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Evaluation of the U.S. Peanut Mini Core Collection using a molecular marker for resistance to Sclerotinia minor Jagger
- (Peer Reviewed Journal)
- (17-Oct-09)
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Development of a real-time PCR genotyping assay to identify high oleic acid peanuts (Arachis hypogaea L.)
- (Peer Reviewed Journal)
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Barkley, N.L., Chamberlin, K.D., Wang, M.L., Pittman, R.N. 2009. Development of a real-time PCR genotyping assay to identify high oleic acid peanuts (Arachis hypogaea L.). Molecular Breeding. DOI 10.1007/s11032-009-9338-z
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Deployment: Regulations and steps for commercialization
- (Book/Chapter)
- (20-Jul-09)
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Real-Time PCR Genotyping using Taqman Probes to Detect High Oleic Acid Peanuts
- (Abstract)
- (01-Jun-09)
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Reaction of the core collection of peanut germplasm to Sclerotinia blight and pepper spot
- (Peer Reviewed Journal)
- (24-Apr-09)
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Discovery and characterization of a molecular marker for Sclerotinia minor (Jagger) resistance in peanut
- (Peer Reviewed Journal)
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Chenault, K.D., Maas, A.L., Damicone, J.P., Payton, M.E., Melouk, H.A. 2009. Discovery and characterization of a molecular marker for Sclerotinia minor (Jagger) resistance in peanut. Euphytica. 166:357-365.
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Use of capillary electrophoresis to determine oleic and linoleic acid content of peanut seed
- (Abstract)
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Chamberlin, K.D., Bannore, Y.C., El Rassi, Z., Melouk, H.A. 2009. Use of capillary electrophoresis to determine oleic and linoleic acid content of peanut seed [abstract]. ASA-CSSA-SSSA Annual Meeting Abstracts, October 5-9, 2008, Houston, Texas. Abstract No. 636-16. Available: http://crops.confex.com/crops/2008am/techprogram/P44954.HTM.
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Chemical characteristics and volatile profile of genetically modified peanut cultivars
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Ng, E., Dunford, N.T., Chenault, K.D. 2008. Chemical characteristics and volatile profile of genetically modified peanut cultivars. Journal of Bioscience and Bioengineering. 106(4):350-356.
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Capillary electrophoresis of some free fatty acids using partially aqueous electrolyte systems and indirect UV detection. Application to the analysis of oleic and linoleic acids in peanut breeding lines
- (Peer Reviewed Journal)
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Bannore, Y.C., Chenault, K.D., Melouk, H.A., El Rassi, Z. 2008. Capillary electrophoresis of some free fatty acids using partially aqueous electrolyte systems and indirect UV detection: Application to the analysis of oleic and linoleic acids in peanut breeding lines. Journal of Separation Science. 31:2667-2676.
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Documentation for release of a high oleic runner peanut cultivar (tested as TX 994313)
- (Experiment Station)
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Melouk, H.A., Chamberlin, K.D., Godsey, C.B., Damicone, J.P. 2008. Documentation for release of a high oleic runner peanut cultivar (tested as TX 994313). In: Partners and Progress - Peanut Research at OSU, 2008. Oklahoma Agricultural Experiment Station, P-1020. p. 2-20.
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Peanut
- (Book/Chapter)
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Chamberlin, K.D., Ozais-Akins, P., Gallo, M., Sirvastava, P. 2008. Peanut. In: Kole, C., Hall, T.C. editors. Compendium of Transgenic Crop Plants: Transgenic Oilseed Crops. Oxford, UK: Blackwell Publishing. p. 169-198.
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Use of capillary electrophoresis to determine oleic and linoleic acid content of peanut seed
- (Abstract)
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Chamberlin, K.D., Bannore, Y.C., El Rassi, Z., Melouk, H.A. 2008. Use of capillary electrophoresis to determine oleic and linoleic acid content of peanut seed [abstract]. In: 2008 Proceedings of the American Peanut Research and Education Society, July 15-18, 2008, Oklahoma City, Oklahoma. 40:39. Available: http://www.apresinc.com/pdf/Proceedings/Volume%2040,%20Proceedings.pdf.
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Field performance of three peanut entries in Oklahoma
- (Abstract)
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Melouk, H.A., Godsey, C., Chamberlin, K.D., Damicone, J. 2008. Field performance of three peanut entries in Oklahoma [abstract]. In: 2008 Proceedings of the American Peanut Research and Education Society, July 15-18, 2008, Oklahoma City, Oklahoma. 40:68-69. Available: http://www.apresinc.com/pdf/Proceedings/Volume%2040,%20Proceedings.pdf.
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Chemical and flavor profiles of genetically modified peanut varieties
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Dunford, N.T., Jonnala, R., Ng, E., Chenault, K.D. 2008. Chemical and flavor profiles of genetically modified peanut varieties [abstract]. In: Proceedings of the American Oil Chemists Society 99th Annual Meeting & Expo, May 18-21, 2008, Seattle, Washington. p. 10.
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Sclerotinia blight resistance in peanuts
- (Experiment Station)
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Melouk, H.A., Chamberlin, K.D., Damicone, J.P., Godsey, C.B. 2007. Sclerotinia blight resistance in peanuts. In: Partners and Progress - Peanut Research at OSU, 2007. Oklahoma Agricultural Experiment Station, P-1019. p. 2-7.
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A multi-component approach to screening F1 hybrid peanut seed for disease resistance and oleic acid content
- (Abstract)
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Chenault, K.D., Tillman, B., Melouk, H.A. 2007. A multi-component approach to screening F1 hybrid peanut seed for disease resistance and oleic acid content [abstract]. ASA-CSSA-SSSA Annual Meeting Abstracts, November 4-8, 2007, New Orleans, Louisiana. Available: http://crops.confex.com/crops/2007am/techprogram/P34779.HTM.
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Molecular cloning of an SSR marker associated with resistance to Sclerotinia blight in peanut and sequence variation among resistant and susceptible plant lines
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Chenault, K.D. 2007. Molecular cloning of an SSR marker associated with resistance to Sclerotinia blight in peanut and sequence variation among resistant and susceptible plant lines [abstract]. In: Proceedings of the American Peanut Research and Education Society Proceedings, July 10-13, 2007, Birmingham, Alabama. 39:59. Available: http://www.apresinc.com/pdf/Proceedings/Volume%2039,%20Proceedings.pdf.
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Cloning and sequencing of an SSR marker associated with resistance to Sclerotinia blight in peanut
- (Abstract)
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Chenault, K.D. 2007. Cloning and sequencing of an SSR marker associated with resistance to Sclerotinia blight in peanut [abstract]. Phytopathology. 97(7):S22. Available: http://www.apsnet.org/meetings/2007/abstracts/a07ma130.htm.
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Screening of F1/F2 seed for the presence of a molecular marker for Sclerotinia minor resistance
- (Experiment Station)
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Chenault, K.D., Damicone, J. 2006. Screening of F1/F2 seed for the presence of a molecular marker for Sclerotinia minor resistance. In: Partners and Progress - Peanut Research at OSU, 2005. Oklahoma Agricultural Experiment Station, P-1013.
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Characterization of tomato spotted wilt virus isolates infecting peanut in Southwestern states of USA
- (Abstract)
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Al-Saleh, M.A., Chenault, K.D. 2006. Characterization of tomato spotted wilt virus isolates infecting peanut in Southwestern states of USA [abstract]. In: Proceedings of the 9th Arab Congress of Plant Protection, November 19-23, 2006, Damascus, Syria. p. E-89. Available: http://asplantprotection.org/Test/PDF/9thACPP/08_9thACPP.pdf.
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A Simple Sequence Repeat (Ssr) Marker in Cultivated Peanut (Arachis Hypogaea L.) Is Associatied with Resistance to Sclerotinia Minor
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Chenault, K.D., Maas, A.L. 2006. A simple sequence repeat (SSR) marker in cultivated peanut (Arachis Hypogaea L.) is associated with resistance to Sclerotinia minor [abstract]. Phytopathology. 96:S23.
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Tracking the inheritance of a molecular marker associated with resistance to Sclerotinia blight in peanut
- (Abstract)
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Chenault, K.D., Tillman, B.L., Melouk, H.A. 2006. Tracking the inheritance of a molecular marker associated with resistance to Sclerotinia blight in peanut [abstract]. In: 2006 Proceedings of the American Peanut Research and Education Society, July 11-14, 2006, Savannah, Georgia. 38:56. Available: http://www.apres.okstate.edu/Vol%2038%20Proc.pdf.
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A non-destructive seed sampling method for PCR-based analyses in marker assisted selection and transgene screening
- (Peer Reviewed Journal)
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Chenault, K.D., Gallo, M., Seib, J.C., James, V.A. 2007. A non-destructive seed sampling method for PCR-based analyses in marker assisted selection and transgene screening. Peanut Science. 34:38-43.
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Identification of a Simple Sequence Repeat (Ssr) Marker in Cultivited Peanut (Arachis Hypogaea L.) Potentially Associated with Sclerotinia Blight Resistance
- (Abstract)
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Chenault, K.D., Maas, A.L. 2006. Identification of a simple sequence repeat (SSR) marker in cultivited peanut (Aarachis hypogaea L.) potentially associated with Sclerotinia blight resistance [abstract]. Proceedings of the American Peanut Research and Education Society. 37:24-25.
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Effect of Sclerotinia Minor Infection Loci on Peanut Production Parameters
- (Peer Reviewed Journal)
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Chenault, K.D., Melouk, H.A., Payton, M.E. 2006. Effect of Sclerotinia minor infection loci on peanut production parameters. Peanut Science. 33:36-40.
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Production of Endo-Polygalacturonase by Sclerotium Rolfsii
- (Abstract)
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Choppakatla, V., Melouk, H.A., Hunger, H.M., Payton, M.E., Chenault, K.D. 2005. Production of endo-polygalacturonase by Sclerotium rolfsii [abstract]. Phytopathology. 95:S20.
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Tocopherol, Phytosterol, and Phospholipid Compositions of Genetically Modified Peanut Varieties
- (Peer Reviewed Journal)
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Jonnala, R.S., Dunford, N.T., Chenault, K.D. 2006. Tocopherol, phytosterol, and phospholipid compositions of genetically modified peanut varieties. Journal of the Science of Food and Agriculture. 86(3):473-476.ext/112141661/PDFSTART.
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Nutritional Composition of Genetically Modified Peanut Varieties
- (Peer Reviewed Journal)
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Jonnala, R.S., Dunford, N.T., Chenault, K.D. 2005. Nutritional composition of genetically modified peanut varieties. Journal of Food Science. 70(4):S254-S256.
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Post-Harvest Aflatoxin Accumulation in Transgenic Peanut Lines Containing Anti-Fungal Genes
- (Abstract)
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Chenault, K.D., Melouk, H.A., Holbrook Jr, C.C. 2004. Post-harvest aflatoxin accumulation in transgenic peanut lines containing anti-fungal genes [abstract]. Phytopathology. 94:S18.
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Genetic Variability and Mycelial Compatibility Groups of Sclerotium Rolfsii
- (Abstract)
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Saude, C., Melouk, H.A., Chenault, K.D. 2004. Genetic variability and mycelial compatibility groups of Sclerotium rolfsii [abstract]. Phytopathology. 94:S92.
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Field Reaction to Sclerotinia Blight among Transgenic Peanut Lines Containing Antifungal Genes
- (Peer Reviewed Journal)
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Chenault, K.D., Melouk, H.A., Payton, M.E. 2005. Field reaction to sclerotinia blight among transgenic peanut lines containing antifungal genes. Crop Science. 45:511-515.
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Effect of Anti-Fungal Transgene(s) on Agronomic Traits of Transgenic Peanut Lines Grown under Field Conditions
- (Peer Reviewed Journal)
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Chenault, K.D., Melouk, H.A., Payton, M.E. 2006. Effect of anti-fungal transgene(s) on agronomic traits of transgenic peanut lines grown under field conditions. Peanut Science. 33:12-19.
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Genetic Transformation of a Runner-Type Peanut with the Nucleocapsid Gene of Tomato Spotted Wilt Virus
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Chenault, K.D., Payton, M.E. 2003. Genetic transformation of a runner-type peanut with the nucleocapsid gene of tomato spotted wilt virus. Peanut Science. 30(2):112-115.
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Effect of Sclerotinia Minor Infection Location on the Peanut Plant on Plant Productivity
- (Abstract)
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Chenault, K.D., Melouk, H.A. 2004. Effect of Sclerotinia minor infection location on the peanut plant on plant productivity [abstract]. In: Proceedings of the American Peanut Research and Education Society, July 13-16, 2004, San Antonio, Texas. 36:50.
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Oxalic Acid Production by Isolates of Sclerotium Rolfsii and Their Pathogenicity on Peanut
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Saude, C.N., Melouk, H.A., Chenault, K.D., Meador, C.B. 2004. Oxalic acid production by isolates of Sclerotium rolfsii and their pathogenicity on peanut [abstract]. In: Proceedings of the American Peanut Research and Education Society, July 13-16, 2004, San Antonio, Texas. 36:51.
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Nutritional Composition of Genetically Modified Peanut Lines with Respect to the Parent Cultivar Okrun
- (Abstract)
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Jonnala, R.S., Dunford, N.T., Chenault, K.D. 2004. Nutritional composition of genetically modified peanut lines with respect to the parent cultivar Okrun [abstract]. Annual Meeting of the Institute of Food Technologists, July 12-16, 2004, Las Vegas, Nevada. 99E-8.
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Aflatoxin Accumulation on Transgenic Peanut Lines Containing Anti-Fungal Genes
- (Abstract)
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Chenault, K.D., Holbrook, Jr., C.C. 2004. Aflatoxin accumulation on transgenic peanut lines containing anti-fungal genes [Abstract]. In: Proceedings of the 3rd Fungal Genomics, 4th Fumonisin, and 16th Aflatoxin Elimination Workshop. p. 112.
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Disease Incidence, Yield, and Grade Comparisons of Transgenic and Non-Transgenic Peanut Plants in Field Tests for Sclerotinia Minor Resistance
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Chenault, K.D., Melouk, H.A. 2003. Disease incidence, yield, and grade comparisons of transgenic and non-transgenic peanut plants in field tests for Sclerotinia minor resistance [abstract]. Phytopathology. 93:S16.
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Resistance to Sclerotinia Minor Infection in Transgenic Peanut a Three Year Study
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Chenault, K.D., Melouk, H.A. 2003. Resistance to Sclerotinia minor infection in transgenic peanut- A three year study [abstract]. In: Proceedings of the American Peanut Research and Education Society, July 8-11, 2003, Clearwater, Florida. 35:27.
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Field Testing of Transgenic Peanut Lines for Resistance to Sclerotinia Minor
- (Abstract)
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CHENAULT, K.D. FIELD TESTING OF TRANSGENIC PEANUT LINES FOR RESISTANCE TO SCLEROTINIA MINOR. AMERICAN PEANUT RESEARCH AND EDUCATION SOCIETY ABSTRACTS. p. 66. 2002.
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Introduction of the Tomato Spotted Wilt Virus Nucleocapsid Gene into a Runner-Type Peanut
- (Abstract)
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CHENAULT, K.D. INTRODUCTION OF THE TOMATO SPOTTED WILT VIRUS NUCLEOCAPSID GENE INTO A RUNNER-TYPE PEANUT. PHYTOPATHOLOGY. v. 92(6). ABSTRACT S15. PUBLICATION NO. P-2002-0103-AMA. 2002.
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