Immune response of Exopalaemon carinicauda infected with an AHPND‐causing strain of Vibrio parahaemolyticus
暂无分享,去创建一个
Jiajia Wang | Q. Ge | Zhengdao Li | Jian Li | Jitao Li
[1] P. Jarayabhand,et al. Involvement of a tachylectin‐like gene and its protein in pathogenesis of acute hepatopancreatic necrosis disease (AHPND) in the shrimp, Penaeus monodon , 2017, Developmental and comparative immunology.
[2] A. Tassanakajon,et al. A single WAP domain‐containing protein from Litopenaeus vannamei possesses antiproteinase activity against subtilisin and antimicrobial activity against AHPND‐inducing Vibrio parahaemolyticus , 2017, Fish & shellfish immunology.
[3] Jian Li,et al. Transcriptome analysis of the hepatopancreas in Exopalaemon carinicauda infected with an AHPND‐causing strain of Vibrio parahaemolyticus , 2017, Fish & shellfish immunology.
[4] Zhi Wang,et al. The crustin‐like peptide plays opposite role in shrimp immune response to Vibrio alginolyticus and white spot syndrome virus (WSSV) infection , 2017, Fish & shellfish immunology.
[5] J. Xiang,et al. Identification and function analysis of an anti‐lipopolysaccharide factor from the ridgetail prawn Exopalaemon carinicauda , 2017, Developmental and comparative immunology.
[6] A. Tassanakajon,et al. HSP70 and HSP90 are involved in shrimp Penaeus vannamei tolerance to AHPND‐causing strain of Vibrio parahaemolyticus after non‐lethal heat shock , 2017, Fish & shellfish immunology.
[7] S. Tangphatsornruang,et al. Differentially expressed transcripts in stomach of Penaeus monodon in response to AHPND infection. , 2016, Developmental and comparative immunology.
[8] Shu Zhao,et al. Pharmacokinetics and pharmacodynamics of sulfamethoxazole and trimethoprim in swimming crabs (Portunus trituberculatus) and in vitro antibacterial activity against Vibrio: PK/PD of SMZ-TMP in crabs and antibacterial activity against Vibrio. , 2016, Environmental toxicology and pharmacology.
[9] C. Lo,et al. AHPND BIOMARKER PROFILE IDENTIFIED BY TRANSCRIPTOME SEQUENCING IN LITOPENAEUS VANNAMEI STOMACH , 2016 .
[10] J. Xiang,et al. Effects of starvation on survival, growth and development of Exopalaemon carinicauda larvae , 2015 .
[11] J. Xiang,et al. Characterization and function analysis of an anti-lipopolysaccharide factor (ALF) from the Chinese shrimp Fenneropenaeus chinensis. , 2014, Developmental and comparative immunology.
[12] Hai-Shan Jiang,et al. Role of evolutionarily conserved signaling intermediate in Toll pathways (ECSIT) in the antibacterial immunity of Marsupenaeus japonicus. , 2014, Developmental and comparative immunology.
[13] C. Lo,et al. Variation in Vibrio parahaemolyticus isolates from a single Thai shrimp farm experiencing an outbreak of acute hepatopancreatic necrosis disease (AHPND) , 2014 .
[14] S. Moestrup,et al. Standardizing Scavenger Receptor Nomenclature , 2014, The Journal of Immunology.
[15] Xiaoli Shi,et al. Molecular cloning and characterization of a cathepsin B gene from the Chinese shrimp Fenneropenaeus chinensis. , 2013, Fish & shellfish immunology.
[16] J. Xiang,et al. Selection of Vibrio harveyi-resistant Litopenaeus vannamei via a three-round challenge selection with a pathogenic strain of V. harveyi. , 2013, Fish & shellfish immunology.
[17] S. Weng,et al. Litopenaeus vannamei Toll-interacting protein (LvTollip) is a potential negative regulator of the shrimp Toll pathway involved in the regulation of the shrimp antimicrobial peptide gene penaeidin-4 (PEN4). , 2013, Developmental and comparative immunology.
[18] Jin-Xing Wang,et al. Pattern recognition receptors acting in innate immune system of shrimp against pathogen infections. , 2013, Fish & shellfish immunology.
[19] Li Li,et al. The first identification of molluscan Ecsit in the Pacific oyster, Crassostrea gigas, and its expression against bacterial challenge , 2012 .
[20] Ping Liu,et al. Cloning of a heat shock protein 90 (HSP90) gene and expression analysis in the ridgetail white prawn Exopalaemon carinicauda. , 2012, Fish & shellfish immunology.
[21] R. Sudhakaran,et al. Class B scavenger receptor, Croquemort from kuruma shrimp Marsupenaeus japonicus: Molecular cloning and characterization. , 2011, Molecular and cellular probes.
[22] S. Weng,et al. Characterization of WSSV resistance in selected families of Litopenaeus vannamei , 2011 .
[23] Zhi-Yong Wang,et al. Immune response and gene expression in shrimp (Litopenaeus vannamei) hemocytes and hepatopancreas against some pathogen-associated molecular patterns. , 2009, Fish & shellfish immunology.
[24] J. Qin,et al. Molecular cloning and characterization of the lipopolysaccharide and beta-1, 3-glucan binding protein in Chinese mitten crab (Eriocheir sinensis). , 2009, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[25] L. Ping. Effects on lysozyme and phosphatase activities of Portunus trituberculatus infected by Vibrio alginolyticus , 2009 .
[26] Chang-Che Li,et al. The immune response of white shrimp Litopenaeus vannamei following Vibrio alginolyticus injection. , 2008, Fish and Shellfish Immunology.
[27] S. Weng,et al. Changes in mortality and immunological variables of Litopenaeus vannamei parents and their filial families infected with white spot syndrome under different experimental conditions. , 2008, Fish & shellfish immunology.
[28] F. García‐Carreño,et al. Phenoloxidase activity of hemocyanin in whiteleg shrimp Penaeus vannamei: conversion, characterization of catalytic properties, and role in postmortem melanosis. , 2008, Journal of agricultural and food chemistry.
[29] Y. Guéguen,et al. A relationship between antimicrobial peptide gene expression and capacity of a selected shrimp line to survive a Vibrio infection. , 2008, Molecular immunology.
[30] K. Burnett,et al. Lysozyme gene expression by hemocytes of Pacific white shrimp, Litopenaeus vannamei, after injection with Vibrio. , 2007, Fish & shellfish immunology.
[31] J. Xiang,et al. Cloning and recombinant expression of a crustin-like gene from Chinese shrimp, Fenneropenaeus chinensis. , 2007, Journal of biotechnology.
[32] L. Cerenius,et al. Antilipopolysaccharide Factor Interferes with White Spot Syndrome Virus Replication In Vitro and In Vivo in the Crayfish Pacifastacus leniusculus , 2006, Journal of Virology.
[33] Chun‐Hung Liu,et al. Effect of ammonia on the immune response of white shrimp Litopenaeus vannamei and its susceptibility to Vibrio alginolyticus. , 2004, Fish & shellfish immunology.
[34] Q. Qin,et al. Antiviral properties of hemocyanin isolated from shrimp Penaeus monodon. , 2004, Antiviral research.
[35] T. Lien,et al. Haemolymph parameters of Pacific white shrimp (Litopenaeus vannamei) infected with Taura syndrome virus. , 2003, Fish & shellfish immunology.
[36] So young Lee,et al. Processing of an Antibacterial Peptide from Hemocyanin of the Freshwater Crayfish Pacifastacus leniusculus * , 2003, The Journal of Biological Chemistry.
[37] M. Botterblom,et al. The roles of haemocytes and the lymphoid organ in the clearance of injected Vibrio bacteria in Penaeus monodon shrimp. , 2002, Fish & shellfish immunology.
[38] B. Poulos,et al. A laboratory challenge method for estimating Taura syndrome virus resistance in selected lines of Pacific white shrimp Litopenaeus vannamei , 2002 .
[39] S. Moss,et al. Selective breeding of Pacific white shrimp (Litopenaeus vannamei) for growth and resistance to Taura Syndrome Virus , 2002 .
[40] R. Lanot,et al. Insect Immunity , 2001, The Journal of Biological Chemistry.
[41] C. Janeway,et al. ECSIT is an evolutionarily conserved intermediate in the Toll/IL-1 signal transduction pathway. , 1999, Genes & development.
[42] S. Yee,et al. Both cathepsin B and cathepsin D are necessary for processing of ovalbumin as well as for degradation of class II MHC invariant chain. , 1994, Immunology letters.
[43] A. Adams. Response of penaeid shrimp to exposure to Vibrio species , 1991 .
[44] Bonnie F. Sloane. Cathepsin B and cystatins: evidence for a role in cancer progression. , 1990, Seminars in cancer biology.
[45] D. Hultmark,et al. Insect immunity. Purification and properties of three inducible bactericidal proteins from hemolymph of immunized pupae of Hyalophora cecropia. , 2005, European journal of biochemistry.
[46] K. Nickerson,et al. A comparison of molluscan and arthropod hemocyanin—I. Circular dichroism and absorption spectra , 1971 .