Evidence map›Paper›PMID 41163151›Full record

ArticleBMC genomics2025

GWAS and multi-omics study reveal OsJAR2 associated jasmonate biosynthesis contributes to Southern rice black-streaked dwarf virus resistance in rice.

Shuai Nie, Haiyong Gu, Zhanbiao Li, Lian Zhou, Lixian Cui, Runfeng Wang, Qi Liu, Bixia Qin, Jiansong Chen, Junliang Zhao

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Article in BMC genomics, 2025. 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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5 · Who and what money

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10 authors.

Shuai Nie *Rice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China.
Haiyong Gu *Rice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China.
Zhanbiao Li *Plant Protection Research Institute, Guangxi Academy of Agricultural Sciences/Guangxi Key Laboratory of Biology for Crop Diseases and Insect Pests/Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs, Nanning, 530007, China.
Lian ZhouRice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China.
Lixian CuiPlant Protection Research Institute, Guangxi Academy of Agricultural Sciences/Guangxi Key Laboratory of Biology for Crop Diseases and Insect Pests/Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs, Nanning, 530007, China.
Runfeng WangGuangdong Provincial Key Laboratory of Crop Genetic Improvement, Crops Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, China.
Qi LiuRice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China.
Bixia QinPlant Protection Research Institute, Guangxi Academy of Agricultural Sciences/Guangxi Key Laboratory of Biology for Crop Diseases and Insect Pests/Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs, Nanning, 530007, China. qinbx@126.com.
Jiansong ChenRice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China. chenjiansong@gdaas.cn.
Junliang ZhaoRice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of Rice Science and Technology/Guangdong Rice Engineering Laboratory/Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangzhou, 510640, China. zhao_junliang@gdaas.cn.

Funding

Guangxi Science and Technology Base and Talent Special Project Guike AC22035090Key Project of Guangdong Basic and Applied Basic Research Foundation 2020B1515420003National Natural Science Foundation of China 32372175, 32361143519Project of Collaborative Innovation Center of GDAAS XTXM202203the Elite Rice Plan of GDRRI 2024YG07, 2025YG03The seed industry revitalization project of special fund for rural revitalization strategy in Guangdong Province 2024-NPY-00-001
6 · The paper itself

Abstract

backgroundSouthern rice black-streaked dwarf virus (SRBSDV), transmitted by the white-backed planthopper (WBPH), causes severe yield losses in rice across Asia. However, elite resistant germplasms and molecular defense mechanisms remain elusive, hindering breeding efforts.

resultsScreening of 195 international diverse rice accessions identified a highly resistant (up to 0% disease incidence) variety (R91), exhibiting dual resistance to SRBSDV and rice black-streaked dwarf virus (RBSDV). Multi-omics analysis revealed a rapid defense activation in R91, with an increase in Jasmonic Acid (JA) and Jasmonic Acid-Isoleucine (JA-Ile) by 5 days post-inoculation (dpi), along with upregulation of more than 2,000 defense genes. In contract, susceptible line showed declining JA and JA-Ile level along with suppressed defense responses. Time-ordered co-expression networks pinpointed that OsJAR2 (encoding a JA-Ile synthase, LOC_Os01g12160) may act as a hub of resistance molecular network. Genome wide association study (GWAS) identified a novel SRBSDV resistance quantitative trait locus (qSRBSDV1-1) co-localizing with OsJAR2, and haplotype analysis validated OsJAR2 as the candidate causal resistance gene, further providing genetic evidence for its role in SRBSDV defense.

conclusionsOur study identifies a highly SRBSDV-resistant rice germplasm, offering valuable genetic resource for both resistance research and breeding programs. We demonstrate that rapid JA biosynthesis activation and coordinated defense gene expression form the molecular basis of resistance in this accession. Crucially, we pinpoint OsJAR2 as a novel functional resistance gene, with its associated resistant haplotype serving as a robust molecular marker for marker-assisted selection (MAS). These findings advance our understanding of SRBSDV resistance mechanisms and provide a genetic toolkit for developing elite, disease-resistant rice varieties.

Indexed as

CyclopentanesDisease ResistanceGenome-Wide Association StudyOryzaOxylipinsPlant DiseasesPlant ProteinsReoviridaeGene Expression Regulation, PlantMultiomicsPlant VirusesPolymorphism, Single NucleotideQuantitative Trait LociCyclopentanesjasmonic acidOxylipinsPlant ProteinsComparative transcriptomeJasmonic acidOsJ AR2Rice (Oryza sativa)Southern rice black-streaked dwarf virus (SRBSDV)

Identifiers

PMID41163151
PMCPMC12574106

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