在国内外重要核心期刊发表科研论文190余篇,其中第一作者(通信作者)130余篇,SCI收录58篇: (1)Comparative genome analyses reveal the unique genetic composition and selection signals underlying phenotypic characterization in three Chinese domestic goat breeds. Genetics Selection Evolution, 2019,51(1):70(通信作者) (2)MyoD-induced circular RNA CDR1as promotes myogenic differentiation of skeletal muscle satellite cells.Biochim Biophys Acta Gene Regul Mech, 2019, 1862(8):807-821(通信作者) (3)A Novel Long Noncoding RNA, lncR-125b, Promotes the Differentiation of Goat Skeletal Muscle Satellite Cells by Sponging miR-125b, Front. Genet. ,2019,10:01171(通信作者) (4)Dynamic transcriptomic analysis in hircinelongissimus dorsimuscle from fetal to neonatal development stages, Funct Integr Genomics,2018,18(1):43-54(通信作者) (5)Genome-wide Identification and Characterization of Long Non-coding RNAs in Developmental Skeletal Muscle of Fetal Goat, BMC Genomics,2016 17:666(通信作者) (6)Identification and Expression Profiling of miRNAome in Goat longissimus dorsi Muscle from Prenatal Stages to a Neonatal Stage,PLoS ONE,2016, 11(10): e0165764.(通信作者) (7)Type 3 Iodothyronine Deiodinase in Neonatal Goats:Molecular Cloning, Expression, Localization, and Methylation Signature,Functional & Integrative Genomics,2016,16(4):419-428(通信作者) (8)Screening of Reproduction-Related Single-Nucleotide Variations From MeDIP-Seq Data in Sheep, Molecular Reproduction & Development, 2016,83:958-967(通信作者) (9)Fibroblast Growth Factor 21 induces lipolysis more efficiently than it suppresses lipogenesis in goat adipocytes, Cytotechnology. 2018,70(5):1423-1433.(通信作者) (10)Whole-genome sequencing reveals selection signatures associated with important traits in six goat breeds,Sci Rep. 2018,8(1):10405 .(通信作者) (11)MiR-183 promotes preadipocyte differentiation by suppressing Smad4 in goats, 2018,Gene ,666: 158-164(通信作者) (12)DNA Methylation Landscape of Body Size Variation in Sheep, Scientific Reports, 2015(5):13950(通信作者) (13)Role of microRNA-101a in the Regulation of Goat Skeletal Muscle Satellite Cell Proliferation and Differentiation, Gene, 2015, 572:198-204(通信作者) (14)Molecular Characterization and Different Expression Patterns of the FABP Gene Family During Goat Skeletal Muscle Development. Molecular Biology Reports, 2015,42(1):201-207(通信作者) (15)The molecular Characterization and Temporal–spatial Expression of Myocyte Enhancer factor 2 Genes in the Goat and Their Association with Myofiber Traits, Gene, 2015 ,555: 223-230(通信作者) (16)Comparison of Muscle Characteristics and Underpinning Mechanisms between Texel and Ujumqin Sheep Aged from Day 70 to 135 of Gestation, Livestock Science ,2016,192:8-16(通信作者) (17)CDR1as/miRNAs-Related regulatory mechanisms in muscle development and diseases. Gene, 2020(730):144315(通信作者) (18)Characterization of the Rumen Microbiota and Volatile Fatty Acid Profile of Weaned Goat Kids under Shrub-grassland Grazing and Indoor Feeding.Animals,2020, 10(2), 176(通信作者) (19)The differential proliferation and differentiation ability of skeletal muscle satellite cell in Boer and Nanjiang brown goats, Small Ruminant Research, 2018, 169:99-107(通信作者) (20)Molecular and functional characterization of the adiponectin (AdipoQ) gene in goat skeletal muscle satellite cells, Asian-Australasian Journal of Animal Sciences,2018,31(8): 1088-1097.(通信作者) |