Parents

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Robert Manley Bock grad student 1963 UW Madison (Chemistry Tree)
 (Some physical properties of yeast ribosomal RNA.)

Children

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Robert Owens grad student 1970- UC Davis
Xiaojiang Chen grad student 1991 UC Davis (Cell Biology Tree)
Stanley J. Kikkert grad student 2000 UC Davis
Ali E. McClean grad student 2003 UC Davis
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Publications

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Čepulytė R, Danquah WB, Bruening G, et al. (2018) Potent Attractant for Root-Knot Nematodes in Exudates from Seedling Root Tips of Two Host Species. Scientific Reports. 8: 10847
Nascimento R, Gouran H, Chakraborty S, et al. (2016) The Type II Secreted Lipase/Esterase LesA is a Key Virulence Factor Required for Xylella fastidiosa Pathogenesis in Grapevines. Scientific Reports. 6: 18598
Bruening G, Kirkpatrick BC, Webster RK, et al. (2014) Coordinated response to PD involves growers, scientists and government California Agriculture. 68: 138-139
Bruening G, Kirkpatrick BC, Esser T, et al. (2014) Cooperative efforts contained spread of Pierce's disease and found genetic resistance California Agriculture. 68: 134-141
Dandekar AM, Gouran H, Ibáñez AM, et al. (2012) An engineered innate immune defense protects grapevines from Pierce disease. Proceedings of the National Academy of Sciences of the United States of America. 109: 3721-5
Fan Q, Niroula M, Feldstein PA, et al. (2011) Participation of the Cowpea mosaic virus protease in eliciting extreme resistance. Virology. 417: 71-8
Bruening G. (2011) Not as they seem. Annual Review of Phytopathology. 49: 1-16
Varshney RK, Penmetsa RV, Dutta S, et al. (2010) Pigeonpea genomics initiative (PGI): an international effort to improve crop productivity of pigeonpea (Cajanus cajan L.). Molecular Breeding : New Strategies in Plant Improvement. 26: 393-408
Kovach A, Wegrzyn JL, Parra G, et al. (2010) The Pinus taeda genome is characterized by diverse and highly diverged repetitive sequences. Bmc Genomics. 11: 420
Wang C, Bruening G, Williamson VM. (2009) Determination of preferred pH for root-knot nematode aggregation using pluronic F-127 gel. Journal of Chemical Ecology. 35: 1242-51
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