Literature DB >> 33098711

Cytochrome P450 CYP81A10v7 in Lolium rigidum confers metabolic resistance to herbicides across at least five modes of action.

Heping Han1, Qin Yu1, Roland Beffa2, Susana González2, Frank Maiwald3, Jian Wang4, Stephen B Powles1.   

Abstract

Rapid and widespread evolution of multiple herbicide resistance in global weed species endowed by increased capacity to metabolize (degrade) herbicides (metabolic resistance) is a great threat to herbicide sustainability and global food production. Metabolic resistance in the economically damaging crop weed species Lolium rigidum is well known but a molecular understanding has been lacking. We purified a metabolic resistant (R) subset from a field evolved R L. rigidum population. The R, the herbicide susceptible (S) and derived F2 populations were used for candidate herbicide resistance gene discovery by RNA sequencing. A P450 gene CYP81A10v7 was identified with higher expression in R vs. S plants. Transgenic rice overexpressing this Lolium CYP81A10v7 gene became highly resistant to acetyl-coenzyme A carboxylase- and acetolactate synthase-inhibiting herbicides (diclofop-methyl, tralkoxydim, chlorsulfuron) and moderately resistant to hydroxyphenylpyruvate dioxygenase-inhibiting herbicide (mesotrione), photosystem II-inhibiting herbicides (atrazine and chlorotoluron) and the tubulin-inhibiting herbicide trifluralin. This wide cross-resistance profile to many dissimilar herbicides in CYP81A10v7 transgenic rice generally reflects what is evident in the R L. rigidum. This report clearly showed that a single P450 gene in a cross-pollinated weed species L. rigidum confers resistance to herbicides of at least five modes of action across seven herbicide chemistries.
© 2020 Society for Experimental Biology and John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Lolium rigidumzzm321990; chlorsulfuron; cross-pollinated species; cross-resistance; cytochrome P450; diclofop-methyl; herbicide metabolism; herbicide resistance; mesotrione; trifluralin

Year:  2020        PMID: 33098711     DOI: 10.1111/tpj.15040

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  15 in total

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2.  Cytochrome P450 CYP709C56 metabolizing mesosulfuron-methyl confers herbicide resistance in Alopecurus aequalis.

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3.  Hierarchical cluster analysis of herbicide modes of action reveals distinct classes of multiple resistance in weeds.

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Journal:  Pest Manag Sci       Date:  2021-12-17       Impact factor: 4.462

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7.  Impact of a Novel W2027L Mutation and Non-Target Site Resistance on Acetyl-CoA Carboxylase-Inhibiting Herbicides in a French Lolium multiflorum Population.

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8.  Multiple evolutionary origins of glyphosate resistance in Lolium multiflorum.

Authors:  Caio A C G Brunharo; Matthew A Streisfeld
Journal:  Evol Appl       Date:  2022-02-08       Impact factor: 5.183

9.  Cytochrome P450 and Glutathione S-Transferase Confer Metabolic Resistance to SYP-14288 and Multi-Drug Resistance in Rhizoctonia solani.

Authors:  Xingkai Cheng; Tan Dai; Zhihong Hu; Tongshan Cui; Weizhen Wang; Ping Han; Maolin Hu; Jianjun Hao; Pengfei Liu; Xili Liu
Journal:  Front Microbiol       Date:  2022-03-21       Impact factor: 5.640

10.  Expression Pattern of Entire Cytochrome P450 Genes and Response of Defenses in a Metabolic-Herbicide-Resistant Biotype of Polypogon fugax.

Authors:  Jiajia Yang; Minghao Jiang; Siwei Jia; Min Liao; Haiqun Cao; Ning Zhao
Journal:  Front Plant Sci       Date:  2022-03-25       Impact factor: 5.753

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