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  1. Characterization of quantitative resistance against Phytophthora sojae in soybean

    https://mchalelab.cfaes.ohio-state.edu/projects/characterization-quantitative-resistance-against-phytophthora-sojae-soybean

    Phytophthora root and stem rot (PRR) is caused by the soil-borne oomycete Phytophthora sojae.  It is the second-most yield limiting soybean disease in Ohio (Carl Bradley, 2016 Extension Pathologist Survey, personal communication) and causes over 30 millio ...

  2. Dr. Leah McHale

    https://mchalelab.cfaes.ohio-state.edu/people/dr-leah-mchale

    614-292-9003 mchale.21@osu.edu   Education PhD, Plant Biology, University of California-Davis BS, Horticulture, ...

  3. Huang et al: Genomic selection for rice blast resistance

    https://mchalelab.cfaes.ohio-state.edu/node/131

    Huang M, Balimponya EG, Mgonja EM, McHale LK, Luzi-Kihupi A, Wang GL, Sneller CH (2019)  Use of genomic selection in breeding rice (Oryza sativa L.) for resistance to rice blast (Magnaporthe oryzae). Molecular Breeding 39: 114. Journal article Tuesday, Ju ...

  4. Million et al: Hybrid genome assembly for candidate genes of Fusarium graminearum QTL in soybean

    https://mchalelab.cfaes.ohio-state.edu/node/130

    Million CR, Wijeratne S, Cassone BJ, Lee S, Mian R, McHale LK, Dorrance AE (2019) Hybrid genome assembly aids characterization and identification of candidate genes in a major quantitative disease resistance locus towards Fusarium graminearum in soybean. ...

  5. Lee & Van et al: Soybean seed protein and oil GWAS

    https://mchalelab.cfaes.ohio-state.edu/node/129

    Lee S*, Van K*, Sung M, Nelson R, LaMantia J, McHale LK, Mian MAR (2019)  Genome-wide association study of seed protein, oil and amino acid contents in soybean from maturity groups I to IV  Theoretical and Applied Genetics. doi: 10.1007/s00122-019-03304-5 ...

  6. Scott McIntyre

    https://mchalelab.cfaes.ohio-state.edu/people/scott-mcintyre

    Registrations 2: 21. St. Martin SK, Feller MK, Fioritto MJ,  McIntyre SA, Dorrance AE, Berry SA, Sneller CH ...

  7. Breeding Ohio-adapted Soybean Cultivars

    https://mchalelab.cfaes.ohio-state.edu/projects/breeding-ohio-adapted-soybean-cultivars

    FAD2-1A and FAD2-1B combine to produce soybeans with the high oleic acid seed oil trait. BMC Plant Biol. ... 10:195. Pham AT, Lee JD, Shannon JG, Bilyeu KD (2011) A novel FAD2-1A allele in a soybean plant ... Registrations 2: 21. St. Martin SK, Mills GR, Fioritto RJ, McIntyre SA, Schmitthenner AF, Dorrance AE, Cooper RL ...

  8. Karhoff et al: Characterization of a QTL against Phytophthora sojae in soybean

    https://mchalelab.cfaes.ohio-state.edu/node/128

    Karhoff S, Lee S, Mian MAR, Ralston TI, Niblack TL, Dorrance AE, McHale LK (2019)  Phenotypic characterization of a major quantitative disease resistance locus for partial resistance to  Phytophthora sojae. Crop Science. doi: 10.2135/cropsci2018.08.0514. ...

  9. Scott et al: Resistance loci towards Phytophthora sojae and Pythium spp in soybean

    https://mchalelab.cfaes.ohio-state.edu/node/126

    Scott K, Balk C, Veney D, McHale L, Dorrance A (2019) Quantitative disease resistance loci towards Phyophthora sojae and three species of Pythium in size soybean nested association mapping populations. Crop Science. doi: 10.2135/cropsci2018.09.0573. Journ ...

  10. Zhang et al: Edits to soybean G-box elements

    https://mchalelab.cfaes.ohio-state.edu/node/122

    Zhang N, McHale LK, Finer JJ (2019)  Changes to the core and flanking sequences of G‐box elements lead to increases and decreases in gene expression in both native and synthetic soybean promoters. Plant biotechnology journal. 17: 724-735. Journal article ...

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