专著: 1.主编.肉牛优质高效饲养与常见疫病防治,中国农业科学技术出版社,2024. 2.副主编《中国乡村兽医手册》(第二版)化学工业出版社,2021. 3.参编专著《当代世界人兽共患病学》(310万字,国家重点出版规划项目与国家出版基金资助项目)四川科学技术出版社,2011. 4参译《小动物骨科手术图谱》辽宁科学技术出版社,2011. 5.参编.《2010-2013年执业兽医资格考试应试指南》化学工业出版社. 6.参编《中国乡村兽医手册》(第一、二版)化学工业出版社,2011、2021 7.参编.《犬猫疾病类症鉴别诊疗彩色图谱》,中国农业大学出版社,2010. 8.主编/参编《执业兽医资格考试应试指南(临床兽医部分)》(2010-今,每年更新). 代表性SCI论文(第一或通讯): [1] High-throughput sequencing and characterization of potentially pathogenic fungi from the vaginal mycobiome of giant panda (Ailuropoda melanoleuca) in estrus and non-estrus. Front. Microbiol. 2024(15):1265829.(TOP,IF=5.2) [2] Analysis of fungal diversity in the gut feces of wild takin (Budorcas taxicolor). Front. Microbiol. (2024)15:1364486. (TOP,IF=5.2) [3] Genome-Wide Identification and Characterization of the Medium-Chain Dehydrogenase/Reductase Superfamily ofTrichosporon asahiiand Its Involvement in the Regulation of Fluconazole Resistance[J].J.O F. 2024, 10:123.(二区,IF=4.7) [4] Resistin alleviates lipopolysaccharide-induced inflammation in bovine alveolar macrophages by activating the AMPK/mTOR signaling pathway and autophagy,Heliyon,2024,10(19):e38026. (三区IF=3.4) [5] Epidemiological survey, molecular characterization and subtyping of BoHV-1 from healthy and Sick, cattle and buffalo from Okara, Pakistan. Pak Vet J, 2024.44(1): 111-116.(三区,IF=3.8) [6] Analysis of fungal diversity in the feces ofArborophila rufipectus. Front. Vet. Sci. 2024.11:1430518(TOP, IF=2.6) [7] Analysis of the microbial diversity in takin (Budorcas taxicolor) feces. Front. Microbiol. 2023.14:1303085..(TOP,IF=5.2) [8]Trichosporon asahiiPLA2 Gene Enhances Drug Resistance to Azoles by Improving Drug Efflux and Biofilm Formation[J].Int.J.Mol.Sci.,2023, 24: 8855. (TOP,IF=5.6) [9] Analysis of microbial diversity in the feces ofArborophila rufipectus[J]. Frontiers in microbiology, 2023,02.(TOP,IF=5.2) [10] Genome-Wide Identification and Characterization of the TLP Gene Family in Phyllostachys edulis and Association with Witches’ Broom Disease Resistance in Bamboo. Int. J. Mol. Sci. 2023, 24, 10257. (TOP,IF=5.6) [11]Trichosporon asahiiMetabolome and Transcriptome Combinatory Profiling Reveals Fluconazole Resistance Mechanisms of and the Role of Farnesol in Fluconazole Tolerance[J]. Microorganisms, 2023, 11:2798. (二区,IF=4.5) [12]Microsporum gypseumIsolated fromAiluropoda melanoleucaProvokes Inflammation and Triggers Th17 Adaptive Immunity Response[J]. Int. J. Mol. Sci.2022,23, 12037.(TOP,IF=6.208) [13] Quinolone Resistance ofActinobacillus pleuropneumoniaeRevealed through Genome and Transcriptome Analyses[J].Int. J. Mol. Sci.2021, 22, 10036.(TOP,IF=5.92) [14] Anti-Inflammatory Activity and Mechanism of Cryptochlorogenic Acid fromAgeratina adenophora[J].Nutrients,2022, 14, 439.(TOP,IF=6.70) [15] Contrasting Vaginal Bacterial Communities Between Estrus and Non-estrus of Giant Pandas (Ailuropoda melanoleuca) [J],Front. Microbiol., 2021,12. (TOP,IF=6.06) [16] Skin Microbiota of the Captive Giant Panda (Ailuropoda Melanoleuca) and the Distribution of Opportunistic Skin Disease-Associated Bacteria in Different Seasons[J].Front. Vet. Sci.,2021,08:1-10.(二区,IF=3.47) [17] Skin mycobiota of the captive giant panda (Ailuropoda melanoleuca) and the distribution of opportunistic dermatomycosis-associated fungi in different seasons [J]. Front. Vet. Sci.,2021,11:1-8.(二区,IF=3.47) [18] Assessment of the pulmonary adaptive immune response toCladosporium cladosporioidesinfection using an experimental mouse model[J].Scientific Reports,2021,(11):909.(三区,IF=4.996) [19] Innate and mild Th17 cutaneous immune responses elicited by subcutaneous infection of immunocompetent mice withCladosporium cladosporioides. Microbial Pathogenesis, 163 (2022) 105384.(三区,IF=3.8) [20] Identification, genotyping, and pathogenicity ofTrichosporonspp. Isolated from Giant pandas (Ailuropoda melanoleuca).BMC Microbiol.2019) 19:113.(三区,IF=2.98) [21] Isolation and identification of culturable fungi from the genitals and semen of healthy giant pandas (Ailuropoda melanoleuca).BMC Vet. Res.(2017) 13:344.(二区,IF=1.958) [22] Suppressive subtractive hybridization reveals different gene expression between high and low virulence strains ofCladosporium cladosporioides,Microbial Pathogenesis,100(2016):276-284. (三区,IF=2.009) [23]Greater Taxol Yield of FungusPestalotiopsis hainanensisfrom Dermatitic Scurf of the Giant Panda (Ailuropoda melanoleuca)[J].Appl. Biochem. Biotechnol. (2015) 175:155–165.(IF=1.735) [24]Phaeohyphomycotic dermatitis in a giant panda (Ailuropoda melanoleuca) caused byCladosporium cladosporioides[J].Med. Mycol. Case Rep. 2 (2013) 119–121. CSCD论文(第一或者通讯) [25]大熊猫源枝孢样枝孢霉野生株(Z20)与突变株(Zt)部分生物学特性及药敏试验比较,[J].浙江农业学报,2018,30(8):1328-1335. [26]大熊猫源酵母菌的分离鉴定[J].畜牧兽医学报,2017,48(12):2383-2391. [27]大熊猫被毛可培养真菌的分离鉴定与系统发育学分析[J].中国兽医科学,2017,47(01):72-81. [28]育龄大熊猫阴道源乳酸杆菌的分离鉴定与系统进化[J].浙江农业学报,2017,29(2):193-199. [29]大熊猫阴道源乳酸杆菌生物学特性研究,2017,29(7):1093-1102. [30]大熊猫源石膏样小孢子菌的培养条件筛选[J].湖南农业大学学报(自然科学报,2017, 43(2):180–186. [31]发情期大熊猫阴道真菌的分离鉴定及酵母菌药敏试验[J].中国兽医科学,2016,46(10):1233-1240. [32]发情期大熊猫阴道源产H2O 2乳酸菌的分离鉴定及筛选[J].中国兽医科学,2016,46(12):1603-1609. [33]枝孢样枝孢霉弱毒株的微波诱变结合亚硝基胍诱变选育[J].中国兽医科学,2015,45(09):923-929. [34]大熊猫源石膏样小孢子菌的分离鉴定与致病性研究[J].中国兽医科学,2015,45(06):551-559. [35]大熊猫体表一株海南拟盘多毛孢菌株[J].菌物学报,2014, 33(3): 731-737. [36]大熊猫源枝孢样枝孢霉的生物学特性[J]. 中国兽医科学,2013,43(01):1-8. [37]大熊猫源枝孢样枝孢霉的分离鉴定[J].中国兽医科学,2013,43(12):1217-1223. [38]感应分子—法尼醇与白色念珠菌的相互作用,2019,50(01)28-36. [39]石膏样小孢子菌感染小鼠的Dectin-1、TLR-2和TLR-4及细胞因子动态变化,畜牧兽医学报,2019,50(07):1449-1457. [40]四川家兔源万博节皮菌的分离鉴定及其致病性研究[J].中国兽医科学2016,46(09) :1079-1086. [41]肉牛源毛孢子菌Trichosporon loubieri的分离鉴定与药敏试验[J].浙江农业学报,[J].浙江农业学报,2018,30( 1) :26-35. [42]大熊猫源杯梗孢属真菌(Cyphellophora pluriseptata)的分离鉴定与致病性研究,中国预防兽医学报,2018,40(11):1066-1070. [43]大熊猫源枝孢样枝孢霉侵染小鼠皮肤的病理学过程[J].湖南农业大学学报(自然科学版),2020,46(3):350-357. |