论文专著:
在核心期刊发表高质量论文152篇(SCI 37篇),出版著作27部。
出版专著:
1. 蒋林树.牛肉及其产品养分数据参考指南, 中国农业科学技术出版社,380千字,2018.12,978-7-5116-3959-2。
2. 蒋林树.《家畜环境与营养》,2018,中国农业出版社,250千字,978-7-109-25131-1。
3. 蒋林树.《家畜环境与行为》,2018,中国农业出版社,250千字,978-7-109-25023-9。
4. 蒋林树.《奶牛营养与生理》,中国农业出版社,240千字 2017.11,978-7-109-23590-8。
5. 蒋林树.《我国奶业现状及未来可持续发展趋势》,中国农业出版社,210千字,2017.1
6.蒋林树.《奶牛精细饲喂与健康诊断》,中国农业出版社 300千字,2017.11,978-7-109-23591-5。
7. 蒋林树.《畜禽饲料配制、信息感知和精准饲喂专利技术研究》,中国农业科学技术出版社,220千字,2017.7,978-7-5116-3127-5。
8. 蒋林树.《畜禽信息感知、精准饲喂及畜产品朔源专利技术研究》,2016,中国农业科学技术出版社,270千字,2016.978-7-5116-2558-8。
9. 蒋林树.《奶牛饲料成分及营养价值评价进展》,中国农业科学技术出版社,270千字,2016.5,978-7-5116-2573-1。
10. 蒋林树.《奶牛全混合日粮加工与饲喂技术》,中国农业出版社,180千字,2016.2,978-7-109-21403-3。
11. 蒋林树.《奶牛高效饲养新模式》,中国农业出版社, 180千字,2016.3,978-7-109-21495-8。
12. 蒋林树.《CNCPS体系演变模型及饲料成分表》,中国农业科学技术出版社,460千字,2015.7,978-7-5116-2014-9。
13. 蒋林树.《奶牛粗饲料实用技术手册》,中国农业出版社,230千字,2014.4,978-7-109-19090-0。
14. 蒋林树.《现代化奶牛饲养管理技术》,中国农业出版社, 200千字,2014.3--978-7-109-18644-6。
15. 蒋林树.《天然活性物质在畜禽生产中的应用》,中国农业出版社,150千字,2014
16. 蒋林树.《现代化奶牛饲养管理技术》,中国农业出版社,200千字,2014
17. 蒋林树.《奶牛粗饲料实用技术手册》,中国农业出版社,230千字,2014
18. 蒋林树.《奶牛饲养管理与疾病防治技术问答》,中国农业出版社,320千字,2007.7,978-7-109-11746-4。
19.方洛云,周先林,蒋林树,SPSS20.0在生物统计中的应用,中国农业大学出版社,300千字,2015。
20.蒋林树,陈碧州,刘海燕,陈俐,如何吃的放心安全--食品安全知识漫谈,中国农业出版社,150千字,2012。
21.Wang, Yue; Zhao, Yiguang; Xue, Fuguang; Nan, Xuemei; Wang, Hui; Hua, Dengke; Liu, Jun; Yang, Liang; Jiang, Linshu*; Xiong, Benhai*. Nutritional value, bioactivity, and application potential of Jerusalem artichoke (Helianthus tuberosus L.) as a neotype feed resource. ANIMAL NUTRITION, KEAI PUBLISHING LTD, 16 DONGHUANGCHENGGEN NORTH ST, BEIJING, DONGHENG DISTRICT 100717, PEOPLES R CHINA, 429-437, 2020-12.
22.Zhao, Yiguang; Nan, Xuemei; Yang, Liang; Zheng, Shanshan; Jiang, Linshu*; Xiong, Benhai* .A Review of Enteric Methane Emission Measurement Techniques in Ruminants. ANIMALS, MDPI, ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND, 1004, 2020-06.
发表部分英文期刊论文:
[1]Zhan Jing-wei; Shen Yi-yuan; Li Xin; Zhang Hua; Niu Hui; Fang Luo-yun; Xiong Ben-hai; Tong Jin-jin*; Jiang Lin-shu*. Microbiome and Metabolic Changes of Milk in Response to Dietary Supplementation With Bamboo Leaf Extract in Dairy Cows. Frontiers in Nutrition, 2021, 8: 723446.
[2]Wang, Hui; Luo, Qingyao; Zhao, Yiguang; Nan, Xuemei; Zhang, Fan; Wang, Yaping; Wang, Yue; Hua, Dengke; Zheng, Shanshan; Jiang, Linshu; Yang, Liang*; Xiong, Benhai*. Electrochemical device based on nonspecific DNAzyme for the high-accuracy determination of Ca2+ with Pb2+ interference.Bioelectrochemistry, 2021, 140: 107732.
[3]Pang, Yuanxiang; Yang, Jianjun; Chen, Xinyue; Jia, Yu; Li, Tong; Jin, Junhua; Liu, Hui; Jiang, Linshu; Hao, Yanling; Zhang, Hongxing*; Xie, Yuanhong*. An Antifungal Chitosanase from Bacillus subtilis SH21.Molecules, 2021, 26(7): 1863.
[4]Wang, Yue; Nan, Xuemei; Zhao, Yiguang; Jiang, Linshu*; Wang, Mengling; Wang, Hui; Zhang, Fan; Xue, Fuguang; Hua, Dengke; Liu, Jun; Yao, Junhu; Xiong, Benhai*.Rumen microbiome structure and metabolites activity in dairy cows with clinical and subclinical mastitis.Journal of Animal Science and Biotechnology, 2021, 12(1): 36.
[5]Niu, Hui; Zhang, Hua; Wu, Fuxin; Xiong, Benhai; Tong, Jinjin*; Jiang, Linshu*. Proteomics study on the protective mechanism of soybean isoflavone against inflammation injury of bovine mammary epithelial cells induced byStreptococcus agalactiae.Cell Stress & Chaperones, 2021, 26(1): 91-101.
[6]Tian, Fuyang; Wang, Jun; Xiong, Benhai; Jiang, Linshu; Song, Zhanhua*; Li, Fade*.Real-Time Behavioral Recognition in Dairy Cows Based on Geomagnetism and Acceleration Information.IEEE Access, 2021, 9: 109497-109509.
[7]Hu, Baiyang; Li, Yanxia*; Jiang, Linshu; Chen, Xingcai; Wang, Lin; An, Siyu; Zhang, Fengsong.Influence of microplastics occurrence on the adsorption of 17 beta-estradiol in soil.Journal of Hazardous Materials, 2020, 400: 123325.
[8]Zhang, Ruiyang; Liu, Junhua; Jiang, Linshu; Mao, Shengyong*.Effect of high-concentrate diets on microbial composition, function, and the VFAs formation process in the rumen of dairy cows.Animal Feed Science and Technology, 2020, 269: 114619.
[9]Wang, Kun; Nan, Xuemei; Tong, Jinjin; Zhao, Guangyong; Jiang, Linshu*; Xiong, Benhai*.Steam Explosion Pretreatment Changes Ruminal Fermentationin vitroof Corn Stover by Shifting Archaeal and Bacterial Community Structure.Frontiers in Microbiology, 2020, 11: 2027.
[10]Hou, Kun; Tong, Jinjin*; Zhang, Hua; Gao, Shan; Guo, Yuqin; Niu, Hui; Xiong, Benhai; Jiang, Linshu*.Microbiome and metabolic changes in milk in response to artemisinin supplementation in dairy cows.AMB Express, 2020, 10(1): 154.
[11]Wang, Yue; Nan, Xuemei; Zhao, Yiguang; Wang, Hui; Wang, Mengling; Jiang, Linshu; Zhang, Fan; Xue, Fuguang; Hua, Dengke; Li, Kaimin; Liu, Jun; Yao, Junhu*; Xiong, Benhai*.Coupling 16S rDNA Sequencing and Untargeted Mass Spectrometry for Milk Microbial Composition and Metabolites from Dairy Cows with Clinical and Subclinical Mastitis.Journal of Agricultural and Food Chemistry, 2020, 68(31): 8496-8508.
[12]Tong, Jinjin; Sun, Mingwei; Zhang, Hua; Yang, Delian; Zhang, Yonghong; Xiong, Benhai; Jiang, Linshu.Proteomic analysis of bovine mammary epithelial cells after in vitro incubation withS. agalactiae: potential biomarkers.Veterinary Research, 2020, 51(1): 98.
[13]Li, Yanxia; Hu, Baiyang; Gao, Shiying; Tong, Xin; Jiang, Linshu; Chen, Xingcai; An, Siyu; Zhang, Fengsong.Comparison of 17 beta-estradiol adsorption on soil organic components and soil remediation agent-biochar.Environmental Pollution, 2020, 263: 114572.
[14]Zhao, Yiguang; Tang, Zhiwen; Nan, Xuemei; Sun, Fuyu; Jiang, Linshu*; Xiong, Benhai*.Effects of Lonicera japonica extract on performance, blood biomarkers of inflammation and oxidative stress during perinatal period in dairy cows.Asian-Australasian Journal of Animal Sciences, 2020, 33(7): 1096-1102.
[15]Fang, Luoyun; Li, Mingyue; Zhao, Luyv; Han, Siyv; Li, Yi; Xiong, Benhai*; Jiang, Linshu*.Dietary grape seed procyanidins suppressed weaning stress by improving antioxidant enzyme activity and mRNA expression in weanling piglets.Journal of Animal Physiology and Animal Nutrition, 2020, 104(4): 1178-1185.
[16]Tong Jin-jin; Zhang Hua; Wang Jia; Liu Yun; Mao Sheng-yong; Xiong Ben-hai*; Jiang Lin- Shu*.Effects of different molecular weights of chitosan on methane production and bacterial community structure in vitro.Journal of Integrative Agriculture, 2020, 19(6): 1644-1655.
[17]Yang, Renjun; Liu, Shuyu; Liang, Xiaoxing; Yin, Nuoya; Ruan, Ting; Jiang, Linshu; Faiola, Francesco*.F-53B and PFOS treatments skew human embryonic stem cell in vitro cardiac differentiation towards epicardial cells by partly disrupting the WNT signaling pathway.Environmental Pollution, 2020, 261: 114153.
[18]Xue, Fuguang; Wang, Yue; Zhao, Yiguang; Nan, Xuemei; Hua, Dengke; Sun, Fuyu; Yang, Liang; Jiang, Linshu; Xiong, Benhai.Ruminal Methanogenic Responses to the Thiamine Supplementation in High-Concentrate Diets.Animals, 2020, 10(6): 935.
[19]Cai, Lirong; Tong, Jinjin; Zhang, Zhaonan; Zhang, Yonghong; Jiang, Linshu; Hou, Xiaolin; Zhang, Hua*.Staphylococcus aureus-induced proteomic changes in the mammary tissue of rats: A TMT-based study.PLos One, 2020, 15(5): e0231168.
[20]Quan, Su-yu; Nan, Xue-mei; Wang, Kun; Zhao, Yi-guang; Jiang, Lin-shu; Yao, Jun-hu; Xiong, Ben-hai.Replacement of forage fiber with non-forage fiber sources in dairy cow diets changes milk extracellular vesicle-miRNA expression.Food & Function, 2020, 11(3): 2154-2162.
[21]Zhao, Yiguang; Xue, Fuguang; Hua, Dengke; Wang, Yue; Pan, Xiaohua; Nan, Xuemei; Sun, Fuyu; Jiang, Linshu*; Xiong, Benhai*.Metagenomic Insights into Effects of Thiamine Supplementation on Carbohydrate-Active Enzymes' Profile in Dairy Cows Fed High-Concentrate Diets.Animals, 2020, 10(2): 304.
[22]Quan, Suyu; Nan, Xuemei; Wang, Kun; Jiang, Linshu; Yao, Junhu*; Xiong, Benhai*.Characterization of Sheep Milk Extracellular Vesicle-miRNA by Sequencing and Comparison with Cow Milk.Animals, 2020, 10(2): 331.
[23]Tong, Xin; Jiang, Linshu; Li, Yanxia*; Chen, Xingcai; Zhao, Yan; Hu, Boyang; Zhang, Fengsong.Function of agricultural waste montmorillonite-biochars for sorptive removal of 17 beta-estradiol.Bioresource Technology, 2020, 296: 122368.
[24]Liang, Xiaoxing; Yin, Nuoya; Liang, Shengxian; Yang, Renjun; Liu, Shuyu; Lu, Yuanping; Jiang, Linshu; Zhou, Qunfang; Jiang, Guibin; Faiola, Francesco*.Bisphenol A and several derivatives exert neural toxicity in human neuron-like cells by decreasing neurite length.Food and Chemical Toxicology, 2020, 135: 111015.
[25]Zhang, Hua; Tong, Jinjin; Zhang, Yonghong; Xiong, Benhai*; Jiang, Linshu*.Metabolomics reveals potential biomarkers in the rumen fluid of dairy cows with different levels of milk production.Asian-Australasian Journal of Animal Sciences, 2020, 33(1): 79-90.
[26]Zhang, Hua; Tong, Jinjin; Wang, Zun; Xiong, Benhai*; Jiang, Linshu*.Illumina MiSeq sequencing reveals the effects of grape seed procyanidin on rumen archaeal communities in vitro.Asian-Australasian Journal of Animal Sciences, 2020, 33(1): 61-68.
[27]Quan, Suyu; Nan, Xuemei; Wang, Kun; Jiang, Linshu; Yao, Junhu*; Xiong, Benhai*.Different Diets Change the Expression of Bovine Serum Extracellular Vesicle-miRNAs.Animals, 2019, 9(12): 1137.
[28]Tong, Jinjin; Zhang, Hua; Zhang, Yonghong; Xiong, Benhai*; Jiang, Linshu*.Microbiome and Metabolome Analyses of Milk From Dairy Cows With Subclinical Streptococcus agalactiae Mastitis-Potential Biomarkers.Frontiers in Microbiology, 2019, 10: 2547,(IF 4.076)
[29]Xue, Fuguang; Sun, Fuyu; Jiang, Linshu; Hua, Dengke; Wang, Yue; Nan, Xuemei; Zhao, Yiguang*; Xiong, Benhai*.Effects of Partial Replacment of Dietary Forage Using Kelp Powder (Thallus laminariae) on Ruminal Fermentation and Lactation Performances of Dairy Cows.Animals, 2019, 9(10).
[30]Xue, Fuguang; Nan, Xuemei; Li, Yunlei; Pan, Xiaohua; Guo, Yuming; Jiang, Linshu*; Xiong, Benhai*.Metagenomic insights into effects of thiamine supplementation on ruminal non-methanogen archaea in high-concentrate diets feeding dairy cows.BMC Veterinary Research, 2019, 15: 7.
[31]Zhang, Hua; Tong, Jin Jin; Zhang, Zhao Nan; Zhang, Yong Hong; Wang, Hong Bin*; Jiang, Lin Shu*.Minimally Invasive Extended Hepatectomy in Miniature Pigs and the Subsequent Hepatic Regenerative Response.International Journal of Applied Research in Veterinary Medicine, 2019, 17(2): 82-92.
[32]Yang, Yongxin; Zhao, Xiaowei; Huang, Dongwei; Wang, Jing; Qi, Yunxia; Jiang, Linshu*; Zhao, Huiling; Cheng, Guanglong.Changes in intestinal proteins induced by colostrum uptake in neonatal calves: analysis by two-dimensional gel electrophoresis-based proteomics analysis.Animal Production Science, 2019, 59(8): 1483-1490.
[33] Wang, Kun; Nan, Xuemei; Chu, Kangkang; Tong, Jinjin; Yang, Liang; Zheng, Shanshan; Zhao, Guangyong; Jiang, Linshu*; Xiong, Benhai*.Shifts of Hydrogen Metabolism From Methanogenesis to Propionate Production in Response to Replacement of Forage Fiber With Non-forage Fiber Sources in Diets in vitro.Frontiers in Microbiology, 2018, 9: 2764.,IF4.019
[34] Tong, Jinjin; Zhang, Hua; Yang, Delian; Zhang, Yonghong; Xiong, Benhai*; Jiang, Linshu*.Illumina sequencing analysis of the ruminal microbiota in high-yield and low-yield lactating dairy cows.PLos One, 2018, 13(11): e0198225,(IF 2.678)
[35]Xue, Fuguang; Nan, Xuemei; Sun, Fuyu; Pan, Xiaohua; Guo, Yuming; Jiang, Linshu*; Xiong, Benhai*.Metagenome sequencing to analyze the impacts of thiamine supplementation on ruminal fungi in dairy cows fed high-concentrate diets.AMB Express, 2018, 8(1): 159.
[36]Pan, Xiaohua*; Nan, Xuemei; Yang, Liang; Jiang, Linshu; Xiong, Benhai*.Thiamine status, metabolism and application in dairy cows: a review.British Journal of Nutrition, 2018, 120(5): 491-499.
[37]Ren, Qing-Chang; Xuan, Jing-Jing; Wang, Li-Ke; Zhan, Qiu-Wen; Yin, Ding-Zhong; Hu, Zhong-Ze*; Yang, Hong-Jian; Zhang, Wei*; Jiang, Lin-Shu.Effects of tributyrin supplementation on ruminal microbial protein yield, fermentation characteristics and nutrients degradability in adult Small Tail ewes.Animal Science Journal, 2018, 89(9): 1271-1279.
[38]Ren Q C; Xuan J J; Wang L K; Hu Z Z; Yang H J; Zhang W; Jiang L S*.Effects of tributyrin supplementation on in vitro culture fermentation and methanogenesis and in vivo dietary nitrogen, calcium and phosphorus losses in Small Tail ewes.Animal Feed Science and Technology, 2018, 243: 64-71.
[39]Wang B; Jiang L S*; Liu J X*.Amino acid profiles of rumen undegradable protein: a comparison between forages including cereal straws and alfalfa and their respective total mixed rations.Journal of Animal Physiology and Animal Nutrition, 2018, 102(3): 601-610.
[40]Xue, Fuguang; Pan, Xiaohua; Jiang, Linshu; Guo, Yuming*; Xiong, Benhai*.GC-MS analysis of the ruminal metabolome response to thiamine supplementation during high grain feeding in dairy cows.Metabolomics, 2018, 14(5): 67.
[41]Wang, Bing; Sun, Huizeng; Wu, Xuehui; Jiang, Linshu; Guan, Le Luo*; Liu, Jianxin*.Arteriovenous blood metabolomics: An efficient method to determine the key metabolic pathway for milk synthesis in the intra-mammary gland.Scientific Reports, 2018, 8(1): 5598.
[42]Ren, Q. C.; Xuan, J. J.; Hu, Z. Z.; Wang, L. K.*; Zhan, Q. W.; Dai, S. F.; Li, S. H.; Yang, H. J.; Zhang, W.*; Jiang, L. S..Effects of tributyrin supplementation on short-chain fatty acid concentration, fibrolytic enzyme activity, nutrient digestibility and methanogenesis in adult Small Tail ewes.Journal of Agricultural Science, 2018, 156(3): 465-470.
[43]Wang B; Tu Y; Jiang L S*; Liu J X*.Effect of cereal straw and alfalfa hay diet on amino acid profile of gastrointestinal digesta in lactating dairy cows.Journal of Animal Physiology and Animal Nutrition, 2018, 102(2): 421-428.
[44]Bi Y; Nan X M; Zheng S S; Jiang L S; Xiong B. H.*.Effects of dietary threonine and immune stress on growth performance, carcass trait, serum immune parameters, and intestinal muc2 and NF-kappa b gene expression in Pekin ducks from hatch to 21 days.Poultry Science, 2018, 97(1): 177-187.
[45] Wang B; Tu Y; Zhao S P; Hao Y H; Liu J X; Liu F H; Xiong B H; Jiang L S. Effect of tea saponins on milk performance, milk fatty acids, and immune function in dairy cow.Journal of Dairy Science, 2017, 100(10): 8043-8052.,(IF 2.408)
[46] Pan Xiaohua; Xue Fuguang; Nan Xuemei; Tang Zhiwen; Wang Kun; Beckers Yves; Jiang Linshu*; Xiong Benhai*.Illumina Sequencing Approach to Characterize Thiamine Metabolism Related Bacteria and the Impacts of Thiamine Supplementation on Ruminal Microbiota in Dairy Cows Fed High-Grain Diets.Frontiers in Microbiology, 2017, 8: 1818.,(IF 4.076)
[47] Pan, X. H.; Yang, L.; Beckers, Y.; Xue, F. G.; Tang, Z. W.; Jiang, L. S.*; Xiong, B. H.*.Thiamine supplementation facilitates thiamine transporter expression in the rumen epithelium and attenuates high-grain-induced inflammation in low-yielding dairy cows.JOURNAL OF DAIRY SCIENCE, 2017, 100(7): 5329-5342.( IF 2.408)
[48]Lyu, An; Chen, Jia-jia; Wang, Hui-chuan; Yu, Xiao-hong; Zhang, Zhi-cong; Gong, Ping; Jiang, Lin-shu*; Liu, Feng-hua*.Punicalagin protects bovine endometrial epithelial cells against lipopolysaccharide-induced inflammatory injury.Journal of Zhejiang University-Science B(Biomedicine & Biotechnology), 2017, 18(6): 481-491.
[49]Zhang, Ruiyang; Zhu, Weiyun; Jiang, Linshu; Mao, Shengyong*.Comparative metabolome analysis of ruminal changes in Holstein dairy cows fed low- or high-concentrate diets.METABOLOMICS, 2017, 13(6): 74.
[50]Pan Xiao-hua; Yang Liang; Beckers, Yves; Xiong Ben-hai*; Jiang Lin-shu.Accuracy comparison of dry matter intake prediction models evaluated by a feeding trial of lactating dairy cows fed two total mixed rations with different forage source.JOURNAL OF INTEGRATIVE AGRICULTURE, 2017, 16(4): 921-929.
[51]Pan, X. H.; Yang, L.; Xue, F. G.; Xin, H. R.; Jiang, L. S.; Xiong, B. H.*; Beckers, Y.*.Relationship between thiamine and subacute ruminal acidosis induced by a high-grain diet in dairy cows.Journal of Dairy Science, 2016, 99(11): 8790-8801.
[52]Jiang, Linshu. Accuracy comparison of dry matter intake prediction models evaluated by a feeding trial of lactating dairy cows fed two total mixed rations with different forage source,Journal of Integrative Agriculture.Journal of Integrative Agriculture, 2016, 15(0): 1-10.
[53]Jiang, Linshu.Medicinal herbs as a potential strategy to decrease methane production by rumen microbiota: A systematic evaluation with a focus on Perilla frutescens seed extract.Applied Microbiology and Biotechnology, 2016, 1(1).
[54]Xu, Lei; He, ShaSha; Yin, Peng; Li, DeYin; Mei, Chen; Yu, XiaoHong; Shi, YaRan; Jiang, LinShu; Liu, FengHua*.Punicalagin induces Nrf2 translocation and HO-1 expression via PI3K/Akt, protecting rat intestinal epithelial cells from oxidative stress.International Journal of Hyperthermia, 2016, 32(5): 465-473.
[55]Liu, Xiaoxi; Jiang, Linshu; Liu, Fenghua; Chen, Yuping; Xu, Lei; Li, Deyin; Ma, Yunfei; Li, Huanrong; Xu, Jianqin*.Effect of patchouli alcohol on the regulation of heat shock-induced oxidative stress in IEC-6 cells.International Journal of Hyperthermia, 2016, 32(5): 474-482.
[56]Cui, J. H.; Yang, H. J.*; Yu, C. Q.; Bai, S.; Song, S. S.; Wu, T. T.; Sun, W.; Shao, X. M.*; Jiang, L. S. Effect of urea fertilization on biomass yield, chemical composition, in vitro rumen digestibility and fermentation characteristics of forage oat straw in Tibet of China.Journal of Agricultural Science, 2016, 154(5): 914-927.
[57]Mei, Chen; He, Sha-sha; Yin, Peng; Xu, Lei; Shi, Ya-ran; Yu, Xiao-hong; Lyu, An; Liu, Feng-hua*; Jiang, Lin-shu*.Magnolol pretreatment attenuates heat stress-induced IEC-6 cell injury.Journal of Zhejiang University-Science B(Biomedicine & Biotechnology), 2016, 17(6): 413-424.
[58]Xu, L.; He, S. S.; Li, D. Y.; Mei, C.; Hou, X. L.*; Jiang, L. S.*; Liu, F. H.*. Hydrogen Peroxide Induces Oxidative Stress and the Mitochondrial Pathway of Apoptosis in RAT Intestinal Epithelial Cells (IEC-6).Molecular Biology, 2016, 50(2): 270-277.
[59] Jiang, Linshu. Protective Effects of Ferulic Acid Against Heat Stress-induced Intestinal Epithelial Barrier Dysfunction In Vitro and In Vivo.Plos one, 2016, 11(2): 1-15,(IF2.678)
[60]Cao, Bin-Bin; Jin, Xin; Yang, Hong-Jian*; Li, Sheng-Li; Jiang, Lin-Shu.Microbial release of ferulic and p-coumaric acids from forages and their digestibility in lactating cows fed total mixed rations with different forage combinations.Journal of the Science of Food and Agriculture, 2016, 96(2): 650-655.
[61]Cui, J. H.; Yang, H. J.*; Yu, C. Q.; Bai, S.; Wu, T. T.; Song, S. S.; Sun, W.; Shao, X. M.; Jiang, L. S. Effect of urea fertilization on biomass yield, chemical composition, in vitro rumen digestibility and fermentation characteristics of straw of highland barley planted in Tibet.Journal of Agricultural Science, 2016, 154(1): 151-164.
[62]Han, Dandan; Wan, Changrong; Liu, Fenghua*; Xu, Xiaolong; Jiang, Linshu*; Xu, Jianqin*.Jujuboside A Protects H9C2 Cells from Isoproterenol-Induced Injury via Activating PI3K/Akt/mTOR Signaling Pathway.Evidence-Based Complementary and Alternative Medicine, 2016, 9593716.
[63]Wang, Qian; Luo, Yang; He, Bo; Jiang, Lin-Shu*; Liu, Jian-Xin; Wang, Jia-Kun.Characterization of a Novel Xylanase Gene from Rumen Content of Hu Sheep.Applied Biochemistry and Biotechnology, 2015, 177(7): 1424-1436.
[64]Chen, Zhenming; Ma, Yuanhui; He, Mengyan; Ren, Hongyang; Zhou, Shuo; Lai, Dunyue; Wang, Zhiguo*; Jiang, Linshu.Semi-rational Directed Evolution of Monoamine Oxidase for Kinetic Resolution of rac-Mexiletine.Applied Biochemistry and Biotechnology, 2015, 176(8): 2267-2278.
[65]Zhang, Yonghong; Zhao, Hong; Liu, Tao; Wan, Changrong; Liu, Xiaoxi; Gao, Zhimin; Hou, Xiaolin; Jiang, Linshu*; Liu, Fenghua.Activation of transcription factor AP-1 in response to thermal injury in rat small intestine and IEC-6 cells. BMC Gastroenterology, 2015, 15: 83.
[66]B. B. CAO, R. WANG, H. J. YANG AND L. S. JIANG,In situ ruminal degradation of phenolic acid, cellulose and hemicellulose in crop brans and husks differing in ferulic and p-coumaric acid patterns,Journal of Agricultural Science, Page 1 of 9. © Cambridge University Press 2015,IF2.891
[67]L. Xu, S. S. He, D. Y. Li, C. Mei, X. L. Hou, L. S. Jiang, F. H. Liu HYDROGEN PEROXIDE INDUCES OXIDATIVE STRESS AND THE MITOCHONDRIAL PATHWAY OF APOPTOSIS IN RAT INTESTINAL EPITHELIAL CELLS (IEC-6), Molecular Biology,Page 1 of 16,(2015):1-15,IF1.7
[68]J.H.Cui,H.J.Yang,L.S.Jiang, Effect of urea fertilisation on biomassyield,chemical composition,in vitro rumen digestibility and fermentation characteristics of straw of highland barley plantedin Tibet of China, Journal of Agricultural Science, Page 1 of 9. © Cambridge University Press 2015,IF2.891
[69]Bin-Bin Cao, Xin Jin,Hong-Jian Yang, Sheng-Li Li and Lin-Shu Jiang, Microbial release of ferulic and p-coumaric acids fromforages and their digestibility in lactating cows fed totalmixed rations with different forage combinations,J Sci Food Agric,Page 1 of 6, (2015), IF1.714
[70]Fang Luoyun; Mao Tingting; Xie Lingna; Jiang Linshu*.The Additivity of Digestible Energy Values and Digestibility of Dry Matter, Organic Matter Determined by in vitro Method for Growing Pigs.Journal of Animal and Veterinary Advances, 2012, 11(12): 2043-2047.
[71]Hua, D.; Zhao, Y.; Nan, X.; Xue, F.; Wang, Y.; Jiang, L.*; Xiong, B.*.Effect of different glucogenic to lipogenic nutrient ratios on rumen fermentation and bacterial community in vitro.Journal of Applied Microbiology.
发表中文期刊论文:
[1]詹经纬,李欣,关淑文,刘明,蒋林树.竹叶黄酮对过氧化氢诱导的奶牛乳腺上皮细胞氧化损伤的保护作用[J/OL].动物营养学报:1-13[2023-03-08].
[2]高鹏翔,潘予琮,蒋林树,方洛云.饲用豆粕减量替代技术的应用及新型蛋白质饲料的开发前景[J/OL].动物营养学报:1-11[2023-03-08].
[3]高鹏翔,潘予琮,蒋林树,方洛云.黄酮类化合物改善奶牛产奶量和乳品质的研究进展[J/OL].动物营养学报:1-9[2023-03-08].
[4]赵小博,余诗强,黄新,蒋林树.天然植物功能组分-生物学功能-作用靶点关系网络的研究进展[J].动物营养学报,2023,35(01):99-109.
[5]余诗强,李留学,赵小博,赵慧颖,屠焰,赵玉超,蒋林树.不同泌乳阶段和体细胞水平的中国荷斯坦奶牛泌乳性能差异和相关性研究[J/OL].畜牧兽医学报:1-12[2023-03-08].
[6]霍相羽,高家瑞,靳佳祺,李燕,高原,刘梦涵,蒋林树,童津津.苦参碱对牛源无乳链球菌的体外抑菌活性分析[J/OL].畜牧兽医学报:1-11[2023-03-08].
[7]李留学,赵玉超,蒋林树,屠焰.类黄酮的生物活性作用及其在反刍动物生产中的应用[J].饲料工业,2022,43(23):51-54.
[8]李玉琴,黄新,高鹏翔,赵小博,王慧,蒋林树.解淀粉芽孢杆菌对奶牛瘤胃干物质消化率、发酵参数及代谢物的影响[J].动物营养学报,2023,35(01):311-322.
[9]潘婵媛,赵梓轩,段铭洁,蒋林树,童津津.基于网络药理学预测青蒿缓解奶牛氧化应激的作用机制[J/OL].畜牧兽医学报:1-15[2023-03-08].
[10]关淑文,潘予琮,寇伟,年芳,蒋林树.基于高效液相色谱特征指纹图谱法探究不同品种苜蓿中黄酮抗氧化活性的谱-效关系[J].动物营养学报,2022,34(12):8086-8096.
[11]寇伟,年芳,蒋林树,潘予琮,余诗强,梁婷.不同品种苜蓿总黄酮对奶牛体外瘤胃发酵和饲料降解率的影响[J].甘肃农业大学学报,2022,57(05):1-8.
[12]余诗强,熊安然,熊本海,蒋林树.天然植物饲料原料活性物质谱效关系的研究思路与应用概况[J].饲料工业,2022,43(21):59-64.
[13]方洛云,蒋林树.植物提取物活性成分鉴定方法研究进展[J].动物营养学报,2022,34(10):6451-6458.
[14]赵梓轩,杨嘉睿,蒋林树,童津津.基于网络药理学和分子对接探讨苦参碱在奶牛生产中的抗炎作用机制[J].动物营养学报,2022,34(12):7872-7885.
[15]余诗强,李留学,赵慧颖,张一涵,熊本海,申跃宇,蒋林树,赵玉超.胎次和产奶量对奶牛泌乳性能的影响[J].南方农业学报,2022,53(09):2691-2700.
[16]李欣,牛慧,詹经纬,关淑文,屠焰,蒋林树.载牛乳铁蛋白肽-壳聚糖纳米粒对过氧化氢诱导的奶牛乳腺上皮细胞氧化损伤的保护作用[J].动物营养学报,2022,34(10):6726-6736.
[17]陈逸,张一涵,张静,屠焰,王慧,蒋林树.大豆活性肽对体外过氧化氢诱导的奶牛乳腺上皮细胞氧化应激和炎症损伤的缓解作用[J].动物营养学报,2022,34(10):6714-6725.
[18]熊安然,熊本海,蒋林树.饲用天然植物活性物质构效关系的研究进展[J].饲料工业,2022,43(15):58-64.
[19]赵慧颖,余诗强,贺李莹,熊本海,王慧,蒋林树.沙棘黄酮对泌乳中期荷斯坦奶牛瘤胃发酵参数、细菌菌群结构及代谢产物的影响[J].动物营养学报,2022,34(09):5809-5823.
[20]赵玉超,余诗强,蒋林树.生物类黄酮调控瘤胃微生态系统的作用——聚焦甲烷减排[J].动物营养学报,2022,34(09):5452-5465.
[21]赵玉超,蒋林树.饲用天然植物功能组分新产品创制的关键要素分析[J].饲料工业,2022,43(13):59-64.
[22]高国燕,蒋林树,年芳,王慧.不同省份小果沙棘叶中黄酮类化合物含量测定及体外抗氧化能力评价[J].中国饲料,2022(10):30-35.
[23]付瑶,孔凡林,齐志国,王俊,Elnazeir Mohammed Dawelbait,郭江鹏,蒋林树.不同硒源对泌乳牛瘤胃发酵及瘤胃微生物区系的影响[J].中国畜牧杂志,2022,58(05):190-195.
[24]余诗强,赵玉超,熊本海,蒋林树.柑橘黄酮的活性功能机制及柑橘提取物在动物生产中应用的研究进展[J].动物营养学报,2022,34(07):4155-4164.
[25]赵慧颖,余诗强,蒋林树,熊本海.大豆异黄酮的代谢及其对动物肠道保护机制的研究进展[J].动物营养学报,2022,34(07):4132-4142.
[26]张一涵,贺李莹,陈逸,熊本海,王慧,蒋林树.沙棘黄酮对泌乳中期荷斯坦奶牛生产性能、乳中生物活性成分及血清生化和抗氧化指标的影响[J].动物营养学报,2022,34(06):3666-3675.
[27]赵玉超,蒋林树.饲用天然植物活性功能组分制备方法研究进展[J].动物营养学报,2022,34(04):2054-2072.
[28]潘予琮,寇伟,蒋林树,年芳.基于指纹图谱技术的燕麦草质量评价与相关性验证[J].动物营养学报,2022,34(03):1984-1995.
[29]张一涵,余诗强,蒋林树,熊本海.影响奶牛乳成分因素的研究进展[J].中国乳业,2021(12):53-62.
[30]李建凤,赵佳桢,沈义媛,关淑文,韩思雨,熊本海,王梦,楚康康,方洛云,童津津,蒋林树.竹叶黄酮对热应激诱导奶牛乳腺上皮细胞氧化损伤的保护作用[J].动物营养学报,2022,34(01):626-639.
[31]李玉琴,李义,黄新,赵小博,高鹏翔,王慧,蒋林树.解淀粉芽孢杆菌对奶牛泌乳性能、乳成分及血清生化、免疫和抗氧化指标的影响[J].动物营养学报,2022,34(02):979-988.
[32]熊安然,潘予琮,余诗强,蒋林树,熊本海.响应面法优化提取奶牛全混合日粮中总黄酮方法的研究[J].动物营养学报,2021,33(10):5849-5860.
[33]王宇彤,沈义媛,霍相羽,牛慧,韩思雨,童津津,熊本海,蒋林树.体外法研究竹叶黄酮对奶牛乳腺上皮细胞抗氧化及哺乳动物雷帕霉素靶蛋白信号通路中关键基因表达的影响[J].动物营养学报,2022,34(01):612-625.
[34]李欣,童津津,赵佳桢,蒋林树.氧化应激、炎症和免疫失衡三方联动效应与奶牛常见健康问题的联系及使用植物提取物进行干预的研究进展[J].动物营养学报,2021,33(12):6666-6675.
[35]李欣,童津津,熊本海,蒋林树.饲粮组成对牛乳中乳蛋白及乳脂肪合成与调控机理影响的研究进展[J].中国乳业,2021(09):67-73.
[36]沈义媛,詹经纬,李欣,牛慧,吴富鑫,关淑文,童津津,蒋林树,熊本海.不同泌乳水平奶牛瘤胃发酵及血清代谢差异的研究[J].动物营养学报,2022,34(01):349-357.
[37]张书阅,熊安然,潘予琮,余诗强,蒋林树,熊本海.燕麦草常规营养成分含量近红外预测模型的建立[J].动物营养学报,2022,34(02):1334-1342.
[38]牛慧,童津津,熊本海,蒋林树.泛素化修饰功能在调节动物炎症机制中的研究进展[J].动物营养学报,2021,33(12):6684-6689.
[39]沈义媛,童津津,熊本海,蒋林树.多组学技术在奶牛瘤胃微生物与宿主互作机制中的研究进展[J].中国乳业,2021(08):68-75.
[40]汪悦,南雪梅,蒋林树,熊本海.奶牛胃肠道菌群与奶牛乳房炎关联性及其对乳房炎调控潜力的研究进展[J].畜牧兽医学报,2021,52(08):2083-2092.
[41]侯昆,李欣,沈义媛,詹经纬,牛慧,熊本海,童津津,蒋林树.青蒿素对奶牛乳腺上皮细胞乳脂合成相关基因表达的影响[J].动物营养学报,2021,33(11):6407-6419.
[42]张书阅,熊本海,刘明,蒋林树.酿酒酵母培养物对瘤胃内环境和免疫功能的影响及其在反刍动物上的应用[J].中国乳业,2021(07):18-24.
[43]余诗强,熊安然,潘予琮,汪悦,张亚静,蒋林树,熊本海.青蒿提取物对泌乳奶牛瘤胃发酵参数及微生物区系的影响[J].动物营养学报,2021,33(11):6431-6444.
[44]余诗强,熊安然,潘予琮,张亚静,汪悦,蒋林树,熊本海.青蒿提取物对奶牛泌乳性能、血浆免疫与抗氧化指标的影响[J].动物营养学报,2021,33(07):3896-3903.
[45]余诗强,童津津,熊本海,蒋林树.乳酸在奶牛体内的代谢途径及其对奶牛健康影响的研究进展[J].中国畜牧兽医,2021,48(07):2439-2447.
[46]李玉琴,汪悦,蒋林树,熊本海.金银花提取物对围产期奶牛乳房炎的防控作用及其机制研究进展[J].动物营养学报,2021,33(08):4255-4262.
[47]詹经纬,童津津,熊本海,蒋林树.奶牛乳汁中微生物群落结构变化及其影响因素的研究进展[J].动物营养学报,2021,33(07):3686-3692.
[48]熊安然,熊本海,蒋林树.基于指纹图谱技术的饲料营养活性物质结构-谱-量-效关系的研究进展[J].动物营养学报,2021,33(08):4263-4270.
[49]王琳,陈兴财,姜晓满,蒋林树,李艳霞,张雪莲,胡柏杨,张晟玮.不同形态雌激素的环境行为及污染控制[J].农业环境科学学报,2021,40(08):1623-1634.
[50]王硕,苗赟,焦崇,刁其玉,朴泯宇,孔路欣,解瑞宝,马长永,蒋林树,于博,屠焰.不同中性洗涤纤维来源和粒度的全混合日粮对哺乳期犊牛生长性能、血清生化指标和采食行为的影响[J].动物营养学报,2021,33(07):3934-3948.
[51]乔荣更,贾宇,张红星,谢远红,金君华,刘慧,蒋林树,郝彦玲.可抑制口腔致病菌的乳酸菌筛选及其抑菌特性研究[J].食品与发酵工业,2021,47(11):75-81.
[52]余诗强,蒋林树,熊本海.黄芩素结构与生物学功能关系研究进展[J].动物营养学报,2021,33(06):3106-3114.
[53]李义,童津津,栗明月,韩思雨,赵璐宇,方洛云,蒋林树.竹叶提取物对热应激奶牛泌乳性能及血清生化、抗氧化和免疫指标的影响[J].动物营养学报,2021,33(02):900-912.
[54]张静,王慧,蒋林树,熊本海.大豆活性肽的功能特性及其在畜禽应用中的研究进展[J].动物营养学报,2021,33(05):2515-2526.
[55]潘予琮,蒋林树,熊本海.奶牛产后首次发情行为变化规律及影响因素分析[J].中国畜牧杂志,2021,57(04):123-128.DOI:10.19556/j.0258-7033.20200626-03.
[56]刘子豪,蒋林树,南雪梅,熊本海.奶牛激素相关的乳腺MicroRNA研究进展[J].动物营养学报,2021,33(01):101-106.
[57]吴富鑫,熊本海,童津津,蒋林树.奶牛乳腺炎无乳链球菌毒力相关因子[J].畜牧兽医学报,2020,51(12):2954-2963.
[58]熊安然,熊本海,蒋林树.奶牛数字化养殖技术研究进展[J].中国乳业,2020(11):29-32.
[59]牛慧,童津津,熊本海,蒋林树.奶牛肝脏功能及其免疫调节作用的研究进展[J].动物营养学报,2021,33(03):1292-1298.
[60]詹经纬,童津津,熊本海,蒋林树.奶牛乳腺健康与乳中体细胞数之间关系的研究进展[J].动物营养学报,2021,33(03):1299-1305.
[61]童津津,张华,熊本海,蒋林树.奶牛乳腺内微生物区系与乳房健康的关系研究进展[J].动物营养学报,2021,33(02):651-657.
[62]胡柏杨,蒋林树,李艳霞,陈兴财,安思羽.冻融循环对猪粪粒径及有机质变化的影响[J].农业环境科学学报,2021,40(01):219-226.
[63]熊安然,王慧,吴富鑫,熊本海,蒋林树.围产期奶牛产奶量与反刍时间、活动量、体细胞评分的相关关系分析[J].动物营养学报,2020,32(11):5293-5301.
[64]王亚品,赵一广,蒋林树,熊本海.围产期奶牛葡萄糖代谢及其失衡的营养调控[J].动物营养学报,2020,32(12):5556-5565.
[65]潘予琮,蒋林树,熊本海.指纹图谱技术及其在饲料营养活性物质评价中的应用研究进展[J].动物营养学报,2020,32(09):4044-4052.
[66]付瑶,郭江鹏,蒋林树.功能性微量元素硒对反刍动物瘤胃发酵的影响及其与瘤胃微生物的关系[J].动物营养学报,2020,32(11):4992-4997.
[67]王坤,南雪梅,熊本海,蒋林树.非粗料纤维饲料在奶牛生产中的应用[J].动物营养学报,2020,32(11):5023-5029.
[68]王坤,南雪梅,熊本海,蒋林树.反刍动物瘤胃甲烷生成相关研究进展[J].动物营养学报,2020,32(11):5013-5022.
[69]牛慧,童津津,张华,毛胜勇,熊本海,麻柱,蒋林树.高产与低产奶牛的乳成分差异及其对乳能量预测模型的影响[J].动物营养学报,2020,32(07):3214-3223.
[70]童津津,张华,吴富鑫,牛慧,熊本海,蒋林树.不同泌乳水平奶牛产奶量、乳成分和环境温湿指数的相关性研究[J].动物营养学报,2020,32(07):3171-3180.
[71]吴富鑫,童津津,张华,毛胜勇,熊本海,麻柱,蒋林树.北京地区不同泌乳水平中国荷斯坦奶牛乳成分模型建立及相关性分析[J].动物营养学报,2020,32(07):3199-3213.
[72]王亚品,张帆,华登科,蒋林树,熊本海.过瘤胃葡萄糖的瘤胃稳定性及其不同剂量对燕麦干草瘤胃降解特性的影响[J].动物营养学报,2020,32(07):3428-3438.
[73]潘予琮,王慧,熊本海,蒋林树.发情监测系统在奶牛养殖数字化管理中的应用[J].动物营养学报,2020,32(06):2500-2506.
[74]汪悦,薛夫光,蒋林树,熊本海.菊芋饲料的营养价值、生物活性及其对动物生理功能的调控作用[J].动物营养学报,2020,32(02):497-507.
[75]赵璐宇,方洛云,蒋林树,熊本海.β-葡聚糖的生物学功能及在反刍动物饲养中的应用[J].动物营养学报,2020,32(05):2003-2009.
[76]赵悦,童津津,熊本海,蒋林树.奶牛乳腺免疫细胞防御机理研究进展[J].动物营养学报,2020,32(04):1563-1569.
[77]孙铭维,童津津,蒋林树,熊本海,毛胜勇.壳聚糖抗无乳链球菌引起的奶牛乳腺上皮细胞炎性反应[J].动物营养学报,2020,32(03):1216-1226.
[78]孙铭维,童津津,蒋林树,熊本海,毛胜勇.体外法研究壳聚糖对无乳链球菌诱导的奶牛乳腺上皮细胞炎性损伤的保护作用[J].动物营养学报,2020,32(03):1204-1215.
[79]牛慧,童津津,熊本海,蒋林树.蛋白质组学技术在奶牛乳房炎中的应用进展[J].动物营养学报,2020,32(03):1056-1061.
[80]付瑶,王俊,齐志国,路永强,郭江鹏,蒋林树.延长肉类货架期的饲喂方案[J].中国畜牧杂志,2020,56(05):163-167.
[81]吴富鑫,童津津,熊本海,蒋林树.苦参碱的生物学功能及其在畜牧生产中的应用前景[J].动物营养学报,2019,31(12):5454-5460.
[82]侯昆,童津津,楚康康,熊本海,蒋林树.竹叶黄酮与青蒿提取物对患隐性乳房炎奶牛产奶性能、乳中体细胞数及血清免疫和抗氧化相关指标的影响[J].动物营养学报,2019,31(09):4286-4295.
[83]孙福昱,赵一广,薛夫光,华登科,杜春梅,蒋林树,熊本海.海带、紫菜、裙带菜3种海藻对奶牛瘤胃体外发酵参数及产气量的影响[J].动物营养学报,2019,31(10):4793-4801.
[84]孙福昱,赵一广,薛夫光,华登科,杜春梅,蒋林树,熊本海.海带粉对饲喂高精料饲粮奶牛瘤胃发酵参数和菌群结构的影响[J].动物营养学报,2019,31(06):2842-2853.
[85]杨德莲,童津津,孙铭维,张婕,张华,熊本海,蒋林树.无乳链球菌通过抑制酪氨酸激酶/信号转导及转录激活因子和哺乳动物雷帕霉素靶蛋白信号通路影响奶牛乳腺上皮细胞乳蛋白的合成[J].动物营养学报,2019,31(08):3706-3718.
[86]栗明月,方洛云,苏汉书,李义,郝磊,蒋林树,熊本海.竹叶提取物对奶牛泌乳性能、血液常规指标、免疫和抗氧化性能的影响[J].动物营养学报,2019,31(07):3302-3309.
[87]李义,方洛云,熊本海,蒋林树.植物黄酮在缓解奶牛热应激上的应用前景[J].动物营养学报,2019,31(08):3490-3495.
[88]王亚品,孙福昱,蒋林树,熊本海.断奶犊牛瘤胃微生物区系建立和发育的影响因素[J].动物营养学报,2019,31(08):3482-3489.
[89]吴富鑫,童津津,张华,方洛云,熊本海,蒋林树.不同泌乳量奶牛行为学差异及其与泌乳性能的相关性[J].动物营养学报,2019,31(07):3156-3163.
[90]苏汉书,熊本海,方洛云,蒋林树.青蒿提取物对奶牛瘤胃体外发酵及甲烷生成的影响[J].北京农学院学报,2020,35(01):60-66.
[91]侯昆,童津津,熊本海,蒋林树.植物提取物防治奶牛乳房炎的应用进展[J].动物营养学报,2019,31(07):3009-3015.
[92]薛夫光,施辉毕,孙福昱,罗清尧,杨亮,楚康康,蒋林树,熊本海.宏基因组分析方法探究高精料日粮对奶牛瘤胃产甲烷菌的影响[J].农业大数据学报,2019,1(01):45-55.
[93]汪悦,薛夫光,蒋林树,熊本海.前列腺素类及其受体在动物慢性炎症中的促炎及指示作用[J].动物营养学报,2019,31(06):2495-2501.
[94]赵悦,童津津,熊本海,蒋林树.大豆异黄酮在奶牛生产中的研究进展[J].动物营养学报,2019,31(07):2999-3003.
[95]孙福昱,南雪梅,唐志文,蒋林树,熊本海.海藻在畜牧生产中的应用研究进展[J].中国畜牧兽医,2019,46(01):157-165.
[96]汪悦,熊本海,蒋林树.奶牛不同乳腺健康状态下乳清蛋白的差异性表达研究[J].动物营养学报,2019,31(02):775-791.
[97]栗明月,方洛云,苏汉书,焦梦荷,郝磊,蒋林树,熊本海.竹叶提取物对奶牛瘤胃体外发酵参数及产气量的影响[J].动物营养学报,2019,31(04):1816-1822.
[98]杜春梅,孙福昱,蒋林树,熊本海.饲粮中添加硫胺素缓解奶牛亚急性瘤胃酸中毒的研究进展[J].动物营养学报,2019,31(02):530-535.
[99]童津津,张华,孙铭维,杨德莲,张婕,熊本海,蒋林树.采用Illumina MiSeq测序技术分析葡萄籽原花青素对奶牛体外瘤胃发酵产甲烷菌区系的影响[J].动物营养学报,2019,31(01):314-323.
[100]栗明月,焦梦荷,蒋林树,方洛云.竹叶黄酮的生理功能及其应用前景[J].中国农学通报,2018,34(32):144-149.
[101]张华,童津津,张肇南,蒋林树.壳寡糖对动物机体免疫和炎症调节作用及其机制的研究进展[J].动物营养学报,2019,31(01):15-23.
[102]汪悦,张议夫,蒋林树.茶皂素对奶牛瘤胃甲烷菌及甲烷排放的影响[J].中国农学通报,2018,34(29):104-111.
[103]孙铭维,童津津,蒋林树,熊本海.壳聚糖抗微生物活性的影响因素及其作用机制[J].动物营养学报,2018,30(11):4327-4333.
[104]张婕,童津津,张华,杨德莲,孙铭维,蒋林树,熊本海.不同分子质量及不同浓度的壳聚糖对奶牛瘤胃体外发酵参数及甲烷排放的影响[J].动物营养学报,2018,30(11):4729-4737.
[105]权素玉,南雪梅,蒋林树,熊本海.动物外泌体的生物学功能研究进展[J].动物营养学报,2018,30(12):4786-4791.
[106]孙福昱,南雪梅,唐志文,蒋林树,熊本海.饲粮营养调控减少反刍动物甲烷排放研究进展[J].家畜生态学报,2018,39(09):7-11.
[107]王坤,蒋林树,杨亮,潘晓花,熊本海.舔砖技术在畜牧生产中的研究进展[J].家畜生态学报,2018,39(09):72-76.
[108]权素玉,南雪梅,蒋林树,熊本海.动物氨基酸转运与感知系统研究进展[J].动物营养学报,2018,30(10):3810-3817.
[109]刘志宇,曹安,蒋林树,曹素英.长链非编码RNA(lncRNA)生物学功能及其调控机制[J].农业生物技术学报,2018,26(08):1419-1430.
[110]王慧,方洛云,熊本海,蒋林树.牛乳生物活性成分及其研究进展[J].中国乳业,2018(08):62-67.
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[112]杨德莲,张华,童津津,孙铭维,张婕,蒋林树,熊本海.植物提取物对反刍动物免疫反应、氧化应激以及胰岛素调节的影响[J].动物营养学报,2018,30(06):2064-2069.
[113]孙铭维,童津津,张华,杨德莲,张婕,蒋林树,熊本海.壳聚糖在奶牛中的生物学功能及应用[J].动物营养学报,2018,30(06):2079-2084.
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[115]唐志文,孙福昱,杨亮,熊本海,蒋林树.不同饲粮条件下奶牛胃肠道中内毒素浓度与炎症反应相关关系研究进展[J].家畜生态学报,2018,39(05):6-10.
[116]汪悦,蒋林树,熊本海.不同牛奶体细胞数下牛奶体细胞分型及奶牛泌乳性能变化[J].动物营养学报,2018,30(04):1353-1366.
[117]许晓凯,石宁,郭玉琴,蒋林树,李艳玲.提高玉米秸秆利用率的研究技术进展[J].农学学报,2018,8(03):58-63.
[118]唐志文,蒋林树,杨亮,孙福昱,熊本海.金银花提取物对瘤胃体外发酵参数及产气量的影响[J].动物营养学报,2018,30(02):790-796.
[119]张婕,童津津,杨德莲,蒋琦晖,蒋林树,熊本海.北京市周边地区奶牛场玉米青贮饲料瘤胃降解特性对比分析[J].动物营养学报,2018,30(02):726-733.
[120]汪悦,王炳,童津津,蒋林树,熊本海.牛奶微生物群落与奶牛乳腺健康和犊牛胃肠道发育的关系[J].动物营养学报,2018,30(02):458-467.
[121]苏汉书,蒋林树,王炳.多组学技术在奶牛瘤胃代谢以及泌乳生理研究中的应用[J].动物营养学报,2018,30(02):451-457.
[122]杨德莲,童津津,张婕,郭琪,蒋琦晖,蒋林树,熊本海.葡萄籽原花青素对奶牛瘤胃体外发酵参数及微生物区系的影响[J].动物营养学报,2018,30(02):717-725.
[123]唐志文,蒋林树,杨亮,王坤,熊本海.体外法研究脂多糖对瘤胃发酵的影响[J].动物营养学报,2017,29(10):3799-3806.
[124]唐志文,蒋林树,杨亮,王坤,熊本海.胃肠道脂多糖对奶牛健康及生产性能的影响及其防治措施[J].动物营养学报,2017,29(08):2650-2656.
[125]汪悦,王炳,苏汉书,黄清赟,郭琪,蒋林树.牛奶体细胞生成与乳品质量和安全的关系[J].动物营养学报,2017,29(07):2269-2277.
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[127]熊本海,蒋林树,杨亮,潘晓花.种猪生产性能测定系统开发与性能测试[J].农业工程学报,2017,33(09):174-179.
[128]熊本海,蒋林树,杨亮,王坤,潘晓花.奶牛饲喂自动机电控制系统的设计与试验[J].农业工程学报,2017,33(07):157-163.
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[133]辛海瑞,潘晓花,毕晔,熊本海,蒋林树.光照节律对北京鸭生产性能、屠宰性能和血液抗氧化功能的影响[J].中国农业科学,2016,49(23):4638-4645.
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[137]高桂峰,蒋林树,秦岭,李志敏,莫晓辉,姚允聪.地方农业高校协同创新实践案例分析[J].中国高校科技,2016(Z1):100-101.
[138]许磊,梅晨,李德银,宫平,吕安,张志聪,张彤,蒋林树,刘凤华.安石榴苷对热应激后IEC-6细胞HSPs表达及凋亡影响[J].北京农学院学报,2016,31(01):46-49.
[139]梅晨,何莎莎,许磊,李德银,吕安,张志聪,张彤,宫平,刘凤华,蒋林树.比较MTS与MTT用于大鼠热应激模型中肠上皮细胞活力检测[J].北京农学院学报,2016,31(01):107-112.
[140]路平,高凡,姜奕晨,蒋林树,刘克锋,秦岭.北京郊区农业废弃资源现状与利用分析[J].北京农学院学报,2016,31(01):102-106.
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[143]方洛云,赵燕飞,金凯,王俊杰,周敏,蒋林树.大豆异黄酮对奶牛泌乳性能、血液免疫及抗氧化指标的影响[J].中国农学通报,2015,31(11):9-15.
[144]严淑红,邢文丽,方洛云,王俊杰,刘续航,蒋林树.茶皂素对奶牛乳腺上皮细胞增殖及乳脂合成关键酶的影响[J].动物营养学报,2015,27(04):1270-1277.
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[146]程鹏,白云静,于晓红,宫平,张彤,李德银,徐宏伟,蒋林树,刘凤华.甘草多糖提取工艺的研究及其对小鼠免疫口蹄疫疫苗后细胞免疫的影响[J].北京农学院学报,2015,30(03):30-34.
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[150]茅婷婷,解玲娜,刘畅,闵婉平,金凯,王俊杰,方洛云,蒋林树.葡萄籽原花青素对大鼠脾脏淋巴细胞与肝细胞增殖的影响[J].中国农学通报,2013,29(23):10-14.
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[152]孙志刚,王明,刘文奇,张金芳,方洛云,蒋林树.北京市奶牛饲养管理现状与发展对策的调查研究[J].中国农学通报,2012,28(23):45-49.
[153]王明,孙志刚,刘文奇,杨柳,方洛云,蒋林树.大豆异黄酮对奶牛脾脏和肠系淋巴结淋巴细胞干扰素γ、白介素2和白介素4浓度以及雌激素受体β mRNA表达的影响[J].动物营养学报,2012,24(05):859-869.
[154]王明,孙志刚,刘文奇,杨柳,方洛云,蒋林树.大豆异黄酮对奶牛脾脏与肠系淋巴结中淋巴细胞增殖的影响[J].中国农学通报,2012,28(11):24-27.
[155]朱志宁,郝振荣,王明,蒋林树,郭玉琴.大豆异黄酮对高产奶牛泌乳后期乳腺肥大细胞分泌肿瘤坏死因子-α和表面型免疫球蛋白A水平的影响[J].动物营养学报,2011,23(01):112-121.
[156]郝振荣,朱志宁,王明,蒋林树,郭玉琴.大豆异黄酮对奶牛泌乳后期泌乳性能、免疫功能和乳腺肥大细胞白介素-4水平的影响[J].动物营养学报,2010,22(06):1679-1686.
[157]何川,陈艳乐,蒋林树,崔海峰,叶子弘.农作物秸秆饲料处理技术的研究现状[J].畜牧与饲料科学,2010,31(10):26-28.
[158]陈艳乐,叶子弘,蒋林树.黄牛瘤胃中多不饱和脂肪酸氢化的影响因素[J].浙江农业学报,2010,22(03):292-297.
[159]周敏,叶子弘,蒋林树.瘤胃氢化多不饱和脂肪酸的影响因素[J].中国农学通报,2010,26(08):38-44.
[160]郝振荣,朱志宁,郭玉琴,蒋林树,高伟,李艳艳.大豆黄酮对产奶量和牛奶品质的影响[J].北京农学院学报,2009,24(04):26-27+38.
[161]蒋林树.不同加工处理大豆对瘤胃干物质消化率及活体外瘤胃发酵参数的动态影响研究[J].中国农学通报,2008(10):1-7.
[162]蒋林树,马俊云,孟庆翔,冯雪莲,隗和谦.不同加工处理对大豆蛋白质瘤胃降解及动态降解参数的影响[J].中国畜牧杂志,2008(15):18-20.
[163]蒋林树,孟庆翔,雒玉书,方洛云.饲喂膨化全脂大豆对奶牛组织中PUFAs及CLA含量变化的影响[J].动物营养学报,2007(04):417-423.
[164]蒋林树,孟庆翔,马俊云,杨柳.膨化全脂大豆对高产奶牛乳脂中脂肪酸含量的影响[J].中国奶牛,2007(04):14-17.
[165]蒋林树,孟庆翔,马俊云,杨柳.膨化全脂大豆对高产奶牛乳脂中PUFA含量的影响[J].中国农学通报,2007(02):5-9.
[166]蒋林树,陈学珍.干法挤压膨化对大豆营养品质及电镜结构变化的影响研究[J].中国奶牛,2007(01):11-14.
[167]张元庆,蒋林树,孟庆翔.纤维体及其在瘤胃微生物中的研究进展[J].动物营养学报,2006(S1):361-366.
[168]赵连静,蒋林树.新时期农村财务管理中的问题与对策[J].北京农学院学报,2006(S1):115-116.
[169]蒋林树,王潇键,孟庆翔,杨柳,于同泉,方洛云,路萍.添加膨化全脂大豆对高产奶牛血液和乳中尿素氮的影响[J].中国奶牛,2006(12):9-12.
[170]蒋林树,韩春玲.奶牛高效饲养工艺与模式[J].中国奶牛,2006(01):16-18.
[171]蒋林树,赵晶,韩春玲,常影.高油玉米含油量对体外瘤胃发酵参数的影响[J].饲料与畜牧,2005(02):16-21.
[172]方洛云,邹晓庭,蒋林树,吴国娟.不同锌源对断奶仔猪免疫和抗氧化作用的影响[J].中国兽医学报,2005(02):201-203.
[173]蒋林树,王晓霞,方洛云,郭玉琴.玉米秸秆颗粒替代羊草饲喂育成牛效果的研究[J].北京农学院学报,2004(01):40-41+60.
[174]方洛云,邹晓庭,蒋林树,吴国娟.不同锌源对断奶仔猪生长性能和消化酶的影响[J].中国饲料,2004(04):20-22.
[175]蒋林树,陈斌,王晓霞,吴跃明,闰伟杰,刘建新.生化处理对玉米秸颗粒饲料营养价值的影响研究[J].饲料与畜牧,2004(01):18-20.
[176]蒋林树,陈斌,王晓霞,路苹,王建立,吴跃明,刘建新.复合化学处理对玉米秸复合颗粒饲料营养价值的影响[J].北京农学院学报,2003(04):252-254.
[177]蒋林树,陈斌,王晓霞,郭玉琴,吴跃明,闰伟杰,刘建新.玉米秸秆复合颗粒饲料替代羊草对育成奶牛日增重和采食量的影响[J].饲料与畜牧,2003(06):24-25.
[178]蒋林树,范学珊,方洛云,闫战胜,曾浩.北京市秸秆资源调查及应用前景[J].北京农学院学报,2003(01):33-35.
[179]蒋林树,乔燕平.干法膨化全脂大豆及在奶牛生产中的应用[J].乳业科学与技术,2002(04):33-34.
[180]史占全,蒋林树,刘建新.添加酶制剂对青贮玉米秸采食量和瘤胃内降解的影响[J].中国畜牧杂志,2001(05):5-7.
[181]蒋林树,何文辉,刘文奇,史占全.奶牛饲料添加剂“增奶宝”的应用效果[J].中国奶牛,2001(01):34-35.
[182]陈雪君,蒋林树,戴贤君,吴跃明,刘建新.绍鸭增重蛋白质需要量的研究[J].科技通报,2000(06):447-451.
[183]史占全,蒋林树,叶宏伟.稻草加酶青贮饲喂育成牛的效果研究[J].中国奶牛,2000(05):24-26.
[184]王晓霞,滑静,蒋林树,杨佐君,霍启光,屠焰.石粉粒度与饲喂时间对蛋壳质量及其超微结构的影响[J].北京农学院学报,1999(04):31-37.
[185]王运亨,周玉云,李风云,刘文奇,杨秀文,张英来,曹燕叔,蒋林树.加酶高粱青贮的制作与饲喂奶牛试验[J].中国奶牛,1998(05):24-26.
[186]史占全,刘建新,唐青松,蒋林树.酶制剂处理青贮玉米秸秆对奶牛产奶性能的影响[J].浙江畜牧兽医,1998(01):7-8.
[187]吴跃明,刘建新,施明华,蒋林树.日粮电解质平衡对肉用仔鸡养分利用和生长性能的影响[J].浙江农业学报,1997(01):41-45.
会议论文:
[1]熊安然,王慧,吴富鑫,熊本海,蒋林树. 奶牛围产期产奶量、反刍时间、活动量与体细胞评分的相关关系分析[C].创新、融合、健康、未来—第九届全国畜牧兽医青年科技工作者学术研讨会论文集.2020:141.
[2]常肖肖,张议夫,赵士萍,蒋琦辉,王炳,方洛云,熊本海,蒋林树. 茶皂素对奶牛免疫功能的影响[C].第八届全国畜牧兽医青年科技工作者学术研讨会论文集.2016:191.
[3]赵士萍,严淑红,蒋琦晖,常肖肖,王炳,方洛云,蒋林树. 茶皂素对奶牛瘤胃原虫区系的影响[C].第八届全国畜牧兽医青年科技工作者学术研讨会论文集.2016:203.
[4]王炳,蒋林树. 植物提取物茶皂素在奶牛生产中的应用研究进展[C].中国畜牧兽医学会动物营养学分会第十届全国代表大会暨十二届学术研讨会论文集.2016:162-168.
[5]王炳,蒋林树. 植物提取物茶皂素在奶牛生产中的应用研究进展[C].中国畜牧兽医学会动物营养学分会第十二次动物营养学术研讨会论文集.2016:444.
[6]常肖肖,张议夫,赵士萍,蒋琦晖,方洛云,蒋林树. 茶皂素对中国荷斯坦奶牛产奶性能及乳脂肪酸的影响[C].中国畜牧兽医学会动物营养学分会第十二次动物营养学术研讨会论文集.2016:474.
[7]赵士萍,严淑红,蒋琦晖,常肖肖,蒋林树. 茶皂素对奶牛瘤胃细菌、原虫区系的影响[C].中国畜牧兽医学会动物营养学分会第十二次动物营养学术研讨会论文集.2016:475.
[8]蒋琦晖,张议夫,常肖肖,赵士萍,蒋林树. 茶皂素对奶牛瘤胃原虫、甲烷排放以及产甲烷菌区系的影响[C].中国畜牧兽医学会动物营养学分会第十二次动物营养学术研讨会论文集.2016:476.
[9]闵婉平,蒋林树,王俊杰,金凯,刘续航,邢文丽,方洛云,王宗义. 不同粗饲料组合对原料牛乳脂肪酸组成和含量的影响[C].中国畜牧兽医学会2013年学术年会论文集.2013:113.
[10]刘续航,蒋林树,王俊杰,金凯,方洛云,邢文丽,信丽凤,赵顺,王建芬. 大豆异黄酮对奶牛泌乳性能及乳腺主要免疫功能的影响[C].中国畜牧兽医学会2013年学术年会论文集.2013:214.
[11]邢文丽,茅婷婷,方洛云,信丽凤,蒋林树. 葡萄籽原花青素对大鼠脾脏相关免疫因子及肝脏抗氧化指标的影响[C].中国畜牧兽医学会2013年学术年会论文集.2013:112.
[12]王俊杰,茅婷婷,谢玲娜,刘畅,方洛云,蒋林树. LPS对大鼠肠黏膜上皮细胞ICAM-1的影响[C].中国畜牧兽医学会动物营养学分会第十一次全国动物营养学术研讨会论文集.2012:376.
[13]刘畅,郭玉琴,方洛云,蒋林树,王淇. 黄芪多糖(APS)对鲫鱼组织中磷酸酶和溶菌酶活性的影响[C].中国畜牧兽医学会动物营养学分会第十一次全国动物营养学术研讨会论文集.2012:224.
[14]朱成明,蒋林树,刘万香,刘大森. 添加膨化全脂大豆对奶牛肝脏和乳腺中△9脱氢酶mRNA表达量的影响[C]//.中国畜牧兽医学会动物营养学分会第十次学术研讨会论文集.,2008:286.
[15]蒋林树,朱成明,刘万香,刘大森. 全脂大豆对瘤胃微生物氢化PUFA的影响[C].中国畜牧兽医学会动物营养学分会第十次学术研讨会论文集.2008:287.
[16]王有年,李华,蒋林树,史亚军,何忠伟. 科教兴村是高校参与社会主义新农村建设的重要途径[C].推进社会主义新农村建设研讨会论文集.2006:252-258.
[17]李华,王有年,阎仁浩,孙素芬,蒋林树. 对新农村建设农民科学素质的初步探讨[C].推进社会主义新农村建设研讨会论文集.2006:259-264.
[18]赵连静,蒋林树. 新时期农村财务管理中的问题与对策[C].社会主义新农村建设高层论坛专辑.,2006:121-122.
[19]段智勇,郑秋锋,吴跃明,刘建新,蒋林树. 复合化学处理对玉米秸颗粒料营养价值的影响[C].第四届全国饲料营养学术研讨会论文集.2002:21.
[20]蒋林树,戴贤君,吴跃明,陈雪君,周钦良,胡伟莲,陈安国,刘建新. 生长期绍鸭代谢能需要量研究[C].第三届全国饲料营养学术研讨会论文集.1998:122-123.
[21]蒋林树,戴贤君,吴跃明,陈雪君,胡伟莲,周钦良,陈安国,刘建新. 生长期绍鸭能量代谢参数的研究[C].第三届全国饲料营养学术研讨会论文集.1998:124.
[22]陈雪君,吴跃明,蒋林树,戴贤君,胡伟莲,周钦良,陈安国,刘建新. 绍鸭蛋白质需要量研究[C].第三届全国饲料营养学术研讨会论文集.1998:125-126.
[23]戴贤君,蒋林树,陈雪君,吴跃明,周钦良,陈安国,刘建新. 产蛋期绍鸭能量代谢和需要量研究[C].第三届全国饲料营养学术研讨会论文集.1998:128-129.
[24]胡伟莲,陈雪君,戴贤君,蒋林树,周钦良,吴跃明,陈安国,刘建新. 绍鸭饲料代谢能测定方法研究[C].第三届全国饲料营养学术研讨会论文集.1998:130.
报纸文章:
1 安全牛奶生产的基础是健康的奶牛 蒋林树; 韩春玲 中国畜牧兽医报 2006-04-30
2 安全牛奶生产的基础是健康的奶牛 蒋林树; 韩春玲 中国畜牧兽医报 2006-04-16