Rangani, G.; Rouse, C.E.; Saski, C.; Noorai, R.E.; Shankar, V.; Lawton-Rauh, A.L.; Werle, I.S.; Roma-Burgos, N.
High Resistance to Quinclorac in Multiple-Resistant Echinochloa colona Associated with Elevated Stress Tolerance Gene Expression and Enriched Xenobiotic Detoxification Pathway. Genes 2022, 13, 515.
https://doi.org/10.3390/genes13030515
AMA Style
Rangani G, Rouse CE, Saski C, Noorai RE, Shankar V, Lawton-Rauh AL, Werle IS, Roma-Burgos N.
High Resistance to Quinclorac in Multiple-Resistant Echinochloa colona Associated with Elevated Stress Tolerance Gene Expression and Enriched Xenobiotic Detoxification Pathway. Genes. 2022; 13(3):515.
https://doi.org/10.3390/genes13030515
Chicago/Turabian Style
Rangani, Gulab, Christopher E. Rouse, Christopher Saski, Rooksana E. Noorai, Vijay Shankar, Amy L. Lawton-Rauh, Isabel S. Werle, and Nilda Roma-Burgos.
2022. "High Resistance to Quinclorac in Multiple-Resistant Echinochloa colona Associated with Elevated Stress Tolerance Gene Expression and Enriched Xenobiotic Detoxification Pathway" Genes 13, no. 3: 515.
https://doi.org/10.3390/genes13030515
APA Style
Rangani, G., Rouse, C. E., Saski, C., Noorai, R. E., Shankar, V., Lawton-Rauh, A. L., Werle, I. S., & Roma-Burgos, N.
(2022). High Resistance to Quinclorac in Multiple-Resistant Echinochloa colona Associated with Elevated Stress Tolerance Gene Expression and Enriched Xenobiotic Detoxification Pathway. Genes, 13(3), 515.
https://doi.org/10.3390/genes13030515