
博士,教授,博士生导师,四川省学术和技术带头人后备人选,。2012年获韩国檀国大学专业动物资源学专业博士学位,现任全国动物营养指导委员会蛋鸡营养分会委员,科技部“三区”人才支持计划科技人员,中国畜牧兽医学会动物营养分会理事,世界家禽协会会员,四川省畜牧兽医学会动物营养与饲料分会常务理事,四川省科技青年联合会理事。研究方向是家禽营养,主要从事营养与蛋鸡卵巢功能和鸡蛋品质调控的研究工作。先后主持主持和主研国家和省部级项目20余项,包括国家重点研发计划子课题3项,国家自然科学基金项目3项。发表高质量SCI论文一百余篇,以第一或通讯作者已发表SCI论文近60余篇,获授权国家发明专利10项,相关研究成果荣获四川省科技进步一等奖1项,三等奖2项,获大北农动物营养奖1项,获全国畜牧兽医学会动物营养学会青年学者论坛优胜奖,获四川省海外高层次人才称号。毕业硕士生13人,获四川农业大学优秀硕士学位论文、国家奖学金和校级优秀研究生等荣誉称号。
研究方向:营养对卵巢功能的调控机制
一、学历和工作简历:
1.学历背景
2002.09-2006.06:中国,四川农业大学,动物科技学院,动物营养与饲料工程专业。
2008.03-2010.03:韩国,檀国大学(Dankook University, 动物资源与动物科学学院,动物资源学专业。
2010.03-现在:韩国,檀国大学(Dankook University, 动物资源与动物科学学院,动物资源学专业。
2.工作简历:
2021.12-至今 四川农业大学, 动物营养研究所,教授
2023.02-2023.10 国家自然科学基金委,兼聘,教授
2014-01-2021.11 四川农业大学, 动物营养研究所,副教授
2012.07-2013.12 四川农业大学,动物营养研究所,助理研究员
二、教学课程:
单胃动物营养学,家禽营养研究进展、饲料学、营养学
三、指导研究生:
毕业研究生13人,目前指导博士和硕士研究生19人。
四、当前主要研究工作:
国家自然科学基金1项和国家十四五重点研发项目2项,以及来自企业的横向项目2项的资助下,研究领域集中在营养对蛋鸡生殖系统健康(卵巢和输卵管)和功能的调控,以提高鸡蛋数量和质量。
五、代表性科研成果:
1.学术论文:(发表的代表性学术论文,15篇以内)
1)Effects of dietary low protein levels and amino acid patterns on production performance, egg quality and intestinal function in laying hens. Poultry Science, 2025, 104,105578.(通讯作者,SCI,IF=4.2)
2) Maternal low-protein diets influence sex-specific growth performance, meat quality, and intestinal morphology of broiler offspring. Poultry Science, 2025, 104,105618.(通讯作者,SCI,IF=4.2)
3) Dietary Saccharomyces cerevisiae fermentation product improved egg quality by modulating intestinal health, ovarian function, and cecal microbiota in post-peak laying hens. Poultry Science, 2025, 104,104979.(通讯作者,SCI,IF=4.2)
4)Comparative analysis of intestinal and reproductive function in older laying hens with three egg laying levels. Frontiers in Microbiology, 2025, 16, fmicb.2025.1582516.(通讯作者,SCI,IF=4.5)
5)The effect of theabrownins on the amino acid composition and antioxidant properties of hen eggs. Poultry Science, 2023,102:102717. (第一作者,SCI,IF=4.1)
6)Dietary 25-hydroxyvitamin D improves productive performance and intestinal health of laying hens under Escherichia coli lipopolysaccharide challenge. Poultry Science, 2023, 102:102371.(第一作者,SCI,IF=4.1)
7)Resveratrol alleviating the ovarian function under oxidative stress by alternating microbiota related tryptophan microbiota related tryptophan-kynurenine pathway. Frontiers in Immunology, 2022, 13: 911381 (第一作者,SCI,IF=8.786)
8)The effect of oxidative stress on the chicken ovary: involvement of microbiota and melatonin interventions. Antioxidants, 2021, 10:1422. (第一作者,SCI,IF=7.675)
9)Dietary tributyrin improves reproductive performance, antioxidant capacity, and ovary function of broiler breeders. Poultry Science, 2021, 100:101429. (第一作者,SCI,IF=4.014)
10)Dietary 25-hydroxy vitamin improves intestinal health and microbiota of laying hens under high stocking density. Poultry Science, 2021, 100:101132. (第一作者,SCI,IF=4.014)
11)Dietary apple pectic oligosaccharide improves reproductive performance, antioxidant capacity, and ovary function of broiler breeders. Poultry Science, 2021, 100:100976. (第一作者,SCI,IF=4.014)
12)Green tea polyphenol epigallocatechin-3-gallate improves the antioxidant capacity of eggs. Food & Function, 2020,11: 534. (第一作者,SCI,IF=5.396)
13)Differential analysis of gut microbiota and effect of dietary Enterococcus Faecium supplementation in broiler breeders with high or low laying performance. Poultry Science, 2021, 100(2):1109-1119. (第一作者,SCI,IF=4.014)
14)Effect of dietary 25-hydroxycholecalciferol supplementation and high stocking density on performance, egg quality, and tibia quality in laying hens, Poultry Science, 2020, 99: 2608-2615. (第一作者,SCI,IF=3.352)
15)Alteration of the antioxidant capacity and gut microbiota under high levels of molybdenum and green tea polyphenols in laying hens. Antioxidants, 2019, 8(10): 503-515. (第一作者,SCI,IF=5.014)
16)Vanadium in high-fat diets sourced from egg yolk decreases growth and antioxidative status of Wistar rats. Animal Nutrition, 2019, 5(3):307-313. (第一作者,SCI,IF=4.492)
17)Effects of dietary supplementation of DL-2-hydroxy-4(methylthio) butanoic acid on antioxidant capacity and its related gene expression in lung and liver of broilers exposed to low temperature. Poultry Science, 2019, 98(1): 341-349. (第一作者,SCI,IF=2.659)
18)Involvement of P38 and ERK1/2 in mitochondrial pathways independent cell apoptosis in oviduct magnum epithelial cells of layers challenged with vanadium. Environmental Toxicology, 2018, 33(12): 1312-1320. (第一作者,SCI,IF=2.649)
19)Epigallocatechin-3-gallate protected vanadium-induced eggshell depigmentation via P38MAPK-Nrf2/HO-1 signaling pathway in laying hens. Poultry Science, 2018, 97:3109-3118. (第一作者,SCI,IF=2.027)
20)Vanadate oxidative and Apoptotic Effect are mediated by MAPK-Nrf2 pathway in layer oviduct magnum epithelial cells. Metallomics, 2017, 9(11): 1562-1575. (第一作者,SCI,IF=4.069)
21)Quantitative proteomic analysis reveals the role of tea polyphenol EGCG in egg whites in response to vanadium stress. Nutrition, 2017, 39-40: 20-29. (第一作者,SCI,IF=3.734)
2.专利
以第一发明人获国家授权发明专利5项,转化专利1项。
六、荣誉及奖励
四川省学术和技术带头人后备人选,颐和青年学者创新奖
七、联系方式:
通讯地址:四川省成都市温江区惠民路211号,邮编:611130
电子信箱: wangjianping@sicau.edu.cn