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The Science of the Total Environment|June 18, 2022
Prenatal fine particulate matter exposure associated with placental small extracellular vesicle derived microRNA and child neurodevelopmental delaysPengpeng Wang, Yuhan Zhou, Yingya Zhao, et al.Biotechnology for Biofuels and Bioproducts|June 12, 2023
Systematic approaches to C-lignin engineering in Medicago truncatulaChan Man Ha, Luis Escamilla-Trevino, Chunliu Zhuo, et al.Ebiomedicine|June 17, 2020
The Inhibition of Protein Kinase C β Contributes to the Pathogenesis of Preeclampsia by Activating AutophagyHuanqiang Zhao, Lili Gong, Suwen Wu, et al.Placenta|November 17, 2020
Differentially expressed circular RNAs and the competing endogenous RNA network associated with preeclampsiaBo Ma, Huanqiang Zhao, Lili Gong, et al.Proceedings of the National Academy of Sciences of the United States of America|February 16, 2011
Genetic manipulation of lignin reduces recalcitrance and improves ethanol production from switchgrassChunxiang Fu, Jonathan R Mielenz, Xirong Xiao, et al.Plant Biotechnology Journal|August 23, 2018
Gene regulatory networks for lignin biosynthesis in switchgrass (Panicum virgatum)Xiaolan Rao, Xin Chen, Hui Shen, et al.Clinical and Translational Medicine|July 13, 2024
A hidden proteome encoded by circRNAs in human placentas: Implications for uncovering preeclampsia pathogenesisHuanqiang Zhao, Yu Xiong, Zixiang Zhou, et al.The Plant Cell|November 29, 2013
A genomics approach to deciphering lignin biosynthesis in switchgrassHui Shen, Mitra Mazarei, Hiroshi Hisano, et al.Biotechnology for Biofuels|January 5, 2018
Development and use of a switchgrass (Panicum virgatum L.) transformation pipeline by the BioEnergy Science Center to evaluate plants for reduced cell wall recalcitranceRichard S Nelson, C Neal Stewart, Jiqing Gou, et al.Pageof 5