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Frontiers in Microbiology|April 12, 2013
A Quantum Dot-Immunofluorescent Labeling Method to Investigate the Interactions between a Crinivirus and Its Whitefly VectorJames C K NgPhytopathology|February 2, 2016
Lettuce chlorosis virus P23 Suppresses RNA Silencing and Induces Local Necrosis with Increased Severity at Raised TemperaturesKenji Kubota, James C K NgMolecular Plant Pathology|June 23, 2010
Transmission of plant viruses by aphid vectorsJames C K Ng, Keith L PerryCurrent Opinion in Virology|August 31, 2015
Insect vector-plant virus interactions associated with non-circulative, semi-persistent transmission: current perspectives and future challengesJames C K Ng, Jaclyn S ZhouVirology|June 6, 2006
Bemisia tabaci transmission of specific Lettuce infectious yellows virus genotypes derived from in vitro synthesized transcript-inoculated protoplastsJames C K Ng, Bryce W FalkAnnual Review of Phytopathology|April 11, 2006
Virus-vector interactions mediating nonpersistent and semipersistent transmission of plant virusesJames C K Ng, Bryce W FalkVirus Research|January 8, 2011
Acquisition of Lettuce infectious yellows virus by Bemisia tabaci perturbs the transmission of Lettuce chlorosis virusJames C K Ng, Angel Y S ChenScientific Reports|October 4, 2016
A 3'-end structure in RNA2 of a crinivirus is essential for viral RNA synthesis and contributes to replication-associated translation activityChawin Mongkolsiriwattana, Jaclyn S Zhou, James C K NgThe Journal of General Virology|August 11, 2004
Quantitative parameters determining whitefly (Bemisia tabaci) transmission of Lettuce infectious yellows virus and an engineered defective RNAJames C K Ng, Tongyan Tian, Bryce W FalkVirology|September 28, 2011
Replication of Lettuce chlorosis virus (LCV), a crinivirus in the family Closteroviridae, is accompanied by the production of LCV RNA 1-derived novel RNAsChawin Mongkolsiriwattana, Angel Y S Chen, James C K NgPageof 3