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Chengbin Gao

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Open access Aug 2026

MFDB: a comprehensive database for marine fish functional genomics and evolutionary genomics.

Marine fishes are important contributors to biodiversity conservation and socioeconomic sustainability. While genomic and multi-omics datasets for marine fish species have expanded exponentially in recent years, their systematic integration remains underexplored, hindering comprehensive investigations into gene regulation and biological systems. To bridge this gap, we developed the Marine Fish Database (MFDB; http://marinefishdb.cn), the first integrative genomics platform specifically designed for marine teleosts. MFDB compiles fragmented multi-omics resources across 89 species, encompassing genome assemblies, phylogenomic reconstructions, collinearity maps, pan gene sets, gene architectures, functional annotations, expression profiles, and evolutionary gene family analyses. MFDB further delivers specialized analytical modules, including tissue-specific gene co-expression networks, lineage-defining core gene repertoires, and macrosynteny-driven chromosomal evolution models. The platform features an intuitive and programmable interface, enabling multiscale queries, cross-omics data mining, and dynamic visualization of multidimensional biological interactions. These functionalities collectively empower users to decipher how genomic elements orchestrate phenotypic outcomes through multi-layered regulatory cascades. By integrating rapidly expanding omics datasets with robust analytical pipelines, MFDB establishes a scalable framework to accelerate hypothesis-driven discoveries in marine fish biology, evolutionary adaptation, and ecological resilience research, and further provides an easy-to-operate information platform for the molecular breeding of marine fish species.

Chengbin Gao, Ming Li, Sheng Lu et al. · 0 citations
Open access Aug 2026

LncRNA–miRNA–mRNA Regulatory Network Reveals Potential Immune Responses in Larval Tomato Hind (Cephalopholis sonnerati) Infected with RGNNV

Simple Summary Cephalopholis sonnerati is an economically new aquaculture species in China. The red-spotted grouper nervous necrosis virus (RGNNV) exhibits high pathogenicity in larval C. sonnerati, but its immune response mechanisms remain unexplored, impeding the development of aquaculture. In the present study, we profiled brain transcriptome from healthy and naturally RGNNV-infected larvae. Many differentially expressed microRNAs (miRNAs), long non-coding RNAs (lncRNAs) and fewer circular RNAs were identified. Enrichment analysis demonstrated that these targeted genes of differentially expressed ncRNAs were markedly enriched in innate immune defense, inflammatory, and cell death related pathways, such as JAK-STAT signaling pathway, NF-κB signaling pathway, apoptosis, and necroptosis. Furthermore, a lncRNA–miRNA–mRNA regulatory network focused on miR-93 was established, which may provide a valuable candidate target for future antiviral strategies in C. sonnerati. This study offers the first ncRNA transcriptome landscape of C. sonnerati during RGNNV infection, establishing a theoretical basis for elucidating host-RGNNV interaction mechanism in groupers.

Xiaoli Guo, Chengbin Gao, Zhangfan Chen et al. · 0 citations