杂草
单加氧酶
细胞色素P450
生物
作物
抗性(生态学)
抗除草剂
杀虫剂
戒毒(替代医学)
草甘膦
生物技术
新陈代谢
农学
生物化学
医学
替代医学
病理
作者
Vijay K. Nandula,Dean E. Riechers,Yurdagul Ferhatoglu,Michael Barrett,Stephen O. Duke,Franck E. Dayan,Alina Goldberg-Cavalleri,Catherine Tétard‐Jones,David Wortley,Nawaporn Onkokesung,Melissa Brazier‐Hicks,Robert Edwards,Todd A. Gaines,Satoshi Iwakami,Mithila Jugulam,Rong Ma
出处
期刊:Weed Science
[Cambridge University Press]
日期:2019-03-01
卷期号:67 (2): 149-175
被引量:90
摘要
Abstract Several grass and broadleaf weed species around the world have evolved multiple-herbicide resistance at alarmingly increasing rates. Research on the biochemical and molecular resistance mechanisms of multiple-resistant weed populations indicate a prevalence of herbicide metabolism catalyzed by enzyme systems such as cytochrome P450 monooxygenases and glutathione S -transferases and, to a lesser extent, by glucosyl transferases. A symposium was conducted to gain an understanding of the current state of research on metabolic resistance mechanisms in weed species that pose major management problems around the world. These topics, as well as future directions of investigations that were identified in the symposium, are summarized herein. In addition, the latest information on selected topics such as the role of safeners in inducing crop tolerance to herbicides, selectivity to clomazone, glyphosate metabolism in crops and weeds, and bioactivation of natural molecules is reviewed.
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