Evidence map›Paper›PMID 42791534›Full record

ArticleBMC plant biology2026

Integrated omics analyses reveal natamycin disrupts oxidative phosphorylation pathways in Magnaporthe oryzae.

Sauban Musa Jibril, Xingrun Yang, Chun Wang, Rong Cheng, Yongyue Cui, Jiandong Sun, Qian Liu, Chao Yang, Md Hasibur Rahaman Hera, Rong Liu and 2 more

Abstract read
In one paragraph

Article in BMC plant biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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0citing papers in PubMed
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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

12 authors.

Sauban Musa Jibril *State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Xingrun Yang *State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Chun Wang *State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Rong ChengState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Yongyue CuiState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Jiandong SunState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Qian LiuState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Chao YangState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Md Hasibur Rahaman HeraState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Rong LiuState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Chengyun LiState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China. licheng_yun@163.com.
Yi WangState Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, China. wyi_0114@163.com.

Funding

Major Science and Technology Projects in Yunnan Province 202402AE090026National Key R&D Program of China 2023YFD1400800The National Natural Science Foundation of China 32560630, 32202254The Talents Training Program in Yunnan YNYC-2022-0217The Yunnan Provincial Talent Program for Wang Yi XDYC.QNRC 2023-0421
6 · The paper itself

Abstract

Magnaporthe oryzae, the causative agent of rice blast, is a devastating fungal pathogen that threatens global rice production. While natamycin is a known antimicrobial compound of microbial origin, its efficacy and precise mode of action against M. oryzae have remained largely unexplored. In this study, treatment with various concentrations of natamycin potently inhibited mycelial growth by 16.43% to 100%, with an EC₅₀ value of 11.77 mg/L. Pathogenicity of M. oryzae was also markedly reduced, declining to 4.1% of the control level under both in vitro and greenhouse conditions. To elucidate the underlying mechanisms, we adopted a multi-omics approach, integrating transcriptomic and metabolomic data. This analysis revealed a coordinated disruption of key metabolic processes, including amino acid biosynthesis and, most critically, oxidative phosphorylation. Functional validation suggested the involvement of oxidative phosphorylation, as overexpression of two key genes in this pathway MGG_17901 and MGG_04969 conferred significant natamycin tolerance to the fungus. Consistent with this, the overexpression strains also exhibited enhanced pathogenicity, indicating that MGG_17901 and MGG_04969 are involved in the virulence of M. oryzae. Molecular docking further identified binding sites between natamycin and the proteins encoded by these genes, and sequence alignments across 96 M. oryzae strains confirmed that these sites are conserved. Collectively, our findings suggest that natamycin disrupts these pathways and underscore its potential as a sustainable, naturally derived biocontrol agent for the management of rice blast disease.

Indexed as

Fungicides, IndustrialMagnaportheNatamycinOxidative PhosphorylationAscomycotaFungal ProteinsMultiomicsOryzaPlant DiseasesTranscriptomeVirulenceFungal ProteinsFungicides, IndustrialNatamycinAmino acidMagnaporthe oryzaeMetabolomeNatamycinOxidative phosphorylationTranscriptome

Identifiers

PMID42791534
PMCPMC13613822

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.