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Transcriptomic analysis of leukocyte immunometabolic dynamics in hemorrhagic sepsis in Piaractus mesopotamicus

dc.contributor.authorClaudiano, Gustavo S. [UNESP]
dc.contributor.authorSampaio, Larissa A. F.
dc.contributor.authorAndrade, Sónia C. S.
dc.contributor.authorSouza, Elaine C.
dc.contributor.authorYunis-Aguinaga, Jefferson
dc.contributor.authorMarcusso, Paulo F. [UNESP]
dc.contributor.authorFerreira, Juliana N.
dc.contributor.authorLeão, Andrya L.
dc.contributor.authordos Santos, Thayná M.
dc.contributor.authorPereira, Layana A. B.
dc.contributor.authordos Santos, Laine P. C.
dc.contributor.authorCoutinho, Luiz L.
dc.contributor.authorMarzocchi-Machado, Cleni M.
dc.contributor.authorMoraes, Julieta R. E. [UNESP]
dc.date.accessioned2026-06-15T12:03:31Z
dc.date.issued2025-08-23
dc.description.abstractSepsis caused by Aeromonas hydrophila in Piaractus mesopotamicus triggers a complex transcriptomic reprogramming in circulating leukocytes. This study employed RNA-Seq to profile temporal changes in gene expression during the early stages of sepsis (1, 3, 6, and 9 h post-infection, HPI). A total of 17,698 differentially expressed genes (DEGs) were identified, with transcriptional peaks at 3 and 9 HPI. Functional classification (KOG) revealed enrichment in genes related to energy metabolism, amino acid metabolism, and protein synthesis. Gene Ontology (GO) and KEGG pathway analyses showed that leukocytes preferentially activated pathways involved in anaerobic glycolysis, the Krebs cycle, and lipid metabolism—particularly steroid hormone biosynthesis. Key immunometabolic pathways, including PI3K-AKT, mTOR, and TLR signaling, were dynamically modulated, indicating their role in maintaining ionic balance and promoting leukocyte survival during systemic inflammation. In addition, substantial reprogramming of iron and calcium metabolism was observed, suggesting a host strategy to limit bacterial growth by restricting access to essential micronutrients. These metabolic shifts correlated with disease severity, as evidenced by the high mortality rate (71.4% at 120 HPI) and pronounced histopathological damage in vital organs. Altogether, these findings demonstrate that leukocytes initiate a robust but potentially deleterious immunometabolic response to A. hydrophila, contributing both to host defense and to tissue injury. This work provides valuable molecular insights into the pathogenesis of septicemia in fish and offers a foundation for developing targeted strategies to mitigate Aeromonosis in aquaculture.
dc.description.affiliationInstitute of Biodiversity and Forests, Federal University of Western Pará, UFOPA, Santarém, Pará, Brazil
dc.description.affiliationGraduate Program in Aquaculture (PPG-AQUI), Nilton Lins University, Manaus, Amazonas, Brazil
dc.description.affiliationDepartment of Veterinarian Pathology, Faculty of Agrarian and Veterinarian Sciences, São Paulo State University, Unesp, Jaboticabal, São Paulo, Brazil
dc.description.affiliationDepartment of Genetics and Evolutionary Biology, Institute of Biosciences, São Paulo University, USP, São Paulo, São Paulo, Brazil
dc.description.affiliationEducational Foundation of Penápolis, FUNEPE, Penápolis, São Paulo, Brazil
dc.description.affiliationUniversidad Científica del Sur, Lima, Peru
dc.description.affiliationFaculdade de Medicina Veterinária E Zootecnia da, Universidade Estadual Paulista “Júlio de Mesquita Filho”, Botucatu, São Paulo, Brazil
dc.description.affiliationDepartment of Animal Science, São Paulo University, USP, ESALQ, Piracicaba, São Paulo, Brazil
dc.description.affiliationDepartment of Clinical, Toxicological and Bromatological Analyses, Ribeirão Preto School of Pharmaceutical Sciences, University of São Paulo, USP, Ribeirao Preto, São Paulo, Brazil
dc.description.affiliationAquaculture Center of UNESP, Caunesp, Jaboticabal, São Paulo, Brazil
dc.description.affiliationUnespDepartment of Veterinarian Pathology, Faculty of Agrarian and Veterinarian Sciences, São Paulo State University, Unesp, Jaboticabal, São Paulo, Brazil
dc.description.affiliationUnespFaculdade de Medicina Veterinária E Zootecnia da, Universidade Estadual Paulista “Júlio de Mesquita Filho”, Botucatu, São Paulo, Brazil
dc.description.affiliationUnespAquaculture Center of UNESP, Caunesp, Jaboticabal, São Paulo, Brazil
dc.identifierhttps://app.dimensions.ai/details/publication/pub.1192019733
dc.identifier.dimensionspub.1192019733
dc.identifier.doi10.1007/s10499-025-02192-5
dc.identifier.issn0967-6120
dc.identifier.issn1573-143X
dc.identifier.orcid0000-0002-5063-9123
dc.identifier.orcid0000-0003-2336-2840
dc.identifier.orcid0000-0002-1302-5261
dc.identifier.orcid0000-0002-1959-4350
dc.identifier.orcid0000-0002-2677-4915
dc.identifier.orcid0009-0003-0741-2630
dc.identifier.orcid0000-0002-7266-8881
dc.identifier.orcid0000-0003-2056-2900
dc.identifier.orcid0000-0002-8384-8781
dc.identifier.urihttps://hdl.handle.net/11449/326012
dc.publisherSpringer Nature
dc.relation.ispartofAquaculture International; n. 6; v. 33; p. 508
dc.rights.accessRightsAcesso restritopt
dc.rights.sourceRightsclosed
dc.sourceDimensions
dc.titleTranscriptomic analysis of leukocyte immunometabolic dynamics in hemorrhagic sepsis in Piaractus mesopotamicus
dc.typeArtigopt
dspace.entity.typePublication
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unesp.campusUniversidade Estadual Paulista (UNESP), Faculdade de Ciências Agrárias e Veterinárias, Jaboticabalpt
unesp.campusUniversidade Estadual Paulista (UNESP), Faculdade de Medicina Veterinária e Zootecnia, Botucatupt
unesp.campusUniversidade Estadual Paulista (UNESP), Centro de Aquicultura da Unesp, Jaboticabalpt

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