◆发表论文
1. UNC93B1 facilitates TLR18-mediated NF-κB signal activation in Schizothorax prenanti. Fish and Shellfish Immunology 134 (2023) 108584 TOP二区
2. Heat stress decreases intestinal physiological function and facilitates the proliferation of harmful intestinal microbiota in sturgeon. Frontiers in Microbiology, 2022, 13:1-13. TOP二区
3. Heat stress weakens the skin barrier function in sturgeon by decreasing mucus secretion and disrupting the mucosal microbiota. Frontiers in Microbiology, 2022,in press. TOP二区
4. Improvement of skeletal muscle growth by GH/IGF growth-axis contributes to growth performance in commercial fleshy sturgeon. Aquaculture, 2021, 543. TOP一区
5. The multilevel responses of Acipenser baerii and its hybrids (A. baerii ♀ × A. schrenckii ♂) to chronic heat stress. Aquaculture, 2021, 541. TOP一区
6. Evaluation of pathology and environmental variables contributing to hepatopancreatic necrosis syndrome of Chinese mitten crab, Eriocheir sinensis. Ecotoxicology and Environmental Safety, 2021, 215. TOP二区
7. To what extent is cannibalism genetically controlled in fish? A case study in juvenile hybrid catfish Silurus meridionalis–asotus and the progenitors. Aquaculture, 2015, 437: 208-214. TOP一区
8. Comparative pathological description of nocardiosis in largemouth bass (Micropterus salmoides) and other Perciformes. Aquaculture, 2021, 534:736193 TOP一区
9. A cross-sectional study of Bayesian belief network modeling: Risk factors for hepatopancreatic necrosis syndrome of the Chinese mitten crab (Eriocheir sinensis) in China. Aquaculture, 2020, 524:735293. TOP一区
10. Clone, identification and functional character of two toll-like receptor 5 molecules in Schizothorax prenanti. Fish & Shellfish Immunology. 2019, 95:81-92. TOP一区
11. Multiple subtypes of TLR22 molecule from Schizothorax prenanti present the functional diversity in ligand recognition and signal activation. Fish & Shellfish Immunology. 2019, 93: 986-996. TOP一区
12. Teleost-specific TLR25 identified from, Schizothorax prenanti, may recognize bacterial/viral components and activate NF-κB and type I IFNs signaling pathways. Fish & Shellfish Immunology, 2018, 82:361-370. TOP一区
13. Transcriptome analysis of spleen reveals the signal transduction of toll-like receptors after Aeromonas hydrophila infection in Schizothorax prenanti. Fish & Shellfish Immunology, 2019, 84:816-824. TOP一区
14. Transcriptome profiling of spleen provides insights into the antiviral mechanism in Schizothorax prenanti after poly (I: C) challenge. Fish & Shellfish Immunology, 2017, 62:13-23. TOP一区
15. Ulcerative disease emergence in grass carp (Ctenopharyngodon idellus) aquaculture in China: Possible impact of temperature abnormality. Aquaculture, 2020, 517: 734811. TOP一区
16. Transcriptome profiling of spleen provides insights into the antiviral mechanism in Schizothorax prenanti, after poly (I: C) challenge. Fish & Shellfish Immunology, 2017, 62:13-23. TOP一区
17. Potential ability for metallothionein and vitamin E protection against cadmium immunotoxicity in head kidney and spleen of grass carp (Ctenopharyngodon idellus). Ecotoxicology and Environmental Safety, 2018. 170: 246-252. TOP二区
18. Enteritis in hybrid sturgeon (Acipenser schrenckii♂ × Acipenser baeri♀) caused by intestinal microbiota disorder. Aquaculture Reports,2020,18: 100456 JCR二区
19. Candidate Animal Disease Model of Elizabethkingia Spp. Infection in Humans, Based on the Systematic Pathology and Oxidative Damage Caused by E. miricola in Pelophylax nigromaculatus. Oxidative Medicine and Cellular Longevity, 2019.
20. Caspase-11, a specific sensor for intracellular lipopolysaccharide recognition, mediates the non-canonical inflammatory pathway of pyroptosis. Cell and Bioscience, 2019, 9(1):31.
21. The Effect of Vitamin E and Metallothionein on the Antioxidant Capacities of Cadmium-Damaged Liver in Grass Carp Ctenopharyngodon idellus. Biomed Research International, 2018.
22. Antifungal Activity of Magnolia Officinalis Derived Magnolol and Honokiol on Membrane Disruption of Saprolegnia parasitica. Israeli Journal of Aquaculture-Bamidgeh, 2018. 70.
23. Hepatoprotective Activity of Vitamin E and Metallothionein in Cadmium-Induced Liver Injury in Ctenopharyngodon idellus. Oxidative Medicine and Cellular Longevity, 2018. DOI:10.1155/2018/9506543
24. Changes in juvenile sturgeon erythrocytes across age classes reflects evolutionary development. The Israeli Journal of Aquaculture. 73.:1237639.
25. A Review: Factors Affecting Outbreaks of Saprolegniosis on Aquatic Animals. The Israeli Journal of Aquaculture-Bamidgeh, 2018, 70.
26. Chorion surface ultrastructure of loach Misgurnus anguillicaudatus: adaptation to the environment and correlation with the reproductive strategy[J]. Journal of Natural History, 2014, 48(35-36):2207-2218.
27. Hepatoprotective Activity of Vitamin E and Metallothionein in Cadmium-Induced Liver Injury in Ctenopharyngodon idellus. Oxidative Medicine and Cellular Longevity, 2018, 2018(4):1-12.
28. Acute hypoxic stress: effect on blood parameters, antioxidant enzymes, and expression of HIF-1alpha and GLUT-1 genes in largemouth bass (Micropterus salmoides). Fish & Shellfish Immunology, 2017, 67:449-458. TOP一区
29. Molecular characterization of melanin-concentrating hormone (MCH) in Schizothorax prenanti: cloning, tissue distribution and role in food intake regulation. Fish Physiology and Biochemistry, 2015, 41(12):115.
30. Characterization, tissue distribution and regulation of neuropeptideY in Schizothorax prenanti. Journal of Fish Biology, 2014, 85(2):278-291.
31. Molecular characterization and tissue expression of peptide YY in Schizothorax prenanti: effects of periprandial changes and fasting on expression in the hypothalamus. Regulatory Peptides, 2014, 190-191:32-38.
32. Characterization of Schizothorax prenanti cgnrhII gene: fasting affects cgnrhII expression. Journal of Fish Biology, 2014, 85(2):407-420.
33. Molecular and physiological evidences for the role in appetite regulation of apelin and its receptor APJ in Ya-fish (Schizothorax prenanti). Molecular & Cellular Endocrinology, 2014, 396(1-2):46-57.
34. Molecular cloning and expression of two heat-shock protein genes (HSC70/HSP70) from Prenant’s schizothoracin (Schizothorax prenanti). Fish Physiol Biochem, 2015, 44(2):573–585.
35. 鲈鲤(Percocypris pingi)染色体核型及C-带分析.渔业科学进展, 2017, 38(5): 19-24.
36. 西伯利亚鲟幼鱼骨骼系统解剖. 水生生物学报, 2019, 43(1): 117-12.
37. 达氏鲟与西伯利亚鲟精子超微结构比较研究. 四川农业大学学报, 2018, 36(06): 845-850.
38. 西伯利亚鲟、施氏鲟及其杂交种(西伯利亚鲟♀×施氏鲟♂)的形态差异分析. 水生生物学报, 2019, 43(06): 1239-1245.
39. 杂交黄颡鱼HSP70基因核心序列的克隆、表达及其在高温应激下的组织表达. 渔业科学进展, 2021, 42(1):47-55
40. 鲇(♀)×南方鲇(♂)杂交F1胚胎发育观察. 动物学杂志, 2014, 49(2):215-222.
41. 齐口裂腹鱼头骨系统解剖. 西南农业学报,2012(4):1478-1482.
42. 鱼类杂种鉴别研究进展.四川动物,2012(4) : 668-674.
43. 浸泡对浮性饲料粗蛋白含量及水质的影响. 水产科学, 2011(5):295-297.
44. 重口裂腹鱼精子的超微结构.安徽农业科学,2010 (34):19504-19505.
45. 用PCR-DGGE对岩原鲤(Procypris rabaudi)×锦鲤(Cyprinus carpio)杂交F1代进行分子鉴定. 四川动物,2012(2) :218-221.
46. 鲟鱼杂交育种研究进展.四川水产, 2018, 1.