Comparative proteomic and physiological analyses reveal tribenuron‐methyl phytotoxicity and nontarget‐site resistance mechanisms in Brassica napus

Author:

Hu Maolong1234,Zhang Hongkun2,Kong Lingna2,Ma Juanjuan134,Wang Ting13,Lu Xinyu13,Guo Yue14,Zhang Jiefu14,Guan Rongzhan2,Chu Pu2ORCID

Affiliation:

1. Key Laboratory of Cotton and Rapeseed, Ministry of Agriculture and Rural Affairs, Institute of Industrial Crops Jiangsu Academy of Agricultural Sciences Nanjing China

2. National Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, Jiangsu Collaborative Innovation Centre for Modern Crop Production, College of Agriculture Nanjing Agricultural University Nanjing China

3. Institute of Life Sciences Jiangsu University Zhenjiang China

4. Provincial Key Laboratory of Agrobiology Jiangsu Academy of Agricultural Sciences Nanjing China

Abstract

AbstractThe application of herbicides is the most effective strategy for weed control and the development of herbicide‐resistant crops will facilitate the weed management. The acetolactate synthase‐inhibiting herbicide, tribenuron‐methyl (TBM), is broadly used for weed control. However, its application in rapeseed field is restricted since rapeseed is sensitive to TBM. Herein, an integrated study of cytological, physiological and proteomic analysis of the TBM‐resistant rapeseed mutant M342 and its wild‐type (WT) plants was conducted. After TBM spraying, M342 showed improved tolerance to TBM, and proteins implicated in non‐target‐site resistance (NTSR) to herbicides had a significantly higher level in M342 as compared with the WT. Differentially accumulated proteins (DAPs) between these two genotypes were enriched in glutathione metabolism and oxidoreduction coenzyme metabolic process, which protected the mutant from oxidative stress triggered by TBM. Important DAPs related to stress or defence response were up‐accumulated in M342 regardless of the TBM treatment, which might serve as the constitutive part of NTSR to TBM. These results provide new clues for further exploration of the NTSR mechanism in plants and establish a theoretical basis for the development of herbicide‐resistant crops.

Funder

Natural Science Foundation of Jiangsu Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Physiology

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