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Randall L. Scholl grad student 1985 Ohio State
 (Isolation and characterization of chlorate-resistant mutants in Arabidopsis thaliana)
Ralph S. Quatrano post-doc 1986-1988 E. I. du Pont de Nemours & Co.
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Ma C, Xin M, Feldmann KA, et al. (2014) Machine learning-based differential network analysis: a study of stress-responsive transcriptomes in Arabidopsis. The Plant Cell. 26: 520-37
Feldmann KA, Goff SA. (2014) The First Plant Genome Sequence-Arabidopsis thaliana Advances in Botanical Research. 69: 91-117
Goff SA, Schnable JC, Feldmann KA. (2014) The Evolution of Plant Gene and Genome Sequencing Advances in Botanical Research. 69: 47-90
White JW, Andrade-Sanchez P, Gore MA, et al. (2012) Field-based phenomics for plant genetics research Field Crops Research. 133: 101-112
Tatarinova TV, Alexandrov NN, Bouck JB, et al. (2010) GC3 biology in corn, rice, sorghum and other grasses. Bmc Genomics. 11: 308
Alexandrov NN, Brover VV, Freidin S, et al. (2009) Insights into corn genes derived from large-scale cDNA sequencing. Plant Molecular Biology. 69: 179-94
Alexandrov NN, Troukhan ME, Brover VV, et al. (2006) Features of Arabidopsis genes and genome discovered using full-length cDNAs. Plant Molecular Biology. 60: 69-85
Goodwin SM, Rashotte AM, Rahman M, et al. (2005) Wax constituents on the inflorescence stems of double eceriferum mutants in Arabidopsis reveal complex gene interactions. Phytochemistry. 66: 771-80
Schneeberger RG, Zhang K, Tatarinova T, et al. (2005) Agrobacterium T-DNA integration in Arabidopsis is correlated with DNA sequence compositions that occur frequently in gene promoter regions. Functional & Integrative Genomics. 5: 240-53
Rashotte AM, Jenks MA, Ross AS, et al. (2004) Novel eceriferum mutants in Arabidopsis thaliana Planta. 219: 5-13
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