Pitchanee JariyapongArnon PudgerdNifareesa ChelohIkuo HironoHidehiro KondoRapeepun VanichviriyakitWattana WeerachatyanukulCharoonroj ChotwiwatthanakunUniversity of PhayaoWalailak UniversityNational University Corporation Tokyo University of Marine Science and TechnologyMahidol UniversityPrincess of Naradhiwas University2020-01-272020-01-272019-03-01Fish and Shellfish Immunology. Vol.86, (2019), 756-76310959947105046482-s2.0-85058440208https://repository.li.mahidol.ac.th/handle/20.500.14594/49805© 2018 Elsevier Ltd White tail disease caused by Macrobrachium rosenbergii nodavirus (MrNV) infection takes place only in nauplii, not adults, of M. rosenbergii prawn. Hemocyte homeostasis and immune-related functions derived from the hematopoietic tissue (Hpt) in adult prawn are presumed to play roles in resisting viral infection. To elucidate the role of the Hpt cell response to MrNV, a comparative transcriptome analysis was performed with MrNV-infected prawn at various time intervals. The results showed that there were 462 unigenes that were differentially expressed between mock and infected samples. BlastX sequence analysis revealed that two proteins, crustacean hematopoietic factor (CHF) and cell growth-regulating zinc finger protein (Lyar), are involved in hemocyte hematopoiesis and are up-regulated during MrNV infection. In fact, genes involved in cell growth regulation and immunity were highly expressed at 6 h and decreased within 24 h post-infection. Localization studies in the Hpt tissue revealed the presence of anti-lipopolysaccharide factor (ALF) and CHF mRNAs in Hpt cells. Considering these findings, we concluded that resistance to MrNV infection in adult prawn is due to an increase in humoral immune factors and the acceleration of hemocyte homeostasis by the dual roles of the Hpt organ in M. rosenbergii.Mahidol UniversityAgricultural and Biological SciencesEnvironmental ScienceHematopoietic tissue of Macrobrachium rosenbergii plays dual roles as a source of hemocyte hematopoiesis and as a defensive mechanism against Macrobrachium rosenbergii nodavirus infectionArticleSCOPUS10.1016/j.fsi.2018.12.021