyst.
[26] P. Skottrup,et al. Towards on-site pathogen detection using antibody-based sensors. , 2008, Biosensors & bioelectronics.
[27] D. Castner,et al. XPS, TOF-SIMS, NEXAFS, and SPR characterization of nitrilotriacetic acid-terminated self-assembled monolayers for controllable immobilization of proteins. , 2008, Analytical chemistry.
[28] I. Islas-Flores,et al. Expression of MfAvr4 in banana leaf sections with black leaf streak disease caused by Mycosphaerella fijiensis: a technical validation , 2016, Australasian Plant Pathology.
[29] S. Free,et al. Trifluoromethanesulfonic acid-based proteomic analysis of cell wall and secreted proteins of the ascomycetous fungi Neurospora crassa and Candida albicans. , 2009, Fungal genetics and biology : FG & B.
[30] Laura M. Lechuga,et al. Direct Detection of Protein Biomarkers in Human Fluids Using Site-Specific Antibody Immobilization Strategies , 2014, Sensors.