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Wenjuan Yi

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Open access Aug 2026

Exome sequencing and metabolite profiling identifies genetic variants associated with altered metabolism in early-onset schizophrenia

Summary Early-onset schizophrenia (EOS) is a severe psychiatric disorder characterized by strong genetic contribution and metabolic alterations, including lipid dysregulation. To investigate the relationship between genetic variation and metabolic changes in EOS, we performed whole-exome sequencing and serum metabolome profiling in 28 patients with EOS and 20 healthy controls. We identified 114 high-risk genes and 117 differentially expressed metabolites. Of the risk genes with variants in multiple patients, 54.35% (25/46) were associated with clinical symptoms, and of the differentially expressed lipids, 34.88% (15/43) were correlated with clinical symptoms. By integrating protein-metabolite interactions and metabolite correlations, we constructed a gene-metabolite network and identified 19 high-risk genes linking to 31 dysregulated lipids. Twenty of these lipids were significantly down-regulated in patients, with 80% (16/20) showing further down-regulation in variant carriers. Our findings provide compelling evidence for a genetic-metabolic interaction in EOS pathogenesis and point to an alternative disease mechanism of schizophrenia.

Xiaoxue Yang, Wenjun Yu, Hong-Xu Pan et al. · 0 citations
Aug 2026

Lch-miR156b-directed repression of LcSPL11 regulates flowering in Liriodendron chinense.

MicroRNAs (miRNAs) are small regulatory RNAs that control gene expression through sequence-specific interactions with target transcripts and play pivotal roles in plant developmental phase transitions. Among them, the miR156-SQUAMOSA PROMOTER BINDING PROTEIN-LIKE (SPL) module constitutes a conserved regulatory pathway controlling flowering time in diverse species, yet its molecular function in woody perennials with extended juvenile phases remains poorly understood. Here, seven miR156 family members were identified in Liriodendron chinense by small RNA sequencing, and the Lch-miR156b-LcSPL11 regulatory module was functionally characterized. 5' RNA ligase-mediated rapid amplification of cDNA ends (5' RLM-RACE) and dual-luciferase assays demonstrated that Lch-miR156b directly cleaves and represses LcSPL11 transcripts. Expression profiling further associated the Lch-miR156b-LcSPL11 module with flowering-time variation in L. chinense. In heterologous assays, ectopic expression of Lch-miR156b in Arabidopsis thaliana delayed flowering, whereas overexpression of LcSPL11, including a miRNA-resistant variant (rLcSPL11), accelerated floral transition. In addition, LcSOC1 and LcFUL showed expression patterns similar to that of LcSPL11, their promoters contained conserved GTAC cis-elements, and yeast one-hybrid assays confirmed direct binding of LcSPL11 to both promoters. Together, these findings reveal a conserved miRNA-mediated regulatory cascade in which Lch-miR156b modulates flowering through LcSPL11 and its downstream targets LcSOC1 and LcFUL, providing mechanistic insight into flowering control in a woody basal angiosperm.

Jing Wang, Wenjuan Yi, Yu Zhang et al. · 0 citations