Molecular Characterization of Resistance to Nicosulfuron in Setaria viridis

Author:

Cao Yi1,Lan Yuning1,Huang Hongjuan1,Wei Shouhui1ORCID,Li Xiangju1ORCID,Sun Ying1ORCID,Wang Ruolin1,Huang Zhaofeng1

Affiliation:

1. State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China

Abstract

The green foxtail, Setaria viridis (L.) P. Beauv. (Poales: Poaceae), is a troublesome and widespread grass weed in China. The acetolactate synthase (ALS)-inhibiting herbicide nicosulfuron has been intensively used to manage S. viridis, and this has substantially increased the selection pressure. Here we confirmed a 35.8-fold resistance to nicosulfuron in an S. viridis population (R376 population) from China and characterized the resistance mechanism. Molecular analyses revealed an Asp-376-Glu mutation of the ALS gene in the R376 population. The participation of metabolic resistance in the R376 population was proved by cytochrome P450 monooxygenases (P450) inhibitor pre-treatment and metabolism experiments. To further elucidate the mechanism of metabolic resistance, eighteen genes that could be related to the metabolism of nicosulfuron were obtained bythe RNA sequencing. The results of quantitative real-time PCR validation indicated that three ATP-binding cassette (ABC) transporters (ABE2, ABC15, and ABC15-2), four P450 (C76C2, CYOS, C78A5, and C81Q32), and two UDP-glucosyltransferase (UGT) (UGT13248 and UGT73C3), and one glutathione S-transferases (GST) (GST3) were the major candidates that contributed to metabolic nicosulfuron resistance in S. viridis. However, the specific role of these ten genes in metabolic resistance requires more research. Collectively, ALS gene mutations and enhanced metabolism may be responsible for the resistance of R376 to nicosulfuron.

Funder

Agriculture Research System of China

Major Projects for Cultivation of New Varieties of National Genetically Modified Organisms

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference38 articles.

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2. The ways to minimize dosages and increase efficacy of herbicides in corn in North China;Li;J. Maize Sci.,2021

3. Isolation and characterization of plant genes coding for acetolactate synthase, the target enzyme for two classes of herbicides;Mazur;Plant Physiol.,1987

4. Resistance of weeds to nicosulfuron in corn fields in China;Wu;Plant Prot.,2016

5. Target site mutations and cytochrome P450s-involved metabolism confer resistance to nicosulfuron in green foxtail (Setaria viridis);Huang;Pestic. Biochem. Physiol.,2021

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