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OsPR10b Positively Regulates Blast and Bacterial Blight Resistance in Rice

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  • 1Institute of Rice, Fujian Academy of Agricultural Sciences, Fuzhou 350018, China
    2College of Agriculture, Fujian Agriculture and Forestry University, Fuzhou 350002, China

Received date: 2025-01-27

  Accepted date: 2025-04-20

  Online published: 2025-05-06

Cite this article

He Niqing, Lin Shaojun, Cheng Zhaoping, Huang Fenghuang, Jin Yidan, Wang Wenxiao, Yang Dewei . OsPR10b Positively Regulates Blast and Bacterial Blight Resistance in Rice[J]. Rice Science, 2025 , 32(5) : 585 -588 . DOI: 10.1016/j.rsci.2025.04.014

References

[1] Chen J, Zhao Y X, Luo X J, et al. 2023. NLR surveillance of pathogen interference with hormone receptors induces immunity. Nature, 613: 145-152.
[2] Choi C, Hwang S H, Fang I R, et al. 2015. Molecular characterization of Oryza sativa WRKY6, which binds to W-box-like element 1 of the Oryza sativa pathogenesis-related (PR) 10a promoter and confers reduced susceptibility to pathogens. New Phytol, 208(3): 846-859.
[3] Deng Y W, Zhai K R, Xie Z, et al. 2017. Epigenetic regulation of antagonistic receptors confers rice blast resistance with yield balance. Science, 355: 962-965.
[4] Du D, Zhang C W, Xing Y D, et al. 2021. The CC-NB-LRR OsRLR1 mediates rice disease resistance through interaction with OsWRKY19. Plant Biotechnol J, 19(5): 1052-1064.
[5] Du Z Z, Deng S R, Wu Z X, et al. 2022. Characterization of the PHOSPHATE RESPONSE 2-dependent and -independent Pi-starvation response secretome in rice. J Exp Bot, 73(19): 6955-6970.
[6] He S L, Jiang J Z, Chen B H, et al. 2018. Overexpression of a constitutively active truncated form of OsCDPK1 confers disease resistance by affecting OsPR10a expression in rice. Sci Rep, 8(1): 403.
[7] Hou M M, Xu W J, Bai H, et al. 2012. Characteristic expression of rice pathogenesis-related proteins in rice leaves during interactions with Xanthomonas oryzae pv. oryzae. Plant Cell Rep, 31(5): 895-904.
[8] Hu X H, Shen S, Wu J L, et al. 2023. A natural allele of proteasome maturation factor improves rice resistance to multiple pathogens. Nat Plants, 9(2): 228-237.
[9] Huang L F, Lin K H, He S L, et al. 2016. Multiple patterns of regulation and overexpression of a ribonuclease-like pathogenesis-related protein gene, OsPR10a, conferring disease resistance in rice and Arabidopsis. PLoS One, 11(6): e0156414.
[10] Li W, Zhang M C, Yang Y L, et al. 2024. Molecular evolution of rice blast resistance gene bsr-d1. Rice Sci, 31(6): 700-711.
[11] Li W T, Chern M, Yin J J, et al. 2019. Recent advances in broad-spectrum resistance to the rice blast disease. Curr Opin Plant Biol, 50: 114-120.
[12] Marković-Housley Z, Degano M, Lamba D, et al. 2003. Crystal structure of a hypoallergenic isoform of the major birch pollen allergen Bet v 1 and its likely biological function as a plant steroid carrier. J Mol Biol, 325(1):123-133.
[13] McGee J D, Hamer J E, Hodges T K. 2001. Characterization of a PR-10 pathogenesis-related gene family induced in rice during infection with Magnaporthe grisea. Mol Plant Microbe Interact, 14(7): 877-886.
[14] Ngou B P M, Ahn H K, Ding P T, et al. 2021. Mutual potentiation of plant immunity by cell-surface and intracellular receptors. Nature, 592: 110-115.
[15] Wang J Y, Wang R Y, Fang H, et al. 2021. Two VOZ transcription factors link an E3 ligase and an NLR immune receptor to modulate immunity in rice. Mol Plant, 14(2): 253-266.
[16] Wang J Z, Song W, Chai J J. 2023. Structure, biochemical function, and signaling mechanism of plant NLRs. Mol Plant, 16(1): 75-95.
[17] Wang Y X, Liu M X, Wang X W, et al. 2021. A novel β-1,3-glucanase Gns 6 from rice possesses antifungal activity against Magnaporthe oryzae. J Plant Physiol, 265: 153493.
[18] Wang Z C, Yang D W, Zhong G T, et al. 2024. Nucleotide-binding leucine-rich repeat receptor homologs Pib and PibH8 interact and contribute to immunity in rice. Plant Physiol, 195(4): 3010-3023.
[19] Wu L J, Han C, Wang H M, et al. 2024. OsbZIP53 negatively regulates immunity response by involving in reactive oxygen species and salicylic acid metabolism in rice. Rice Sci, 31(2): 190-202.
[20] Yan G W, Liu Y Q, Lan J P, et al. 2022. The rapid induction of OsPR1A protein is crucial in Xa21-mediated rice bacterial blight resistance. J Plant Pathol, 104(3): 969-978.
[21] Yang D W, Cheng C P, Zheng X H, et al. 2020. Identification and fine mapping of a major QTL, qHD19, that plays pleiotropic roles in regulating the heading date in rice. Mol Breed, 40: 30.
[22] Yuan M H, Jiang Z Y, Bi G Z, et al. 2021. Pattern-recognition receptors are required for NLR-mediated plant immunity. Nature, 592: 105-109.
[23] Zhai K R, Liang D, Li H L, et al. 2022. NLRs guard metabolism to coordinate pattern- and effector-triggered immunity. Nature, 601: 245-251.
[24] Zhang P, Ma X D, Liu L N, et al. 2023. MEDIATOR SUBUNIT 16 negatively regulates rice immunity by modulating PATHOGENESIS RELATED 3 activity. Plant Physiol, 192(2): 1132-1150.
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