A JA-OsMYB72-OsTAM1 module promotes (R)-β-tyrosine-mediated lignin defense against brown planthopper in rice.

Brown planthopper (Nilaparvata lugens, BPH) is a major pest that severely limits rice production. Although plant defense against BPH involves complex metabolic and structural responses, the role of non-protein amino acids (NPAAs) in this process remains poorly understood. Here, we demonstrate that (R)-β-tyrosine functions as a key defense metabolite that enhances rice resistance to BPH. Exogenous application and genetic manipulation across different rice backgrounds revealed that (R)-β-tyrosine does not directly affect insect survival but instead acts through host-mediated mechanisms. Transcriptomic, histological, and physiological analyses showed that (R)-β-tyrosine promotes the expression of phenylpropanoid pathway genes, leading to increased lignin accumulation, enhanced mechanical strength, and reinforced physical barriers that restrict BPH feeding. Mechanistically, we identify the JA-inducible transcription factor OsMYB72 as a key activator of OsTAM1, the enzyme catalyzing β-tyrosine biosynthesis, thereby linking JA signaling to (R)-β-tyrosine accumulation. This JA-OsMYB72-OsTAM1 module coordinates β-tyrosine production with downstream phenylpropanoid metabolism, promoting lignin deposition and reinforcing structural defense against BPH. Together, our findings establish a link between NPAA metabolism and lignin-associated structural defense, offering insight into metabolite mediated plant resistance to piercing-sucking herbivores.

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Publication Details

Journal
PubMed
Published
2026-10-06
DOI
https://doi.org/10.1093/plphys/kiag743
Primary Topic
Insect-Plant Interactions and Control
Type
article
Field-Weighted Citation Impact
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article

A JA-OsMYB72-OsTAM1 module promotes (R)-β-tyrosine-mediated lignin defense against brown planthopper in rice.

Genxiang Bai, Yu He, Zhongyan Yang, Shaoqun Zhou et al.
PubMed
Insect-Plant Interactions and Control
article

A JA-OsMYB72-OsTAM1 module promotes (R)-β-tyrosine-mediated lignin defense against brown planthopper in rice.

Genxiang Bai, Yu He, Zhongyan Yang, Shaoqun Zhou, Junru Long, Jiayun Hu, Mengyun Xu, Jian Yan, Zepeng Chen, Ping Li, Dongqian Li
article en

Abstract

Brown planthopper (Nilaparvata lugens, BPH) is a major pest that severely limits rice production. Although plant defense against BPH involves complex metabolic and structural responses, the role of non-protein amino acids (NPAAs) in this process remains poorly understood. Here, we demonstrate that (R)-β-tyrosine functions as a key defense metabolite that enhances rice resistance to BPH. Exogenous application and genetic manipulation across different rice backgrounds revealed that (R)-β-tyrosine does not directly affect insect survival but instead acts through host-mediated mechanisms. Transcriptomic, histological, and physiological analyses showed that (R)-β-tyrosine promotes the expression of phenylpropanoid pathway genes, leading to increased lignin accumulation, enhanced mechanical strength, and reinforced physical barriers that restrict BPH feeding. Mechanistically, we identify the JA-inducible transcription factor OsMYB72 as a key activator of OsTAM1, the enzyme catalyzing β-tyrosine biosynthesis, thereby linking JA signaling to (R)-β-tyrosine accumulation. This JA-OsMYB72-OsTAM1 module coordinates β-tyrosine production with downstream phenylpropanoid metabolism, promoting lignin deposition and reinforcing structural defense against BPH. Together, our findings establish a link between NPAA metabolism and lignin-associated structural defense, offering insight into metabolite mediated plant resistance to piercing-sucking herbivores.

PubMed
South China Agricultural University (CN), Hubei University of Chinese Medicine (CN), Shaoguan University (CN), Agricultural Genomics Institute at Shenzhen (CN), Chinese Academy of Agricultural Sciences (CN), Ministry of Agriculture and Rural Affairs (CN)
Openalex Percentile: Top 12%
Insect-Plant Interactions and Control
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