抗除草剂
环境科学
转基因作物
转基因生物
农学
播种
基因工程
植被(病理学)
生物
生物技术
农业工程
转基因
杂草防治
工程类
基因
生物化学
医学
病理
作者
Andromeda M. Sharkey,Brent J. Williams,Kimberly M. Parker
标识
DOI:10.1021/acs.est.1c01906
摘要
In recent years, off-target herbicide drift has been increasingly reported to lead to damage to nontarget vegetation in the U.S. These reports have coincided with the widespread adoption of genetically modified crops with new herbicide-tolerance traits. Planting crops with these traits may indirectly lead to increased drift both by increasing the use of the corresponding herbicides and by facilitating their use as postemergence herbicides later in the season. While extensive efforts have aimed to reduce herbicide drift, critical uncertainties remain regarding the physiochemical phenomena that drive the entry of herbicides into the atmosphere as well as the atmospheric processes that may influence short- and long-range transport. Resolving these uncertainties will support the development of effective approaches to reduce herbicide drift.
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