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V. K. Katneni

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Open access Aug 2026

ShEnrich: a functional annotation database and enrichment platform for penaeid shrimp

Penaeid shrimp are among the most commercially important aquaculture species globally, yet no dedicated integrated functional annotation and enrichment analysis platform currently for penaeid shrimp. Researchers working with shrimp transcriptomic data currently rely on generic enrichment tools built around model organisms that provide limited or no coverage for most penaeid species. In this context, current study aims to develop annotation and enrichment analysis platform for commercially important shrimp species. ShEnrich was developed using a multi-tiered annotation pipeline combining BLASTP searches against the NCBI non-redundant database, InterProScan domain prediction, and eggNOG-mapper orthology assignments. Cross-species ortholog clustering was performed using OrthoMCL across five commercially farmed penaeid species. GMT libraries for each species were constructed for KEGG and GO enrichment analysis, implemented using the clusterProfiler R package. The platform was built on a MySQL 8.0 relational database with a PHP 8.1 backend and an integrated JBrowse2 genome browser. The database integrates 61,287 annotated proteins representing 34,169 genes, with 178,595 gene-pathway associations across 442 KEGG pathways and 138,077 proteins mapped to 12,897 GO terms across five species: Penaeus vannamei , Penaeus monodon , Penaeus indicus , Penaeus chinensis , and Penaeus japonicus . Cross-species comparative genomics is supported through 18,031 ortholog groups identified using OrthoMCL. The web platform provides KEGG and GO enrichment analysis, protein annotation search, ortholog browsing, and genome visualization. ShEnrich is freely available at https://bioinfo.ciba.res.in/shenrich/ . ShEnrich provides the first dedicated functional annotation and enrichment analysis resource for penaeid shrimp, filling a gap that has limited biological interpretation of transcriptomic data in this economically important group. The platform supports functional analysis of gene expression studies across disease, stress, and environmental conditions in commercially farmed shrimp species.

Harikrishnan Udayakumar Geetha, Ashok Kumar Jangam, V. K. Katneni et al. · 0 citations
Dataset Open access Aug 2026

Chromosome level genome assembly and full-length transcriptome of blacktip trevally (Caranx heberi)

Caranx heberi (Bennett, 1830) commonly known as the blacktip trevally belongs to the family Carangidae and is a potential brackishwater aquaculture species. However, the limited genomic resources are hindering the efforts to study its genetic traits and their molecular basis. To bridge this gap, we generated a high-quality reference genome employing multiple sequencing strategies including PacBio Hifi reads (135x), Illumina short reads (150x), and Hi-C chromosome conformation capturing (180x). The high-quality genome assembly consisted of 159 scaffolds summing to 618.71 Mb and an N50 value of 26.72 Mb. Among these, 24 chromosome level scaffolds covered 97.5% of the total assembly. The genome contained 20.94% of repeat elements and 30,354 protein encoding genes. In addition, full-length transcriptomes were generated using the PacBio IsoSeq approach from seven tissues (gill, kidney, liver, muscle, heart, spleen, and intestine). The comprehensive genomic and transcriptomic resources developed in this study will facilitate the domestication and aquaculture development of C. heberi, as well as support research on its nutritional potential, ecological adaptations, and evolutionary biology.

M. S. Shekhar, V. K. Katneni, Sudheesh K. Prabhudas et al. · 0 citations

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