Tiềm năng ứng dụng C-type lectin từ tôm thẻ chân trắng Litopenaeus vannamei trong hỗ trợ điều trị bệnh hoại tử gan tụy cấp do vi khuẩn Vibrio parahaemolyticus trên tôm nuôi
Abstract
Tóm tắt
Article Details
Tài liệu tham khảo
Agaisse, H., and Perrimon, N., 2004. The roles of JAK/STAT signaling in Drosophila immune responses. Immunological Reviews. 198(1): 72-82.
Alpuche, J., Pereyra, A., Agundis, C., and Rosas, C., 2005. Purification and characterization of a lectin from the whiteshrimp Litopenaeussetiferus(Crustacea decapoda) hemolymph. Biochimicaet BiophysicaActa (BBA)-General Subjects. 1724(1-2): 86–93.
Aly, S.M., Ahmed, Y.A.G., Ghareeb, A.A.A., and Mohamed, M.F., 2008. Studies on Bacillus subtilisand Lactobacillus acidophilus, as potential probiotics, on the immune response and resistance of Tilapia nilotica(Oreochromis niloticus) to challenge infections. Fish & Shellfish Immunology. 25(1-2): 128-136.
Aukrust, T., and Blom, H., 1992. Transformation of Lactobacillus strains used in meat and vegetable fermentations. Food Research International. 25(4): 253-261.
BNN&PTNT (Bộ Nông nghiệp và Phát triển Nông thôn), 2017. Quyết định số 2625/QĐ-BNN-TY, ngày 21/06/2017 về việc “Kế hoạch Hành động Quốc giavề Quản lý sử dụng kháng sinh và phòng chống kháng kháng sinh trong chăn nuôi và nuôi trồng thủy sản”, ngày truy cập 01/01/2020. Địa chỉ http://www.cucthuy.gov.vn/Pages/thong-bao-chi-.aspx.
Carnevali, O., Zamponi, M.C., Sulpizio, R., and Rollo, A., 2004. Administration of probiotic strain to improve sea bream wellness during development. Aquaculture International. 12(4-5): 377-386.
Cerenius, L., Kawabata, S.I., Lee, B.L., Nonaka, M., and Söderhäll, K., 2010. Proteolytic cascades and their involvement in invertebrate immunity. Trends in Biochemical Sciences. 3(10): 575-583.
Cheng, W.T., Liu, C.H., Tsai, C.H., and Chen, J.C., 2005. Molecular cloning andcharacterisationof a pattern recognition molecule, lipopolysaccharide and β-1, 3-glucanbinding protein (LGBP) from the white shrimp Litopenaeusvannamei. Fish & Shellfish Immunology. 18(4): 297–310.
Christophides, G.K., Zdobnov, E., Barillas-Mury, C., and Birney, E., 2002. Immunity-related genes and gene families in Anopheles gambiae. Science. 298(5591): 159-165.
Christophe, M., Kuczkowska, K., Langella, P., Eijsink, V.G., Mathiesen, G., and Chatel, J.M., 2015. Surface display of an anti-DEC-205 single chain Fvfragment in Lactobacillus plantarumincreases internalization and plasmid transfer to dendritic cells in vitro and in vivo. Microbial Cell Factories. 14(1): 95.
Drickamer, K., and Taylor, M.E., 1993. Biology of animal lectins. Annual review of cell biology. 9: 237-264.
Flegel, T.W., 2012. Historic emergence, impact and current status of shrimp pathogens in Asia. Journal of Invertebrate Pathology. 110(2): 166-173.
Fredriksen, L., Mathiesen, G., Sioud, M., and Eijsink, V.G., 2010. Cell wall anchoring of the 37-kilodalton oncofetal antigen by Lactobacillus plantarumfor mucosal cancer vaccine delivery. Applied and Environmental Microbiology. 76(21): 7359-7362.
Gatesoupe, F.J., 1991. The effect of three strains of lactic bacteria on the production rate of rotifers, Brachionusplicatilis, and their dietary value for larval turbot, Scophthalmusmaximus. Aquaculture. 96(3-4): 335-342.
Geijtenbeek, T.B., and Gringhuis, S.I., 2009. Signallingthrough C-type lectin receptors: shaping immune responses. Nature Reviews Immunology. 9(7): 465-479.
Gross, P.S., Bartlett, T.C., Browdy, C.L., Chapman, R.W., and Warr, G.W., 2001. Immune gene discovery by expressed sequence tag analysis of hemocytes and hepatopancreas in the Pacific White Shrimp, Litopenaeusvannamei, and the Atlantic White Shrimp L. setiferus. Developmental & Comparative Immunology. 25(7): 565–577.
Hong, S., and Jang, J., 2016. Biofilm removal using carbon dioxide aerosols without nitrogen purge. Journal of Visualized Experiments.(117): e54827.
Jiravanichpaisal, P., Lee, B.L., and Söderhäll, K., 2006. Cell-mediated immunity in arthropods: hematopoiesis, coagulation, melanizationand opsonization. Immunobiology. 211(4): 213-236.
Junkunlo, K., Prachumwat, A., Tangprasittipap, A., and Senapin, S., 2012. A novel lectin domain-containing protein (LvCTLD) associated with response of the whitelegshrimp Penaeus(Litopenaeus) vannameito yellow head virus (YHV). Developmental & Comparative Immunology. 37(3-4): 334-341.
Li, H., Zhang, H., Jiang, S., and Wang, W., 2015. A single-CRD C-type lectin from oyster Crassostrea gigasmediates immune recognition and pathogen elimination with a potential role in the activation of complement system. Fish & Shellfish Immunology. 44(2): 566-575.
Li, M., Li, C., Ma, C., and Li, H., 2014. Identification of a C-type lectin with antiviral and antibacterial activity from pacific white shrimp Litopenaeusvannamei. Developmental & Comparative Immunology. 46(2): 231-240.
Liang, Z., Yang, L., Zheng, J., Zuo, H., Weng, S., and Xu, X., 2019. A low-density lipoprotein receptor (LDLR) class A domain-containing C-type lectin from Litopenaeusvannameiplays opposite roles in antibacterial and antiviral responses. Developmental & Comparative Immunology. 92: 29-34.
Lin, Y.C., Vaseeharan, B., and Chen, J.C., 2008. Identification and phylogenetic analysis on lipopolysaccharide and beta-1,3-glucan binding protein (LGBP) ofkurumashrimp Marsupenaeusjaponicus. Developmental & Comparative Immunology. 32: 1260–1269.
Lis, H., and Sharon, N., 1998. Lectins: carbohydrate-specific proteins that mediate cellular recognition. Chemical Reviews. 98(2): 637-674.
Liu, Y.C., Li, F.H., Dong, B., Wang, B., Zhang, L.S., and Xiang, J.H., 2007. Molecular cloning, characterization and expression analysis of a putative C-type lectin (Fclectin) gene in Chinese shrimp Fenneropenaeuschinensis. Molecular Immunology. 44: 598–607.
Luo, T., Zhang, X.B., Shao, Z.Z., and Xu, X., 2003. PmAV, a novel gene involved in virus resistance of shrimp Penaeus monodon. FEBS Letters. 551(1-3): 53-57.
Luo, T., Yang, H., Li, F., Zhang, X., and Xu, X., 2006. Purification, characterization and cDNA cloning of a novel lipopolysaccharide-binding lectin from the shrimp Penaeus monodon. Developmental & Comparative Immunology. 30(7): 607-617.
Luo, T., Li, F., Lei, K.Y., and Xu, X., 2007. Genomic organization, promoter characterization and expression profiles of an antiviral gene PmAVfrom the shrimp Penaeus monodon. Molecular Immunology. 44: 1516–1523.
Ma, T.H.T., Tiu, S.H.K., He, J.G., and Chan, S.M., 2007. Molecular cloning of a C-type lectin (LvLT) from the shrimp Litopenaeusvannamei: early gene down-regulation after WSSV infection. Fish & Shellfish Immunology. 23(2): 430-437.
Ma, T.H.T., Benzie, J.A., He, J.G., and Chan, S.M., 2008. PmLT, a C-type lectin specific to hepatopancreas is involved in the innate defense of the shrimp Penaeus monodon. Journal of Invertebrate Pathology. 99(3): 332-341.
Minic, R., Gavrovic-Jankulovic, M., Petrusic, V., and Zivkovic, I., 2015. Effects of orally applied Fes p1-displaying L. plantarumWCFS1 on Fes p1 induced allergy in mice. Journal of Biotechnology. 199: 23-28.
Muhammad, F., Zhang, Z.F., Shao, M.Y., Shi, X.L., and Shafi, M., 2013. Genesis of hematopoietic tissue and its relationwith hemocytes of Litopenaeusvannamei. Pakistan Veterinary Journal. 33(1): 91-95.
Mshana, S.E., Matee, M., and Rweyemamu, M., 2013. Antimicrobial resistance in human and animal pathogens in Zambia, Democratic Republic of Congo, Mozambique and Tanzania: an urgent need of a sustainable surveillance system. Annals of Clinical Microbiology and Antimicrobials. 12(1): 28.
Ng, T.H., Wu, M.H., Chang, S.H., Aoki, T., and Wang, H.C., 2015. The DNA fibers of shrimp hemocyte extracellular traps are essential for the clearance of Escherichia coli. Developmental & Comparative Immunology. 48(1): 229-233.
Nikoskelainen, S., Ouwehand, A., Salminen, S., and Bylund, G., 2001. Protection of rainbow trout (Oncorhynchus mykiss) from furunculosis by Lactobacillus rhamnosus. Aquaculture. 198(3-4): 229-236.
Ofek, I., Crouch, E., and Keisari, Y., 2002. The role of C-type lectins in the innate immunity against pulmonary pathogens. In TheBiology and Pathology of Innate Immunity Mechanisms. Springer, Boston, pp. 27-36.
Pirarat, N., Kobayashi, T., Katagiri, T., Maita, M., and Endo, M., 2006. Protective effects and mechanisms of a probiotic bacterium Lactobacillus rhamnosusagainst experimental Edwardsiellatardainfection in tilapia (Oreochromis niloticus). Veterinary Immunology and Immunopathology. 113(3-4): 339-347.
Schryver, P., Defoirdt, T., and Sorgeloos, P., 2014. Early mortality syndrome outbreaks: a microbial management issue in shrimp farming?. PLoSPathogens. 10(4).
Shinn, A.P., Pratoomyot, J., Griffiths, D., and Trong, T.Q., 2018. Asian shrimp production and the economic costs of disease. Asian Fish. 31: 29-58.
Stark, G.R., and Darnell, J.E., 2012. The JAK-STAT pathway at twenty. Immunity. 36(4): 503-514.
Sun, J., Wang, L., Wang, B. et al., 2008. Purification and characterization of anatural lectin from the plasma of the shrimp Fenneropenaeuschinensis. Fish & Shellfish Immunology. 25(3): 290–297.
Sun, Y.D., Fu, L.D., Jia, Y.P., and Du, X.J., 2008b. A hepatopancreas-specific C-type lectin from the Chinese shrimp Fenneropenaeuschinensisexhibits antimicrobial activity. Molecular Immunology. 45(2): 348-361.
Sun, J.J., Lan, J.F., Zhao, X.F., Vasta, G.R., and Wang, J.X., 2017. Binding of a C-type lectin’s coiled-coil domain to the Domelessreceptor directly activates the JAK/STAT pathway in the shrimp immune response to bacterial infection. PLoSPathogens. 13(9): e1006626.
Rittidach, W., Paijit, N., and Utarabhand, P., 2007. Purification and characterization of a lectin from the banana shrimp Fenneropenaeusmerguiensishemolymph. Biochimicaet BiophysicaActa (BBA)-General Subjects. 1770(1): 106-114.
Rostam-Abadi, H., and Pistole, T.G., 1982. Lipopolysaccharide-binding lectin from the horseshoe crab, Limulus polyphemus, with specificity for 2-keto-3-deoxyoctonate (KDO). Developmental & Comparative Immunology. 6(2): 209-218.
Ryan, C., 2018. Wastewater pollution in China, accessed on 01 January 2020. Available from http://www.poultrynews.co.uk/news/eu-bans-prophylactic-use-of-antibiotics-in-farming-from-2022.html.
Tassanakajon, A., Rimphanitchayakit, V., Visetnan, S., Amparyup, P., Somboonwiwat, K., and Tang, S., 2018. Shrimp humoral responses against pathogens: antimicrobial peptides and melanization. Developmental & Comparative Immunology. 80: 81-93.
Tran, L., Nunan, L., Redman, R.M., Mohney, L.L., Fitzsimmons, K., and Lightner, D.V., 2013. Determination of the infectious nature of the agent of acute hepatopancreatic necrosis syndrome affecting penaeid shrimp. Diseases of Aquatic Organisms. 105(1): 45-55.
Vasta, G.R., Quesenberry, M., Ahmed, H., and O'Leary, N., 1999. C-type lectins and galectins mediate innate and adaptive immune functions: their roles in the complement activation pathway. Developmental & Comparative Immunology. 23(4-5): 401-420.
Wang, X.W., Xu, J.D., Zhao, X.F., Vasta, G.R., and Wang, J. X., 2014. A shrimp C-type lectin inhibits proliferation of the hemolymph microbiota by maintaining the expression of antimicrobial peptides. Journal of Biological Chemistry. 289(17): 11779-11790.
Wang, X.W., Zhao, X.F., and Wang, J.X., 2014. C-type lectin binds to β-integrin to promote hemocyticphagocytosis in an invertebrate. Journal of Biological Chemistry. 289(4): 2405-2414.
Walker, P.J., and Mohan, C.V., 2009. Viral disease emergence in shrimp aquaculture: origins, impact and the effectiveness of health management strategies. Reviews in Aquaculture. 1(2): 125-154.
Wang, X.W., Xu, W.T., Zhang, X.W., Zhao, X.F., Yu, X.Q., and Wang, J.X., 2009a. A C-type lectin is involved in the innate immune response of Chinese white shrimp. Fish & Shellfish Immunology. 27(4): 556-562.
Wang, X.W., Zhang, X.W., Xu, W.T., Zhao, X.F., and Wang, J.X., 2009b. A novel C-type lectin (FcLec4) facilitates the clearance of Vibrio anguillarumin vivoin Chinese white shrimp. Developmental & Comparative Immunology. 33(9): 1039-1047.
Wang, X.W., and Wang, J.X., 2013. Pattern recognition receptors acting in innate immune system of shrimp against pathogen infections. Fish & Shellfish Immunology. 34(4): 981-989.
Wangman, P., Chaivisuthangkura, P., Sritunyalucksana, K., and Taengchaiyaphum, S., 2017. Development of monoclonal antibodies specific to ToxAand ToxBof Vibrio parahaemolyticusthat cause acute hepatopancreatic necrosis disease (AHPND). Aquaculture. 474: 75-81.
Wei, X., Liu, X., Yang, J., and Fang, J., 2012. Two C-type lectins from shrimp Litopenaeusvannameithat might be involved in immune response against bacteria and virus. Fish & Shellfish Immunology. 32(1): 132-140.
Wongpanya, R., Sengprasert, P., Amparyup, P., and Tassanakajon, A., 2017. A novel C-type lectin in the black tiger shrimp Penaeus monodonfunctions as a pattern recognition receptor by binding and causing bacterial agglutination. Fish & Shellfish Immunology. 60: 103-113.
Xiu, Y., Hou, L., Liu, X., and Wang, Y., 2015. Isolation and characterization of two novel C-type lectins from the oriental river prawn, Macrobrachiumnipponense. Fish & Shellfish Immunology. 46(2): 603-611.
Xu, W.T., Wang, X.W., Zhang, X.W., Zhao, X.F., Yu, X.Q., and Wang, J.X., 2010. A new C-type lectin (FcLec5) from the Chinese white shrimp Fenneropenaeuschinensis. Amino Acids. 39(5): 1227–1239.
Yu, X.Q., and Kanost, M.R., 2004. Immulectin-2, a pattern recognition receptor that stimulates hemocyte encapsulation and melanizationin the tobacco hornworm, Manduca sexta. Developmental & Comparative Immunology. 28(9): 891-900.
Zelensky, A.N., and Gready, J.E., 2005. The C‐type lectin‐like domain superfamily. The FEBS Journal. 272(24): 6179-6217.
Zhang, X.W., Xu, W.T., Wang, X.W., Mu, Y., Yu, X.Q., Wang, J.X., 2009a. A novel C-type lectin with two CRD domains from Chinese shrimp Fenneropenaeuschinensisfunctions as a pattern recognition protein. Molecular Immunology. 46: 1626– 1637.
Zhang, X.W., Xu, W.T., Wang, X.W., Mu, Y., Yu, X.Q., and Wang, J. X., 2009b. A novel C-type lectin with two CRD domains from Chinese shrimp Fenneropenaeuschinensisfunctions as a pattern recognition protein. Molecular Immunology. 46(8-9): 1626-1637.
Zhang, Y., Qiu, L., Song, L., and Zhang, H., 2009c. Cloning and characterization of a novel C-type lectin gene from shrimp Litopenaeusvannamei. Fish & Shellfish Immunology. 26(1): 183-192.
Zhao, Z.Y., Yin, Z.X., Xu, X.P., and Weng, S.P., 2009. A novel C-type lectin from the shrimp Litopenaeusvannameipossesses anti-white spot syndrome virus activity. Journal of Virology. 83(1): 347-356.