Florpyrauxifen-benzyl (FPB) is a new class of auxinic herbicide developed for selective weed control in rice. This study aimed to evaluate the effect of environmental conditions, P450 inhibitors, rice cultivar response, and gene expression on FPB selectivity in rice. Field experiments established in a randomized block design showed that rice plant injury due to two FPB rates (30 and 60 g ai ha−1) was affected by planting time and rice stage at herbicide application. The injury was higher at the earliest planting season and more in younger plants (V2) than larger (V6 and R0). However, no yield reduction was detected. Under greenhouse conditions, two dose-response experiments in a randomized block design showed that spraying malathion (1 kg h...
A system of permanently flooded rice and a lack of diverse weed management techniques have selected ...
Several weedy red rice populations have evolved resistance to imidazolinone herbicides worldwide. Th...
A field study was conducted in 2019, 2020, and 2021 at the LSU Agricultural Center H. Rouse Caffey R...
Florpyrauxifen-benzyl (FPB) is a new class of auxinic herbicide developed for selective weed control...
Florpyrauxifen-benzyl is a synthetic auxin herbicide which was commercially released in 2018 to comb...
Understanding cultivar responses to a new herbicide is crucial to determining appropriate herbicide ...
Florpyrauxifen-benzyl (synthetic auxin, WSSA Group 4) is a postemergence, broad-spectrum herbicide l...
Florpyrauxifen-benzyl is a new auxinic herbicide developed for selective weed control in rice. Herb...
Controlling weedy rice postemergence is challenging for rice producers in the United States because ...
Weed control is one of the most important factors on rice yield potential expression. In this conte...
Barnyardgrass remains one of the most difficult weeds to manage in rice. As herbicide resistance in ...
Not AvailableTo prevent weed invasion in direct seeded rice cultivation, several new generation post...
Not AvailableTo prevent weed invasion in direct seeded rice cultivation, several new generation post...
The red rice (Oryza sativa) co-exists with the cultivated rice in commercial farmings, becoming one...
To prevent weed invasion in direct seeded rice cultivation, several new generation post emergence he...
A system of permanently flooded rice and a lack of diverse weed management techniques have selected ...
Several weedy red rice populations have evolved resistance to imidazolinone herbicides worldwide. Th...
A field study was conducted in 2019, 2020, and 2021 at the LSU Agricultural Center H. Rouse Caffey R...
Florpyrauxifen-benzyl (FPB) is a new class of auxinic herbicide developed for selective weed control...
Florpyrauxifen-benzyl is a synthetic auxin herbicide which was commercially released in 2018 to comb...
Understanding cultivar responses to a new herbicide is crucial to determining appropriate herbicide ...
Florpyrauxifen-benzyl (synthetic auxin, WSSA Group 4) is a postemergence, broad-spectrum herbicide l...
Florpyrauxifen-benzyl is a new auxinic herbicide developed for selective weed control in rice. Herb...
Controlling weedy rice postemergence is challenging for rice producers in the United States because ...
Weed control is one of the most important factors on rice yield potential expression. In this conte...
Barnyardgrass remains one of the most difficult weeds to manage in rice. As herbicide resistance in ...
Not AvailableTo prevent weed invasion in direct seeded rice cultivation, several new generation post...
Not AvailableTo prevent weed invasion in direct seeded rice cultivation, several new generation post...
The red rice (Oryza sativa) co-exists with the cultivated rice in commercial farmings, becoming one...
To prevent weed invasion in direct seeded rice cultivation, several new generation post emergence he...
A system of permanently flooded rice and a lack of diverse weed management techniques have selected ...
Several weedy red rice populations have evolved resistance to imidazolinone herbicides worldwide. Th...
A field study was conducted in 2019, 2020, and 2021 at the LSU Agricultural Center H. Rouse Caffey R...