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Research paper | Open Access

Identification of genes involved in the tomato Mi-1-mediated immunity to root-knot nematodes parasitism under high temperature

Yuqing Laia,1Zhijie Lib,1Erfeng Lib,1Rui Liua,1Nv ChangaCuihua LuaJian LingaXiaoxiao ZhangcShanshan YangcZhukan ChendYuhong YangaYan LiaBingyan XieaZhenchuan Maoa( )Jianlong Zhaoa( )
State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China
Tianjin Agricultural University, Tianjin 300384, China
Guangxi Key Laboratory of Agro-environment and Agro-product Safety, College of Agriculture, Guangxi University, Nanning, Guangxi 530004, China
Hangzhou Fuyang District Agriculture and Rural Bureau, Hangzhou, Zhejiang 311499, China

1 These authors contributed equally to this work.

Peer review under responsibility of Chinese Society of Horticultural Science (CSHS) and Institute of Vegetables and Flowers (IVF), Chinese Academy of Agricultural Sciences (CAAS).

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Abstract

Root-knot nematodes (RKNs) are notorious plant pathogens that cause substantial losses in horticultural crops globally. The tomato RKN resistance gene, Mi-1, is currently the sole commercially available source of resistance. However, its effectiveness significantly declines when soil temperatures exceed 28 ℃. Although numerous studies have explored the immune signaling pathways mediated by Mi-1, the specific plant immune responses affected by high temperatures and the key temperature-sensitive genes involved remain poorly understood. In this study, we demonstrated that the Mi-1-mediated hypersensitive response is impaired at 32 ℃. At this temperature, the production of reactive oxygen species (ROS) in roots is reduced, while callose deposition increases. Through comparative transcriptome analysis between 24 ℃ and 32 ℃, we identified significant changes in hormone signaling pathways, immune signaling, and gene alternative splicing. For instance, the jasmonic acid (JA) pathway was upregulated, and the salicylic acid (SA) pathway was inhibited at 32 ℃. High temperatures also disrupted the MAPK cascade and influenced metabolite synthesis. Notably, most genes upregulated at 24 ℃ were downregulated at 32 ℃. Furthermore, virus-induced gene silencing (VIGS) assays verified that interfering with the expression of differentially expressed genes, such as the JA biosynthesis key gene MYB transcription factor AOS3, the abscisic acid (ABA) synthesis regulation gene JA2, and the heat stress transcription factor A-6b, increased the susceptibility of Mi-1 tomatoes to RKNs. These findings offer crucial insights into the temperature sensitivity of Mi-1 resistance and support the development of RKN-resistant tomatoes that can remain effective under high-temperature conditions.

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Horticultural Plant Journal
Pages 2103-2115

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Cite this article:
Lai Y, Li Z, Li E, et al. Identification of genes involved in the tomato Mi-1-mediated immunity to root-knot nematodes parasitism under high temperature. Horticultural Plant Journal, 2026, 12(9): 2103-2115. https://doi.org/10.1016/j.hpj.2025.02.021

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Received: 15 November 2024
Accepted: 27 February 2025
Published: 26 June 2025
© 2025 Chinese Society for Horticultural Science.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).