James E. Schoelz

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Publications of James E. Schoelz (25 listed):

Journal of General Virology (2020) 101 (10 - 1497)
Pierre-Yves Teycheney, Andrew D.W. Geering, Idranil Dasgupta, Roger Hull, Jan F. Kreuze, Ben Lockhart, Emmanuelle Muller, Neil Olszewski, Hanu Pappu, Mikhail M. Pooggin, Katja R. Richert-Pöggeler, James E. Schoelz, Susan Seal, Livia Stavolone, Marie Umber and ICTV Report Consortium (2020)
ICTV virus taxonomy profile: Caulimoviridae
also available at

Plant Disease (2019) 103, p. 379 (Schoelz et al.)
J.E. Schoelz, M. Adhab, W. Qiu, S. Petersen and D. Volenberg (2019)
First report of Grapevine red blotch virus in hybrid grapes in Missouri

Annual Review of Virology (2018) 5, 93-111
James E. Schoelz and Lucy R. Stewart (2018)
The role of viruses in the phytobiome

Journal of Plant Protection Research (2015) 55, 327-328
Mustafa A. Adhab and James E. Schoelz (2015)
Report of the turnip aphid, Lipaphis erysimi (Kaltenbach, 1843) from Missouri, USA

Journal of General Virology (2015) 96, 165-169
Y. Zhang, C.A. Angel, S. Valdes, W. Qiu and J.E. Schoelz (2015)
Characterization of the promoter of Grapevine vein clearing virus

Phytopathology (2014) 104, 539-547
Qiang Guo, Shae Honesty, Mei Long Xu, Yu Zhang, James Schoelz and Wenping Qiu (2014)
Genetic diversity and tissue and host specificity of Grapevine vein clearing virus

Molecular Plant-Microbe Interactions (2013) 26, 240-248
Carlos A. Angel and James E. Schoelz (2013)
A survey of resistance to Tomato bushy stunt virus in the genus Nicotiana reveals that the hypersensitive response is triggered by one of three different viral proteins

Molecular Plant-Microbe Interactions (2011) 24, 91-99
Carlos A. Angel, Yi-Cheng Hsieh and James E. Schoelz (2011)
Comparative analysis of the capacity of tombusvirus P22 and P19 proteins to function as avirulence determinants in Nicotiana species

Phytopathology (2010) 100, 1111-1117
Zhiwei D. Fang, James J. Marois, Gary Stacey, James E. Schoelz, James T. English and Francis J. Schmidt (2010)
Combinatorially selected peptides for protection of soybean against Phakopsora pachyrhizi

Molecular Plant-Microbe Interactions (2007) 20, 1262-1270
Boovaraghan Balaji, John Cawly, Carlos Angel, Zhanyuan Zhang, Karuppaiah Palanichelvam, Anthony Cole and James Schoelz (2007)
Silencing of the N family of resistance genes in Nicotiana edwardsonii compromises the hypersensitive response to tombusviruses

Journal of Virology (2006) 80, 3811-3822
Monir Shababi, June Bourque, Karuppaiah Palanichelvam, Anthony Cole, Dong Xu, Xiu-Feng Wan and James Schoelz (2006)
The ribosomal shunt translation strategy of Cauliflower mosaic virus has evolved from ancient long terminal repeats

Phytopathology (2006) 96, 453-459
James E. Schoelz, B. Elizabeth Wiggins, William M. Wintermantel and Kathleen Ross (2006)
Introgression of a tombusvirus resistance locus from Nicotiana edwardsonii var. Columbia to N. clevelandii

Molecular Plant-Microbe Interactions (2005) 18, 212-219
John Cawly, Anthony B. Cole, Lóránt Király, Wenping Qiu and James E. Schoelz (2005)
The plant gene CCD1 selectively blocks cell death during the hypersensitive response to cauliflower mosaic virus infection

Molecular Plant-Microbe Interactions (2004) 17, 976-985
Anthony B. Cole, Lóránt Király, Leslie C. Lane, B. Elizabeth Wiggins, Kathleen Ross and James E. Schoelz (2004)
Temporal expression of PR-1 and enhanced mature plant resistance to virus infection is controlled by a single dominant gene in a new Nicotiana hybrid

Molecular Plant-Microbe Interactions (2003) 16, 35-42
Weichang Yu, Jane Murfett and James E. Schoelz (2003)
Differential induction of symptoms in Arabidopsis by P6 of Cauliflower mosaic virus

Phytopathology (2002) 92, 190-196
K. Agama, S. Beach, J. Schoelz and S.M. Leisner (2002)
The 5' third of Cauliflower mosaic virus gene VI conditions resistance breakage in Arabidopsis ecotype Tsu-0

The Plant Journal (2001) 26, 509-522
Andrew P. Kloek, Michelle L. Verbsky, Shashi B. Sharma, James E. Schoelz, John Vogel, Daniel F. Klessig and Barbara N. Kunkel (2001)
Resistance to Pseudomonas syringae conferred by an Arabidopsis thaliana coronatine-insensitive (coi1) mutation occurs through two distinct mechanisms

Molecular Plant-Microbe Interactions (2001) 14, 31-41
Anthony B. Cole, Lóránt Király, Kathleen Ross and James E. Schoelz (2001)
Uncoupling resistance from cell death in the hypersensitive response of Nicotiana species to Cauliflower mosaic virus infection

Molecular Plant-Microbe Interactions (2000) 13, 1275-1279
K. Palanichelvam, A.B. Cole, M. Shababi and J.E. Schoelz (2000)
Agroinfiltration of Cauliflower mosaic virus gene VI elicits hypersensitive response in Nicotiana species

Molecular Plant-Microbe Interactions (1999) 12, 919-925
A.B. Cole, J.E. Bourque and J.E. Schoelz (1999)
Systemic cell death is elicited by the interaction of a single gene in Nicotiana clevelandii and gene VI of cauliflower mosaic virus

Molecular Plant-Microbe Interactions (1998) 11, 309-316
Lorant Király, June E. Bourque and James E. Schoelz (1998)
Temporal and spatial appearance of recombinant viruses formed between cauliflower mosaic virus (CaMV) and CaMV sequences present in transgenic Nicotiana bigelovii

International Congress of Plant Pathology (1998) Schoelz et al. - Genetic separation of necrosis ...
J. Schoelz, L. Kiraly, A. Cole and J. Bourque (1998)
Genetic separation of necrosis and resistance present in the hypersensitive response of Nicotiana edwardsonii to Cauliflower mosaic virus
Edinburgh, U.K. (9 - 16 Aug. 1998), Poster presented in section: Mechanisms of resistance to viruses

Journal of Nematology (1997) 29, 276-281
M.J. Kennedy, J.E. Schoelz, P.A. Donald and T.L. Niblack (1997)
Unique immunogenic proteins in Heterodera glycines eggshells

Phytopathology (1996) 86, S6-S7
L. Kiralv and J.E. Schoelz (1996)
Temporal appearance of recombinants between Cauliflower mosaic virus (CaMV) and CaMV transgene sequences present in Nicotiana bigelovii

Applied and Environmental Microbiology (1994) 60, 2616-2621
T. Ersek, J.E. Schoelz and J.T. English (1994)
PCR amplification of species-specific DNA sequences can distinguish among Phytophthora species