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. 2024 Dec;120(6):2723-2737.
doi: 10.1111/tpj.17141. Epub 2024 Nov 14.

Mutation of rice EARLY LEAF LESION AND SENESCENCE 1 (ELS1), which encodes an anthranilate synthase α-subunit, induces ROS accumulation and cell death through activating the tryptophan synthesis pathway in rice

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Mutation of rice EARLY LEAF LESION AND SENESCENCE 1 (ELS1), which encodes an anthranilate synthase α-subunit, induces ROS accumulation and cell death through activating the tryptophan synthesis pathway in rice

Wenhao Li et al. Plant J. 2024 Dec.

Abstract

Lesion-mimic mutants (LMMs) serve as valuable resources for uncovering the molecular mechanisms that govern programmed cell death (PCD) in plants. Despite extensive research, the regulatory mechanisms of PCD and lesion formation in various LMMs remain to be fully elucidated. In this study, we identified a rice LMM named early leaf lesion and senescence 1 (els1), cloned the causal gene through map-based cloning, and confirmed its function through complementation. ELS1 encodes an anthranilate synthase α-subunit involved in anthranilate biosynthesis. It is predominantly localized in chloroplasts and is primarily expressed in light-exposed tissues. Mutation of ELS1 triggers upregulation of its homologous gene, ASA1, via a genetic compensation response, leading to the activation of the tryptophan (Trp) synthesis pathway and amino acid metabolism. The accumulation of abnormal Trp-derived intermediate metabolites results in reactive oxygen species (ROS) production and abnormal PCD in the els1 mutant, ultimately causing the leaf lesion phenotype. The els1 mutant also exhibits reduced chlorophyll content, upregulation of genes related to chloroplast degradation and leaf senescence, and decreased activity of photosynthetic proteins, indicating that ELS1 plays a role in chloroplast development. These factors collectively contribute to the premature leaf senescence observed in the els1 mutant. Our findings shed light on the role of ELS1 in regulating ROS accumulation and PCD in rice, providing further genetic insights into the molecular mechanisms governing leaf lesions and senescence.

Keywords: ELS1; lesion‐mimic mutant; programmed cell death (PCD); reactive oxygen species (ROS); rice; tryptophan (Trp).

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REFERENCES

    1. Agrawal, G.K., Jwa, N.S. & Rakwal, R. (2000) A novel rice (Oryza sativa L.) acidic PR1 gene highly responsive to cut, phytohormones, and protein phosphatase inhibitors. Biochemical and Biophysical Research Communications, 274, 157–165.
    1. Cho, H.J., Brotherton, J.E., Song, H.S. & Widholm, J.M. (2000) Increasing tryptophan synthesis in a forage legume Astragalus sinicus by expressing the tobacco feedback‐insensitive anthranilate synthase (ASA2) gene. Plant Physiology, 123, 1069–1076.
    1. Cui, Y.J., Peng, Y.L., Zhang, Q., Xia, S.S., Ruan, B.P., Xu, Q.K. et al. (2021) Disruption of EARLY LESION LEAF 1, encoding a cytochrome P450 monooxygenase, induces ROS accumulation and cell death in rice. The Plant Journal, 105, 942–956.
    1. Dangol, S., Chen, Y., Hwang, B.K. & Jwa, N.S. (2019) Iron‐ and reactive oxygen species‐dependent Ferroptotic cell death in rice‐Magnaporthe oryzae interactions. Plant Cell, 31, 189–209.
    1. Dickman, M.B. & Fluhr, R. (2013) Centrality of host cell death in plant‐microbe interactions. Annual Review of Phytopathology, 51, 543–570.

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