Resistance to Fusarium oxysporum f. sp. gladioli in transgenic Gladiolus plants expressing either a bacterial chloroperoxidase or fungal chitinase genes
Kathryn Kamo(U.S. National Arboretum), R. Jordan(U.S. National Arboretum), M. A. Guaragna(U.S. National Arboretum), Kanniah Rajasekaran(Southern Regional Research Center), Dilip K. Lakshman(U.S. National Arboretum), Patricia A. Okubara(Quality Research), Ruchi Pandey(U.S. National Arboretum), Jeffrey W. Cary(Southern Regional Research Center)
Cited by 10
Related Papers
Molecular Detection and Quantification of<i>Pythium</i>Species: Evolving Taxonomy, New Tools, and Challenges
|Plant Disease|2012|155
An In vitro Study of Bio-Control and Plant Growth Promotion Potential of Salicaceae Endophytes
|Frontiers in Microbiology|2017|151
Engineering deoxynivalenol metabolism in wheat through the expression of a fungal trichothecene acetyltransferase gene
|Theoretical and Applied Genetics|2002|137
Identification and Quantification of Pathogenic <i>Pythium</i> spp. from Soils in Eastern Washington Using Real-Time Polymerase Chain Reaction
|Phytopathology|2006|136
Root defense responses to fungal pathogens: A molecular perspective
|Plant ecophysiology|2005|109