Yang, C.; Wang, H.; Duan, Y.; Bei, F.; Jia, S.; Wang, J.; Wang, H.; Liu, W.
Enhanced Herbicide Metabolism and Target-Site Mutations Confer Multiple Resistance to Fomesafen and Nicosulfuron in Amaranthus retroflexus L. Biology 2023, 12, 592.
https://doi.org/10.3390/biology12040592
AMA Style
Yang C, Wang H, Duan Y, Bei F, Jia S, Wang J, Wang H, Liu W.
Enhanced Herbicide Metabolism and Target-Site Mutations Confer Multiple Resistance to Fomesafen and Nicosulfuron in Amaranthus retroflexus L. Biology. 2023; 12(4):592.
https://doi.org/10.3390/biology12040592
Chicago/Turabian Style
Yang, Cheng, Hao Wang, Yunxia Duan, Feng Bei, Sisi Jia, Jinxin Wang, Hengzhi Wang, and Weitang Liu.
2023. "Enhanced Herbicide Metabolism and Target-Site Mutations Confer Multiple Resistance to Fomesafen and Nicosulfuron in Amaranthus retroflexus L." Biology 12, no. 4: 592.
https://doi.org/10.3390/biology12040592
APA Style
Yang, C., Wang, H., Duan, Y., Bei, F., Jia, S., Wang, J., Wang, H., & Liu, W.
(2023). Enhanced Herbicide Metabolism and Target-Site Mutations Confer Multiple Resistance to Fomesafen and Nicosulfuron in Amaranthus retroflexus L. Biology, 12(4), 592.
https://doi.org/10.3390/biology12040592