Erick D. De Wolf
Kansas State University
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Featured researches published by Erick D. De Wolf.
Plant Disease | 2011
Stephen N. Wegulo; William W. Bockus; John F. Hernandez Nopsa; Erick D. De Wolf; Kent M. Eskridge; Kamaranga H. S. Peiris; Floyd E. Dowell
Fusarium head blight (FHB) or scab, incited by Fusarium graminearum, can cause significant economic losses in small grain production. Five field experiments were conducted from 2007 to 2009 to determine the effects on FHB and the associated mycotoxin deoxynivalenol (DON) of integrating winter wheat cultivar resistance and fungicide application. Other variables measured were yield and the percentage of Fusarium-damaged kernels (FDK). The fungicides prothioconazole + tebuconazole (formulated as Prosaro 421 SC) were applied at the rate of 0.475 liters/ha, or not applied, to three cultivars (experiments 1 to 3) or six cultivars (experiments 4 and 5) differing in their levels of resistance to FHB and DON accumulation. The effect of cultivar on FHB index was highly significant (P < 0.0001) in all five experiments. Under the highest FHB intensity and no fungicide application, the moderately resistant cultivars Harry, Heyne, Roane, and Truman had less severe FHB than the susceptible cultivars 2137, Jagalene, Overley, and Tomahawk (indices of 30 to 46% and 78 to 99%, respectively). Percent fungicide efficacy in reducing index and DON was greater in moderately resistant than in susceptible cultivars. Yield was negatively correlated with index, with FDK, and with DON, whereas index was positively correlated with FDK and with DON, and FDK and DON were positively correlated. Correlation between index and DON, index and FDK, and FDK and DON was stronger in susceptible than in moderately resistant cultivars, whereas the negative correlation between yield and FDK and yield and DON was stronger in moderately resistant than in susceptible cultivars. Overall, the strongest correlation was between index and DON (0.74 ≤ R ≤ 0.88, P ≤ 0.05). The results from this study indicate that fungicide efficacy in reducing FHB and DON was greater in moderately resistant cultivars than in susceptible ones. This shows that integrating cultivar resistance with fungicide application can be an effective strategy for management of FHB and DON in winter wheat.
Phytopathology | 2016
Dorith Rotenberg; William W. Bockus; Anna E. Whitfield; Kaylee Hervey; Kara D. Baker; Zhining Ou; Alma G. Laney; Erick D. De Wolf; Jon A. Appel
Vector-borne virus diseases of wheat are recurrent in nature and pose significant threats to crop production worldwide. In the spring of 2011 and 2012, a state-wide sampling survey of multiple commercial field sites and university-managed Kansas Agricultural Experiment Station variety performance trial locations spanning all nine crop-reporting regions of the state was conducted to determine the occurrence of Barley yellow dwarf virus-PAV (BYDV-PAV), Cereal yellow dwarf virus-RPV, Wheat streak mosaic virus (WSMV), High plains virus, Soilborne wheat mosaic virus, and Wheat spindle streak mosaic virus using enzyme-linked immunosorbent assays (ELISA). As a means of directly coupling tiller infection status with tiller grain yield, multiple pairs of symptomatic and nonsymptomatic plants were selected and individual tillers were tagged for virus species and grain yield determination at the variety performance trial locations. BYDV-PAV and WSMV were the two most prevalent species across the state, often co-occurring within location. Of those BYDV-PAV- or WSMV-positive tillers, 22% and 19%, respectively, were nonsymptomatic, a finding that underscores the importance of sampling criteria to more accurately assess virus occurrence in winter wheat fields. Symptomatic tillers that tested positive for BYDV-PAV produced significantly lower grain yields compared with ELISA-negative tillers in both seasons, as did WSMV-positive tillers in 2012. Nonsymptomatic tillers that tested positive for either of the two viruses in 2011 produced significantly lower grain yields than tillers from nonsymptomatic, ELISA-negative plants, an indication that these tillers were physiologically compromised in the absence of virus-associated symptoms. Overall, the virus survey and tagged paired-tiller sampling strategy revealed effects of virus infection on grain yield of individual tillers of plants grown under field conditions and may provide a complementary approach toward future estimates of the impact of virus incidence on crop health in Kansas.
Canadian Journal of Plant Pathology-revue Canadienne De Phytopathologie | 2014
D. L. Seifers; Stephen N. Wegulo; Gary L. Hein; Emmanuel Byamukama; Erick D. De Wolf; M. A. C. Langham
Abstract Triticum mosaic virus (TriMV) is a recently discovered virus infecting wheat. A total of 170 isolates of TriMV, collected in 2010 and 2011 from wheat (Triticum aestivum L) or jointed goatgrass (Aegilops cylindrica Host) from Colorado, Kansas, Nebraska and South Dakota, were compared with the 06-123 Kansas isolate. These isolates were compared for the percentage of infected plants in N28Ht maize, ‘Gallatin’ barley and ‘Mace’ wheat (with temperature-sensitive resistance to Wheat streak mosaic virus (WSMV). The isolates were also compared for the effect of inoculum virus titre on the percentage of infected plants in WSMV-susceptible ‘Tomahawk’ wheat by mechanically inoculating the cultivar using 1:10 w/v, 1:300 v/v or 1:600 v/v dilutions of extracts. None of the isolates infected N28Ht maize but all isolates infected ‘Gallatin’ barley, ‘Mace’ and ‘Tomahawk’ wheat. Some isolates from Colorado, Kansas and Nebraska had low relative titre in wheat compared with the 06-123 isolate. This information is important in critical selection of TriMV isolates for use in greenhouse and field studies and in resistance screening protocols.
Plant Disease | 2012
Marcia V. McMullen; Gary C. Bergstrom; Erick D. De Wolf; Ruth Dill-Macky; D. E. Hershman; Greg Shaner; Dave Van Sanford
Annual Review of Phytopathology | 2007
Erick D. De Wolf; Scott A. Isard
Journal of Agricultural Biological and Environmental Statistics | 2010
Murali Haran; K. Sham Bhat; Julio Molineros; Erick D. De Wolf
Plant Health Progress | 2011
William W. Bockus; Erick D. De Wolf; Bikram S. Gill; Douglas J. Jardine; James P. Stack; Robert L. Bowden; Allan K. Fritz; T. Joe Martin
Archive | 2008
Erick D. De Wolf; D. L. Seifers
Archive | 2008
Scott A. Isard; David A. Mortensen; Shelby J. Fleischer; Erick D. De Wolf
Phytopathology | 2018
Denis A. Shah; Erick D. De Wolf; Pierce A. Paul; L. V. Madden