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Nutrients|February 27, 2026
Metagenomics and Machine Learning Identify TMA-Producing <i>Serratia</i> Induced by High-Fat/Choline Diet: A Novel Obesity Target for TMAZhuo Wang, Jiaying Wei, Zixin Huang, et al.Lipids in Health and Disease|December 13, 2016
Mammary inflammatory gene expression was associated with reproductive stage and regulated by docosahexenoic acid: in vitro and in vivo studiesSen Lin, Yalin Zhang, Yanrong Long, et al.Animals : an Open Access Journal From MDPI|June 2, 2019
Effect of Sweet Potato Vine on the Onset of Puberty and Follicle Development in Chinese Meishan GiltsPan Zhang, Meng Cao, Jian Li, et al.Food Chemistry|March 1, 2022
Targeted and untargeted metabolomic analyses and biological activity of Tibetan teaYuntao Liu, Weimin Huang, Changyi Zhang, et al.Journal of Animal Physiology and Animal Nutrition|August 5, 2020
Effects of silymarin supplementation during transition and lactation on reproductive performance, milk composition and haematological parameters in sowsXiaoJun Jiang, Sen Lin, Yan Lin, et al.Food Chemistry|April 17, 2025
Digestive characteristics of Tibetan tea polyphenols and polysaccharides in vitro and their effects on gut microbiotaZhen Zeng, Chunping Jiang, Fengshi Deng, et al.Nutrition (Burbank, Los Angeles County, Calif.)|November 14, 2017
Maternal methyl donor supplementation during gestation counteracts bisphenol A-induced oxidative stress in sows and offspringDaolin Mou, Jun Wang, Hong Liu, et al.Plos One|December 10, 2016
Detection of Placental Proteomes at Different Uterine Positions in Large White and Meishan Gilts on Gestational Day 90Long Che, Mengmeng Xu, Zhenguo Yang, et al.BMC Genomics|March 2, 2017
Maternal nutrition modulates fetal development by inducing placental efficiency changes in giltsLong Che, ZhenGuo Yang, MengMeng Xu, et al.Journal of Agricultural and Food Chemistry|June 14, 2019
Mammary Protein Synthesis upon Long-Term Nutritional Restriction Was Attenuated by Oxidative-Stress-Induced Inhibition of Vacuolar H<sup>+</sup>-Adenosine Triphosphatase/Mechanistic Target of Rapamycin Complex 1 SignalingHeju Zhong, Yumo Song, Peng Wang, et al.Pageof 27