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Yong-Run Cao

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Open access Aug 2026

Integrating predictive models and GWAS to identify candidate loci and genes for agronomic traits in rice

Rice is a staple crop whose improvement relies on breeding advances; precision agriculture demands predictive loci/genes for agronomic traits to innovate rice production. To cut experimental costs and boost efficiency, this study built predictive models using seedling leaf metabolomes to forecast rice agronomic traits and decode trait correlations. We integrated 11 agronomic traits and 840 metabolites from 524 rice germplasms, plus 17 agronomic traits of 3,000 varieties. Five algorithms (RF, LightGBM, SWR, LASSO, CART) were combined to build multi-model prediction systems, offsetting defects of single models for accurate complex trait prediction. GWAS on predicted phenotypes detected nine genetic hotspots. Results showed LASSO and CART had weak generalization, while LightGBM, RF and SWR delivered trait-specific predictive performance. Seven candidate genes within hotspots were validated via variation annotation, haplotype and tissue expression analyses. Distinct from laborious, environment-prone traditional phenotyping, these models realize rapid, stable high-throughput trait prediction via early metabolic markers. The uncovered loci and genes lay groundwork for dissecting molecular regulatory networks linking rice agronomy and metabolism.

Qiang Zhou, Fu-Juan Wang, Yan-Lin Yang et al. · 0 citations
Open access Sep 2026

RNA-Seq Analysis Reveals Transcriptomic and Alternative-Splicing Changes Associated with OsPHD1-Mediated Lesion Mimicry in Rice

Lesion-mimic mutants provide tractable systems for linking metabolic disruption to cell death and immunity in plants. OsPHD1 encodes a plastidial UDP-glucose/UDP-galactose 4-epimerase, and its disruption causes a lesion-mimic phenotype in the rice mutant lm212. Here, we compared the leaf transcriptomes of lm212 and wild-type plants by RNA sequencing and identified 999 differentially expressed genes. Enriched functions included redox regulation, cell-wall organization, plant–pathogen interaction, MAPK signaling, glutathione metabolism, phenylpropanoid biosynthesis and alpha-linolenic acid metabolism. Alternative-splicing analysis revealed gene-dependent changes, and selected intron-retention events were supported by genome-browser inspection and isoform-specific RT-qPCR. Together, our findings associate OsPHD1 disruption with coordinated transcriptional and post-transcriptional differences and identify candidate pathways potentially related to lesion formation and defense responses in rice.

Yong-Run Cao, Yang Yang, Wen-Jing Chen et al. · 0 citations

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