种质资源
清脆的
突变体
数量结构-活动关系
杂草
生物
遗传学
基因
野生型
计算生物学
化学
生物化学
生物技术
植物
生物信息学
作者
Tao Wei,Xin Wen,Cong‐Wei Niu,Sijing An,Dawei Wang,Zhen Xi,Ning Ning Wang
标识
DOI:10.1021/acs.jafc.1c07180
摘要
The development of herbicide-resistant germplasm is significant in solving the increasingly severe weed problem in crop fields. In this study, we, for the first time, rationally designed a predictable and effective approach to create herbicide-resistant germplasm by combining mutation-dependent biomacromolecular quantitative structure-activity relationship (MB-QSAR) and CRISPR/Cas9-mediated base-editing strategies. Our results showed that the homozygous P197F-G654D-G655S or P197F-G654N-G655S Arabidopsis plants exhibited high resistance to multiple acetohydroxyacid synthase-inhibiting herbicides, including chlorsulfuron, bispyribac-sodium, and flucarbazone-sodium. Additionally, the plants with the homozygous P197S mutant displayed increased susceptibility to bispyribac-sodium than the wild-type but more resistance to flumetsulam than other mutants. Besides, we found that the herbicide resistance levels of the gene-edited plants have a good correlation with MB-QSAR prediction.
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