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Molecular Biotechnology|August 8, 2024
Revealing Dynamics of Protein Phosphorylation: A Study on the Cashmere Fineness Disparities in Liaoning Cashmere GoatsYanjun Qiao, Ming Gu, Xiaowei Wang, et al.Food Chemistry: X|December 25, 2023
Analysis for lipid nutrient differences in the milk of 13 species from a quantitative non-targeted lipidomics perspectiveYanzhi Wu, Yinggang Sun, Rui Chen, et al.Bioactive Materials|April 13, 2022
Reducing relapse and accelerating osteogenesis in rapid maxillary expansion using an injectable mesoporous bioactive glass/fibrin glue composite hydrogelHanjiang Zhao, Xiangyu Wang, Anting Jin, et al.Archives Animal Breeding|February 16, 2026
Association analysis of single nucleotide polymorphisms in the sheep <i>FecB</i> gene with reproductive and body size performanceLingchao Kong, Shuaitong Li, Yuan Pan, et al.Molecules (Basel, Switzerland)|September 9, 2022
Metabolomic Analysis and MRM Verification of Coarse and Fine Skin Tissues of Liaoning Cashmere GoatYanan Xu, Weidong Cai, Rui Chen, et al.Animal Biotechnology|March 7, 2022
Transcriptomics analysis of cashmere fineness functional genesYuting Qin, Yanan Xu, Yu Zhang, et al.Animal Biotechnology|January 12, 2019
LncRNA-000133 from secondary hair follicle of Cashmere goat: identification, regulatory network and its effects on inductive property of dermal papilla cellsYuanyuan Zheng, Zeying Wang, Yubo Zhu, et al.Food Chemistry: X|March 11, 2024
Common proteins analysis of different mammals' mature milk by 4D-Label-FreeRui Chen, Yinggang Sun, Yanzhi Wu, et al.Animal Biotechnology|May 28, 2024
Knockdown of miR-361-5p promotes the induced activation of SHF-stem cells through FOXM1 mediated Wnt/β-catenin pathway in cashmere goatsRuqing Xu, Man Bai, Yixing Fan, et al.Animal Bioscience|November 18, 2022
N6-Methyladenosine modification (m6A) of circRNA-ZNF638 contributes to the induced activation of SHF stem cells through miR-361-5p/Wnt5a axis in cashmere goatsRonghuan Yin, Ronglan Yin, Man Bai, et al.Pageof 9