郑家浪
近期热点
资料介绍
个人简历
2005年9月至2009年6月华中农业大学生科院 学士2009年9月至2014年6月华中农业大学水产学院 博士2014年7月至今浙江海洋大学海洋科学与技术学院 助理研究员教学情况研究生课程《鱼类疾病专题》指导本科生毕业设计和课程设计科研项目1、国家自然科学基金,基于肝分叶氧化应激指标差异筛选大黄鱼饥饿和锌应激标记物及作用机理研究,项目编号:41606122,2017.1-2019.12。课题主持人。2、浙江自然科学基金, CPT I 在养殖大黄鱼肌肉脂肪沉积过程中的调节机制,项目编号:LY15C190009,2015.1-2017.12。课题主持人。研究领域
海洋生物学""近期论文
1.Zheng, J.L, Luo, Z*, Chen, Q.L, Liu, X. Effect of waterborne zinc exposure on metal accumulation, enzymatic activities and histology ofSynechogobius hasta. Ecotoxicology and Environmental Safety, 2011, 74: 1864-1873.2.Zheng, J.L, Hu, W, Luo, Z*, Zhao, Y.H. Comparative study on the kinetic behaviour of carnitine palmitoyltransferase I between Javelin gobySynechogobius hasta(carnivorous) and grass carpCtenopharyngodon idella(herbirovous). Aquaculture Nutrition, 2013, 19: 665-676.3.Zheng, J.L, Luo, Z*, Liu, C.X, Chen, Q.L. Differential effects of acute and chronic zinc (Zn) exposure on hepatic lipid deposition and metabolism in yellow catfishPelteobagrus fulvidraco. Aquatic Toxicology, 2013, 132: 173-181.4.Zheng, J.L, Luo, Z*, Zhu, Q.L, Tan, X.Y. Molecular cloning and expression pattern of 11 genes involved in lipid metabolism in yellow catfishPelteobagrus fulvidraco. Gene, 2013, 531: 53-63.5.Zheng, J.L, Luo, Z*, Zhu, Q.L, Chen, Q.L. Molecular characterization, tissue distribution and kinetic analysis of carnitine palmitoyltransferase I in juvenile yellow catfishPelteobagrus fulvidraco. Genomics, 2013, 101: 195-203.6.Zheng, J.L, Luo, Z*, Liu, C.X, Chen, Q.L. Differential effects of the chronic and acute zinc exposure on carnitine composition, kinetics of carnitine palmitoyltransferases I (CPT I) and mRNA levels of CPT I isoforms in yellow catfishPelteobagrus fulvidraco. Chemosphere, 2013, 92: 616-625.7.Zheng, J.L, Luo, Z*, Hu, W, Liu, C.X. Differential effects of dietary Zn deficiency and excess on carnitine status, kinetics and expression of CPT I in yellow catfishPelteobagrus fulvidraco. Aquaculture, 2014, 420: 10-17.8.Zheng, J.L, Luo, Z*, Zhuo, M.Q, Pan, Y.X. Dietary l-carnitine supplementation increases lipid deposition in the liver and muscle of yellow catfish (Pelteobagrus fulvidraco) through changes in lipid metabolism. British Journal of Nutrition, 2014, 112: 698-708.9.Zheng, J.L, Luo, Z*, Zhu, Q.L, Chen, Q.L. Differential effects of acute and chronic zinc exposure on lipid metabolism in three extrahepatic tissues of juvenile yellow catfishPelteobagrus fulvidraco. Fish Physiology and Biochemistry, 2014, 40: 1349-1359.10.Zheng, J.L, Luo, Z*, Zhu, Q.L, Hu, W. Different effect of dietborne and waterborne Zn exposure on lipid deposition and metabolism in juvenile yellow catfishPelteobagrus fulvidraco. Aquatic Toxicology, 2015, 159: 90-98.11.Zheng, J.L, Luo, Z*, Hu, W, Pan, Y.X. Dietary fenofibrate reduces hepatic lipid deposition by regulating lipid metabolism in yellow catfish Pelteobagrus fulvidraco exposed to waterborne Zn. Lipids, 2015, 50: 417-426.12.Zheng, J.L, Luo, Z*, Hu, W, Liu, C.X. Different effects of dietary Zn deficiency and excess on lipid metabolism in yellow catfishPelteobagrus fulvidraco, Aquaculture, 2015, 435: 10-17.13.Zheng, J.L#, Zhuo, M. Q#, Luo, Z*, Song, Y. F. Peroxisome proliferator-activated receptor alpha1 in yellow catfish: Molecular characterization, mRNA tissue expression and transcriptional regulation by insulin in vivo and in vitro. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology, 2015, 183: 58-66.(#co-first author)14.Zheng, J.L#, Zhuo, M.Q#, Luo, Z*, Pan, Y. X. Peroxisome proliferator-activated receptor gamma in yellow catfish: Molecular characterization, mRNA expression and transcriptional regulation by insulin in vivo and in vitro, General and comparative endocrinology, 2015, 212: 51-62.(#co-first author)15.Zheng, J.L, Zhao, L.Y, Wu, C.W, Zhu, A.Y*. Exogenous proline reduces NaCl-induced damage by mediating ionic and osmotic adjustment and enhancing antioxidant defense inEurya emarginata. Acta Physiologiae Plantarum, 2015, 37: 181.16.Zheng, J.L#, Zhao, L.Y#, Shen, B, Zhu, A.Y*. Effects of salinity on activity and expression of enzymes involved in ionic, osmotic, and antioxidant responses inEurya emarginata. Acta Physiologiae Plantarum, 2016, 38: 70.(#co-first author)17.Zheng, J.L*, Zhu, Q.L, Shen, B, Zeng, L. Effects of starvation on lipid accumulation and antioxidant response in the right and left lobes of liver in large yellow croakerPseudosciaena crocea. Ecological Indicators, 2016, 66: 269-274.18.Zheng, J.L*, Zhu, Q.L, Wu, C.W, Zhu, A.Y. Zinc acclimation mitigated high zinc induced oxidative stress by enhancing antioxidant defenses in large yellow croakerPseudosciaena crocea. Aquatic Toxicology, 2016, 172: 21-29.19.Zheng, J.L, Zeng, L, Shen, B, Wu, C.W*. Antioxidant defenses at transcriptional and enzymatic levels and gene expression of Nrf2-Keap1 signaling molecules in response to acute zinc exposure in the spleen of the large yellow croakerPseudosciaena crocea. Fish and Shellfish Immunology, 2016, 52:1-8.20.Zheng, J.L*, Yuan, S.S, Li, W.Y, Wu, C.W. Positive and negative innate immune responses in zebrafish under light emitting diodes conditions. Fish and Shellfish Immunology, 2016, 56: 382-387.21.Zheng, J.L*, Yuan, S.S, Wu, C.W, Li, W.Y. Chronic waterborne zinc and cadmium exposures induced different responses towards oxidative stress in the liver of zebrafish. Aquatic Toxicology, 2016, 177: 261-268.22.Zheng, J.L*, Yuan, S.S, Wu, C.W, Lv, Z.M. Acute exposure to waterborne cadmium induced oxidative stress and immunotoxicity in the brain, ovary and liver of zebrafish (Danio rerio). Aquatic toxicology, 2016, 180: 36-44.23.Zheng, J.L*, Yuan, S.S, Wu, C.W, Lv, Z.M, Zhu, A.Y. Circadian time-dependent antioxidant and inflammatory responses to acute cadmium exposure in the brain of zebrafish. Aquatic Toxicology, 2017, 182: 113–119.24.Zheng, J.L, Yuan, S.S, Shen, B, Wu, C.W*. Organ-specific effects of low-dose zinc pre-exposure on high-dose zinc induced mitochondrial dysfunction in large yellow croaker Pseudosciaena crocea. Fish Physiology and Biochemistry, 2017, doi:10.1007/s10695-016-0319-y.25.Zheng, J. L, Zeng, L, Xu, M. Y, Shen, B, Wu, C. W*. Different effects of low- and high-dose waterborne zinc on zn accumulation, ros levels, oxidative damage and antioxidant responses in the liver of large yellow croakerpseudosciaena crocea. Fish Physiology and Biochemistry, 2017, doi:10.1007/s10695-016 -0275-6.26.Wu, K#,Zheng, J.L#, Luo, Z*, Chen, Q.L. Carnitine palmitoyltransferase I gene inSynechogobius hasta: Cloning, mRNA expression and transcriptional regulation by insulin in vitro, Gene, 2016, 576: 429-440.(#co-first author)27.Yuan, S.S, Lv, Z.M, Zhu, A.Y,Zheng J.L*, Wu, C.W*, Negative effect of chronic cadmium exposure on growth, histology, ultrastructure, antioxidant and innate immune responses in the liver of zebrafish: Preventive role of blue light emitting diodes. Ecotoxicology and Environmental Safety, 2017, 139: 18–26.28.Yuan, S.S, Xu, H.Z, Liu, L.Q,Zheng, J.L*. Different effects of blue and red light-emitting diodes on antioxidant responses in the liver and ovary of zebrafish Danio rerio. Fish Physiology and Biochemistry, 2017, doi:10.1007/s10695-016 -0296-1.Aquatic Toxicology, Fish and shellfish immunology等杂志审稿人 相关热点
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