数字农科院2.0

Proteomic Analysis Of Sheep Uterus Reveals Its Role In Prolificacy

文献类型: 外文期刊

作者: La, YF; Tang, JS; Guo, XF; Zhang, LP; Gan, SQ; Zhang, XS; Zhang, JL; Hu, WP; Chu, MX

作者机构:

关键词: Sheep; Protein; Prolificacy; Rna-Seq; Uterus

期刊名称: JOURNAL OF PROTEOMICS

ISSN: 1874-3919

年卷期: 2020 年 210 卷

页码:

收录情况: JCR(2021版)

摘要: Small Tail Han sheep have attracted attention for their high fecundity and year-round estrus. However, the molecular mechanisms of this fecundity are unknown. Polymorphism of the FecB gene has been shown to be associated with the ovulation rate and litter size in sheep. In this study, we used tandem mass tag quantitative proteomic techniques to identify the differentially abundant proteins in polytocous and monotocous Small Tail Han sheep (FecB + +) uterine tissues in the follicular and luteal phases. In total, 41 and 43 differentially abundant proteins were identified in the follicular and luteal phases, respectively. Correlation analysis between the transcriptome and proteome revealed a positive correlation at the two omics levels of prolificacy. GO and KEGG pathway analyses indicated that the mRNAs and proteins upregulated in the polytocous group relative to the monotocous group are involved in sphingolipid metabolism and amino acid metabolism, and may be important in maintaining uterine functions and increasing the embryo survival rate during the estrus cycle of polytocous sheep. In conclusion, our work provides a prospective understanding of the molecular mechanism underlying the high prolificacy of Small Tail Han sheep. Significance: Fecundity critically affects the profitability of sheep production, but the genetic mechanism of high-prolificacy is still unclear in sheep. We identified potential signaling pathways and differentially abundant proteins associated with reproductive performance through a combination of sheep uterus tissues proteome and transcriptome analyses. These findings will facilitate a better revealing the mechanism and provide possible targets for molecular design breeding for the formation of polytocous traits in sheep.

分类号:

  • 相关文献

[1]Differential Expression Of Circular Rnas I.n Polytocous And Monotocous U terus During The Reproductive Cycle Of Sheep. La, YF, Tang, JS, Di, R, Wang, XY, Liu, QY, Zhang, LP, Zhang, XS, Zhang, JL, Hu, WP, Chu, MX. 2019

[2]Identification And Characterization Of Mrnas A.nd Lncrnas In The U terus Of Polytocous And Monotocous Small Tail Han Sheep (Ovis Aries). La, YF, Tang, JS, He, XY, Di, R, Wang, XY, Liu, QY, Zhang, LP, Zhang, XS, Zhang, JL, Hu, WP, Chu, MX. 2019

[3]Transcriptome Changes In The Mink U.terus During Blastocyst Dormancy A nd Reactivation. Cao, XY, Zhao, JP, Liu, Y, Ba, HX, Wei, HJ, Zhang, YF, Wang, GW, Murphy, BD, Xing, XM. 2019

[4]The Genetic Mechanism Of High P.rolificacy In Small Tail H an Sheep By Comparative Proteomics Of Ovaries In The Follicular And Luteal Stages. Tang, JS, Hu, WP, Chen, S, Di, R, Liu, QY, Wang, XY, He, XY, Gan, SQ, Zhang, XS, Zhang, JL, Chen, W, Chu, MX. 2019

[5]Pineal gland transcriptomic profiling reveals the differential regulation of lncRNA and mRNA related to prolificacy in STH sheep with two FecB genotypes. Chunyan Li,Xiaoyun He,Zijun Zhang,Chunhuan Ren,Mingxing Chu. 2021

[6]Transcriptomic Analysis Provides Novel Insights I.nto Heat Stress Responses I n Sheep. Lu, ZK, Chu, MX, Li, Q, Jin, ML, Fei, XJ, Ma, L, Zhang, LP, Wei, CH. 2019

[7]赖氨酸对绵羊GHR基因表达的影响(英文). 李建升,程胜利,韩向敏,冯瑞林,岳耀敬,杨博辉,刘建斌. 2009

[8]基于ssRNA-seq研究差异基因、NATs对藏羊高原低氧适应的调控. 岳耀敬,冯瑞林,王天翔,郭婷婷,李桂英,孙晓萍,刘建斌,李文辉,牛春娥,郭健,李范文,杨博辉. 2015

[9]甘蓝型油菜角果数突变体基因的定位及候选基因分析. 赵改会,,李书宇,, 詹杰鹏,,李晏斌,,师家勤,,王新发,,王汉中. 2021

[10]基于高通量测序的水貂胚胎滞育期和激活期卵巢转录组分析. 韩玉萍,赵向远,范冰峰,刘理想,邵静,许保增. 2021

[11]Quantitative proteomics reveals tissue-specific toxic mechanisms for acute hydrogen sulfide-induced injury of diverse organs in pig. Liu Z., Chen L., Gao X., Zou R., Meng Q., Fu Q., Xie Y., Miao Q., Chen L., Tang X., Zhang S., Zhang H., Schroyen M.. 2022

[12]Comprehensive Analysis Of Differentially Expressed Profiles Of Mrna, Lncrna, And Circrna In The Uterus Of Seasonal Reproduction Sheep. La, YF, He, XY, Zhang, LP, Di, R, Wang, XY, Gan, SQ, Zhang, XS, Zhang, JL, Hu, WP, Chu, MX. 2020

[13]Polymorphism Of Inhibin A Gene A.nd Its Relationship With L itter Size In Chinese Indigenous Goat. Liu, QY, He, YQ, Ge, Y, Chu, MX, Jin, M, Zhang, YJ, Wang, JY, Ma, XK, Di, R, Huang, DW, Li, N. 2017

[14]Expression Analysis Of Bmpr1B, Bmp15, And Gdf9 In Prolific And Non-Prolific Sheep Breeds During The Follicular Phase. Tang, JS, Hu, WP, Di, R, Wang, XY, Zhang, XS, Zhang, JL, Liu, QY, Chu, MX. 2019

[15]A High Density Slaf-Seq Snp G.enetic Map And Qtl F or Seed Size, Oil And Protein Content In Upland Cotton. Yang, Le,Wang, Wenwen,Teng, Zhonghua,Yang, Peng,Ali, Iftikhar,Zhang, Zhengsheng,Zhang, Jian,Sun, Ying,Liu, Dexin,Liu, Dajun,Guo, Kai,Liu, Fang,Ou, Yuncan,Ma, Junrui,Liu, Tianpeng,Cai, Xiaoyan. 2019

[16]Development Of Two-Dimensional Liquid Chromatography C.oupled With Tandem Mass S pectrometry For Identification Of Extracted Proteins Of Rice Leaves: Hydrophilic Interaction-Reversed-Phase Approach. Gao Huan-Huan,Chen Ming-Xue,Chai Shuang-Shuang,He Qiao,Lin Xiao-Yan,Ma You-Ning,Qin Mei-Ling,Zhang Han-Tong,Chen Ming-Xue. 2018

[17]Effect of Methionine Supplementation on Serum Metabolism and the Rumen Bacterial Community of Sika Deer (Cervus nippon). Wu Y., Guo X., Zhao D., Xu C., Sun H., Yang Q., Wei Q., Si H., Wang K., Zhang T.. 2022

[18]Growth Performance, Nutrient Digestibility, And Slaughter Traits Of Male Fattening Lambs Under Different Feeding Standards. Ma, T, Wan, F, Yang, D, Deng, KD, Yang, KL, Diao, QY. 2019

[19]Bio-Barcode Detection Technology And Its Research Applications: A Review. Wang, YS, Jin, MJ, Chen, G, Cui, XY, Zhang, YD, Li, MJ, Liao, Y, Zhang, XY, Qin, GX, Yan, FY, Abd El-Aty, AM, Wang, J. 2019

[20]Effects Of Low-Protein Diets On G.rowth Performance And Carcass Y ield Of Growing White Pekin Ducks. Xie, M, Jiang, Y, Tang, J, Wen, ZG, Zhang, Q, Huang, W, Hou, SS. 2017

作者其他论文 更多>>