Maternal dietary supplementation of arginine increases the ratio of total cloned piglets born to total transferred cloned embryos by improving the pregnancy rate of recipient sows.
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L. Hong | E. Zheng | Gengyuan Cai | Zhenfang Wu | Ting Gu | Zheng Xu | Jie Yang | Dewu Liu | Junsong Shi | Zicong Li | Huaqiang Yang | Chengcheng Zhao | Zheng Ao | F. zeng | Chengfa Zhao | Zhimin Yue
[1] L. Che,et al. Effects of dietary arginine supplementation on reproductive performance and immunity of sows , 2018 .
[2] E. Zheng,et al. Birth weight, umbilical and placental traits in relation to neonatal loss in cloned pigs. , 2017, Placenta.
[3] H. Niemann. Epigenetic reprogramming in mammalian species after SCNT-based cloning. , 2016, Theriogenology.
[4] H. Callesen,et al. In vitro manipulation techniques of porcine embryos: a meta-analysis related to transfers, pregnancies and piglets. , 2015, Reproduction, fertility, and development.
[5] Guoyao Wu,et al. Analysis of l-homoarginine in biological samples by HPLC involving precolumn derivatization with o-phthalaldehyde and N-acetyl-l-cysteine , 2015, Amino Acids.
[6] Xiaoyan He,et al. Influence of embryo handling and transfer method on pig cloning efficiency. , 2015, Animal reproduction science.
[7] P. Dengke,et al. Epigenetic reprogramming by somatic cell nuclear transfer: questions and potential solutions. , 2014, Yi chuan = Hereditas.
[8] Guoyao Wu,et al. Analysis of polyamines in biological samples by HPLC involving pre-column derivatization with o-phthalaldehyde and N-acetyl-l-cysteine , 2014, Amino Acids.
[9] Guoyao Wu,et al. Dietary supplementation with l-arginine between days 14 and 25 of gestation enhances embryonic development and survival in gilts , 2014, Amino Acids.
[10] Guoyao Wu,et al. Impacts of arginine nutrition on embryonic and fetal development in mammals , 2013, Amino Acids.
[11] Zhenfang Wu,et al. Effects of donor fibroblast cell type and transferred cloned embryo number on the efficiency of pig cloning. , 2013, Cellular reprogramming.
[12] J. Zentek,et al. Influence of fermentable carbohydrates or protein on large intestinal and urinary metabolomic profiles in piglets. , 2012, Journal of Animal Science.
[13] Xin Wu,et al. Effect of dietary arginine and N-carbamoylglutamate supplementation on reproduction and gene expression of eNOS, VEGFA and PlGF1 in placenta in late pregnancy of sows. , 2012, Animal reproduction science.
[14] G. Burton,et al. Imprinted genes and the epigenetic regulation of placental phenotype. , 2011, Progress in biophysics and molecular biology.
[15] Guoyao Wu,et al. Dietary l-arginine supplementation enhances placental growth and reproductive performance in sows , 2011, Amino Acids.
[16] G. Turecki,et al. Polyamines are implicated in the emergence of the embryo from obligate diapause. , 2011, Endocrinology.
[17] Xilong Li. Regulation of Porcine Conceptus Survival and Growth by L-arginine , 2011 .
[18] J. Berard,et al. Effects of dietary l-arginine supplementation to gilts during early gestation on foetal survival, growth and myofiber formation. , 2010, Animal : an international journal of animal bioscience.
[19] R. Prather,et al. Effect of epigenetic regulation during swine embryogenesis and on cloning by nuclear transfer , 2010, Cell and Tissue Research.
[20] Y. Mu,et al. Aberrant expression and methylation status of putatively imprinted genes in placenta of cloned piglets. , 2010, Cellular reprogramming.
[21] Ji-Long Liu,et al. Polyamines are essential in embryo implantation: expression and function of polyamine-related genes in mouse uterus during peri-implantation period. , 2008, Endocrinology.
[22] Jin-Hoi Kim,et al. Comparative proteomic analysis associated with term placental insufficiency in cloned pig , 2007, Proteomics.
[23] Guoyao Wu,et al. Dietary L-arginine supplementation enhances the reproductive performance of gilts. , 2007, The Journal of nutrition.
[24] Guoyao Wu,et al. Evidence for altered placental blood flow and vascularity in compromised pregnancies , 2006, The Journal of physiology.
[25] B. Kemp,et al. Progenos in sowsTM increases number of piglets born , 2006 .
[26] J. Tash,et al. Investigation of the role of nitric oxide synthase 2 in pregnancy using mutant mice. , 2002, Reproduction.
[27] A. Jablonka-Shariff,et al. Abnormal estrous cyclicity after disruption of endothelial and inducible nitric oxide synthase in mice. , 1999, Biology of reproduction.