Action of the fungal compound citrinin, a bioherbicide candidate, on photosystem II

Author:

Yang Qian1,Guo Yanjing1,Wang He1,Luo Zhi1,Chen Ying1,Jiang Mengyun1,Lu Huan1,Valverde Bernal E.12,Qiang Sheng1ORCID,Strasser Reto Jörg13,Chen Shiguo1ORCID

Affiliation:

1. Weed Research Laboratory Nanjing Agricultural University Nanjing China

2. Research and Development in Tropical Agriculture Alajuela Costa Rica

3. Bioenergetics Laboratory University of Geneva Geneva Switzerland

Abstract

AbstractBACKGROUNDBioherbicides are becoming more attractive as safe weed control tools towards sustainable agriculture. Natural products constitute an important source chemicals and chemical leads for discovery and development of novel pesticide target sites. Citrinin is a bioactive compound produced by fungi of the genera Penicillium and Aspergillus. However, its physiological‐biochemical mechanism as a phytotoxin remains unclear.RESULTSCitrinin causes visible leaf lesions on Ageratina adenophora similar to those produced by the commercial herbicide bromoxynil. Phytotoxicity bioassay tests using 24 plant species confirmed that citrinin has a broad activity spectrum and therefore has potential as a bioherbicide. Based on chlorophyll fluorescence studies, citrinin mainly blocks PSII electron flow beyond plastoquinone QA at the acceptor side, resulting in the inactivation of PSII reaction centers. Furthermore, molecular modeling of citrinin docking to the A. adenophora D1 protein suggests that it binds to the plastoquinone QB site by a hydrogen bond between the O1 hydroxy oxygen atom of citrinin and the histidine 215 of the D1 protein, the same way as classical phenolic PSII herbicides do. Finally, 32 new citrinin derivatives were designed and sorted according to free energies on the basis of the molecular model of an interaction between the citrinin molecule and the D1 protein. Five of the modeled compounds had much higher ligand binding affinity within the D1 protein compared with lead compound citrinin.CONCLUSIONCitrinin is a novel natural PSII inhibitor that has the potential to be developed into a bioherbicide or utilized as a lead compound for discovery of new derivatives with high herbicidal potency. © 2023 Society of Chemical Industry.

Funder

Fundamental Research Funds for the Central Universities

National Key Research and Development Program of China

Publisher

Wiley

Subject

Insect Science,Agronomy and Crop Science,General Medicine

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The future of microbial bioherbicides;Pest Management Science;2023-12-13

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