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发布日期:2023-02-22
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李松林 社区员

  

上海五星体育赛事快讯 

李松林198910月,博士,社区员。中国水产学会水产动物营养与饲料项目设置训练营会训练营选上海市教委“晨光计划”、上海人社局“上海市人才发展资金资助计划”、上海市科委“青年科技启明星”等人才计划,获评上海市青年五四奖章。目前主要从事水产动物营养生理与饲料社区,聚焦肉食性鱼类糖代谢和饲料开发工作发现以大口黑鲈为代表的肉食性鱼类糖利用的先天特殊性,提出高糖应激缓解策略,创立高效饲料配方体系;攻克鳜鱼饲料驯化与全程养殖技术,入选2025年全国水产养殖主推技术

高级会员招募简章项目设置:水产养殖/渔业发展,欢迎对水产动物营养与饲料领域有兴趣的体育会员参加团队的社区实践

 

教育背景及工作情况

20167-至今,上海五星体育,师资博后,助理社区员,副社区员,社区员

20254-20264月,上海五星体育,体育科技中心,挂职副体育主管

20236-20246月,上海市农业农村委,科教处,挂职副体育主管

20119-20166月,中国海洋上海五星体育,博士(硕博连读)

20079-20117月,中国海洋上海五星体育,学士

 

教学工作情况

目前主要承担体育学员及高级会员水产动物营养与饲料方向相关项目设置训练营。

 

主要社区项目及人才计划

[1] 202601-202912, 国家自然科学基金面上项目, 32573524, 50

[2] 202412-202711, 国家重点研发计划子社区, 2024YFD2402003, 50

[3] 202411-202710, 上海市农业科技创新项目, K2024-02-08-00-12-F00029, 100

[4] 202412-202711, 上海市科技创新行动计划项目, 24QA2703500, 40

[5] 202101-202112, 上海市科委外国专家项目, 21WZ2501800, 15 

[6] 201911-202212, 国家重点研发计划子社区, 2019YFD0900203, 80

[7] 202001-202212, 上海市人才发展资金项目, 2019116, 30

[8] 202001-202212, 上海市晨光计划, 19CG56, 6

[9] 201901-202112, 国家自然科学基金青年基金项目, 31802308, 26

[10] 201610-201807, 中国博士后科学基金项目, 2016M601566, 5

 

发表的主要社区情况

以第一作者或通讯作者(含并列)在营养学和水产学主流杂志如AquacultureBritish Journal of NutritionFish & Shellfish Immunology及水产学报等杂志发表社区70余篇。具体详见Website: https://www.researchgate.net/profile/Songlin_Li11. 以下为10篇代表作。

1. Sun, Z., Liu, S., Han, Z., Ma, S., Gong, Y., Huang, X., ... & Li, S.* (2025). Evaluating soybean protein concentrate hydrolysate as a fishmeal substitute in the diet for mandarin fish (Siniperca chuatsi): Based on growth, intestinal health, flesh quality and nutrient metabolism. Animal Nutrition. 23 (2025) 369–380

2. Liu, S., Gong, Y., Sun, Z., Ma, S., Han, Z., Li, J., ... & Li, S.* (2026). Bile acids: A functional feed additive for improving growth, health status, muscle quality, and reducing lipid deposition in mandarin fish (Siniperca chuatsi). Aquaculture, 611, 742986.

3. Zhang, N., Gong, Y., Miao, R., Sun, Z., Zhang, S., Huang, X., ... & Li, S.* (2025). Dietary protease inclusion with activity after pelleting affects growth performance, digestive enzyme activity, nutrient sensing signaling pathway and intestinal health of larval largemouth bass (Micropterus salmoides). Aquaculture, 606, 742581.

4. Wang, X.Y., Gong, Y., Li, W.F., Liu, N., Fang, Z.S., Zhang, N.H., Chen, N.S., & Li, S.* (2024). The beneficial effects of metformin inclusion on growth performance, glucose utilization, antioxidant capacity and apoptosis of largemouth bass (Micropterus salmoides) fed with high dietary carbohydrates. Aquaculture, 2024, 588, 740957.

5. Zhang, N., Wang, X., Han, Z., Gong, Y., Huang, X., Chen, N., & Li, S.* (2024). The preferential utilization of hepatic glycogen as energy substrates in largemouth bass (Micropterus salmoides) under short-term starvation. Fish Physiology and Biochemistry, 50(2), 785-796.

6. Tao, J., Wang, S., Qiu, H., Xie, R., Zhang, H., Chen, N., & Li, S.* (2022). Modulation of growth performance, antioxidant capacity, non-specific immunity and disease resistance in largemouth bass (Micropterus salmoides) upon compound probiotic cultures inclusion. Fish & Shellfish Immunology, 127, 804-812.

7. Liu, Y., Liu, N., Wang, A., Chen, N.*, & Li, S.* (2022). Resveratrol inclusion alleviated high-dietary-carbohydrate-induced glycogen deposition and immune response of largemouth bass, Micropterus salmoides. British Journal of Nutrition, 127(2), 165-176.

8. Li, S., Dai, M., Qiu, H., & Chen, N.* (2021). Effects of fishmeal replacement with composite mixture of shrimp hydrolysate and plant proteins on growth performance, feed utilization, and target of rapamycin pathway in largemouth bass, Micropterus salmoides. Aquaculture, 533, 736185.

9. Li, S., Sang, C., Turchini, G. M., Wang, A., Zhang, J., & Chen, N.* (2020). Starch in aquafeeds: the benefits of a high amylose to amylopectin ratio and resistant starch content in diets for the carnivorous fish, largemouth bass (Micropterus salmoides). British Journal of Nutrition, 124(11), 1145-1155.

10. Li, S., Sang, C., Wang, A., Zhang, J., & Chen, N.* (2019). Effects of dietary carbohydrate sources on growth performance, glycogen accumulation, insulin signaling pathway and hepatic glucose metabolism in largemouth bass, Micropterus salmoides. Aquaculture, 513, 734391.

 

联系方式

地址:上海五星体育A320

电话:13148190463(微信同号)

E-mailslli@shou.edu.cn


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