Manman Shen
Jiangsu University
18 Papers
9 Citations
Manman Shen is an academic researcher from Jiangsu University. The author has contributed to research in topics: Biology & Gene. The author has an hindex of 5, co-authored 18 publications. Previous affiliations of Manman Shen include Yangzhou University.
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Papers
Genetic parameters of feed efficiency traits in laying period of chickens
Jingwei Yuan,Dou Taocun,Meng Ma,Guoqiang Yi,Sirui Chen,Lujiang Qu,Manman Shen,Qu Liang,Wang Kehua,Ning Yang +9 more
TL;DR: The results indicate that selection for low RFI could reduce FI without significant changes in EM, while selection on FCR will increase EM, and the foundation for genetic improvement of feed efficiency during the laying period of chickens is laid.
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Comparison of dynamic change of egg selenium deposition after feeding sodium selenite or selenium-enriched yeast.
TL;DR: The dietary Se was gradually transferred into eggs with the extension of the experimental duration and the deposition rate of Se in the eggs from hens fed a SY‐supplemented diet was much more rapid than that from he chickens fed a SS‐supplementsed diet, and the organic Se from SY had higher bioavailability as compared to inorganic Se from SS.
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Effects of energy-restricted feeding during rearing on sexual maturation and reproductive performance of Rugao layer breeders.
J. Lu,Y.F. Li,Lujiang Qu,Meihu Ma,X.D. Yang,Manman Shen,X.G. Wang,J. Guo,Y.P. Hu,Dou Taocun,S.M. Li,Zhanjun Yang,Feng Gao,Wang Kehua +13 more
TL;DR: In conclusion, moderate energy restriction from 8 to 18 wks of age increased egg weight as well as the production of setting eggs in native layer breeders throughout the laying period, without adverse effects on productive performance from 18 to 52 weks of age, or fertility and hatchability at 52 wk's of age.
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1-Deoxynojirimycin from mulberry leaves changes gut digestion and microbiota composition in geese.
TL;DR: Changes in the digestive system caused by 1-deoxynojirimycin seriously affected the metabolism of nutrients in geese and reduced their growth performance.
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Integrative analysis of circRNA/miRNA/mRNA regulatory network reveals the potential immune function of circRNAs in the Bombyx mori fat body.
Haotong Yin,Shaolun Zhang,Manman Shen,Zhengdong Zhang,Haoling Huang,Zhimeng Zhao,Xijie Guo,Ping Wu +7 more
TL;DR: In this paper, differentially expressed (DE)circRNAs, microRNAs(miRNAs), and mRNAs in the B. mori fat body in response to BmNPV infection were identified.
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