突变体
杂草
生物
突变
遗传学
杂草防治
抗除草剂
乙酰辅酶A羧化酶
生物技术
体外
化学
基因
磺酰脲
突变
农学
水稻
过程(计算)
丙酮酸羧化酶
农业
杂草科学
计算生物学
草铵膦
杂草稻
作者
Zhenzhen Zhou (579927),Qun Jiang (81928),Zeyu Qiu (3401591),Xiaodong Hou (784823),Xia Yang (46748),Yuwen Yang (113412),Tingting Hao (107457),Dongshu Guo (395350),Jinyan Wang (195882),Yongfeng Li (135567),Qing Liu (20889),Xitie Ling (5337920),Baolong Zhang (113411)
出处
期刊:
[Figshare (United Kingdom)]
日期:2024-05-16
标识
DOI:10.1021/acs.jafc.4c01889.s001
摘要
Weeds present a significant challenge to agricultural productivity, and acetyl-CoA carboxylase (ACCase)-inhibiting herbicides have proven to be effective in managing weed populations in rice fields. To develop ACCase-inhibiting herbicide-resistant rice, we generated mutants of rice ACCase (OsACC) featuring Ile-1792-Leu or Gly-2107-Ser substitutions through ethyl methyl sulfonate (EMS) mutagenesis. The Ile-1792-Leu mutant displayed cross-resistance to aryloxyphenoxypropionate (APP) and phenylpyrazoline (DEN) herbicides, whereas the Gly-2107-Ser mutants primarily exhibited cross-resistance to APP herbicides with diminished resistance to the DEN herbicide. In vitro assays of the OsACC activity revealed an increase in resistance to haloxyfop and quizalofop, ranging from 4.84- to 29-fold in the mutants compared to that in wild-type. Structural modeling revealed that both mutations likely reduce the binding affinity between OsACC and ACCase inhibitors, thereby imparting resistance. This study offers insights into two target-site mutations, contributing to the breeding of herbicide-resistant rice and presenting alternative weed management strategies in rice cultivation.
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