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成果论著
发布时间:2020-02-20

英文论文(#共同一作,*通讯作者)

1. Gao X, Wang S, Wang YF, Li  S, Wu SX, Yan RG, Zhang YW, Wan RD, He Z, Song RD, Zhao XQ*, Wu DD*, Yang QE*. Long read genome assemblies complemented by single cell RNA-sequencing reveal genetic and cellular mechanisms underlying the adaptive evolution of Yak. Nature Communications, 2022;13(1): 4887

2. Li S, Yang QE*. Hypobaric hypoxia exposure alters transcriptome in mouse testis and impairs spermatogenesis in offspring. Gene.2022;823:164390. 

3. Tao HP, Jia GX, Zhang XN, Wang YJ, Li BY, Yang QE*. Paternal hypoxia exposure impairs fertilization process and preimplantation embryo development. Zygote, 2022; 30(1):48-56

4. Li LL, Ma, SK, Peng W, Fang YG, Duo HR, Fu HY, Jia GX*. Genetic diversity and population structure of Tibetan sheep breeds determined by whole genome resequencing. Trop Anim Health Prod. 2021; 53(1):174.

5. Jia GX, Lin Z, Yan RG, Wang GW, Zhang XN, Li C, Tong MH, Yang QE*. Wtap function in Sertoli cells is essential for sustaining spermatogonial stem cell niche. Stem Cell Reports2020; 15(4):968-982

6. Yan RG, Li BY, Yang QE*. Function and transcriptomic dynamics of Sertoli cells during prospermatogonia development in mouse testis. Reprod Biol. 2020:S1642-431X(20)30273-4. 

7. Yan RG, Yang QL, Yang QE*. E4 Transcription Factor 1 (E4F1) Regulates Sertoli Cell Proliferation and Fertility in Mice. Animals. 2020;10(9):E1691. 

8. Li YC, Wang GW, Xu SR, Zhang XN, Yang QE*. The expression of histone methyltransferases and distribution of selected histone methylations in testes of yak and cattle-yak hybrid. Theriogenology. 2020;144: 164-173.

9. He Z, Yan RG, Zhang XN, Yang QE*. Ring 1 and YY1 Binding Protein Is Expressed in Murine Spermatocytes but Dispensable for Spermatogenesis. Genes. 2020; 11(1).

10. Wang GW, LI YC, Yang QL, Xu SR, Ma SK, Yan RG, Jia GX, Ai DQ, Yang QE*. Gene expression dynamics during the gonocyte to spermatogonia transition in the domestic yak. J Animal Sci & Biotech, 2019;10:64.

11. Wang YJ, Jia GX, Yan RG, Guo SC, Tian F, Ma JB, Zhang RN, Li C, Zhang LZ, Du YR*, Yang QE*. Testosterone-retinoic acid signaling directs spermatogonial differentiation and seasonal spermatogenesis in the Plateau pika. Theriogenology. 2019;125:74-82.

12. Zhang RN, Pang B, Xu SR, Wan PC, Guo SC, Ji HZ, Jia GX, Hu LY, Zhao XQ*, Yang QE*. The CXCL12-CXCR4 signaling promotes oocyte maturation by regulating cumulus expansion in sheep. Theriogenology. 2018;107:85-94. 

13. Helsel AR#, Yang QE#, Oatley MJ, Lord T, Sablitzky F, Oatley JM*.  ID4 levels dictate the stem cell state in mouse spermatogonia. Development. 2017 Feb 15;144(4):624-634.

14. Yang QE, Ozawa M, Zhang K, Johnson SE, Ealy AD*. The requirement for protein kinase C delta (PRKCD) during preimplantation bovine embryo development. Reprod Fertil Dev. 2016;28(4):482-90. doi: 10.1071/RD1416 (Cover Article).

15. Yang QE, Nagaoka SI, Gwost I, Hunt PA, Oatley JM.  Inactivation of Retinoblastoma Protein (Rb1) in the Oocyte: Evidence That Dysregulated Follicle Growth Drives Ovarian Teratoma Formation in Mice. PLoS Genet. 2015;11(7):e1005355

16. Yang QE and Oatley JM. Spermatogonial stem cell functions in physiological and pathological conditions. Cur Topics in Dev Biol. 2014,107: 235-267.

17. Yang QE and Oatley JM. Eearly Interactions between Germ cells and Sertoli cells. Sertoli Cell Biology. Chapter 3, Edited by MD Griswold, 2014

18. Yang QE, Racicot K, Kaucher A, Oatley MJ & Oatley JM*. MicroRNAs 221 and 222 regulate the undifferentiated state in mammalian male germ cells. Development. 2013; 140 (2): 280-290.

19. Yang QE, Gwost I, Oatley MJ & Oatley JM*.  Retinoblastoma Protein (RB1) controls fate determination in stem cells and progenitors of the mouse male germline. Biol Reprod. 2013; 89 (5):113.

20. Yang QE, Kim D, Kuacher A, Oatley MJ & Oatley JM*. CXCL12/CXCR4 signaling is essential for the maintenance of mouse spermatogonial stem cells.  Journal of Cell Science. 2013; 15;126(Pt 4):1009-20.

21. Yang QE, Fields SD, Zhang K, Ozawa M, Johnson SE & Ealy AD*.  Fibroblast growth factor 2 promotes primitive endoderm development in bovine blastocyst outgrowths. Biol Reprod. 2011; 85(5):946-53.

22. Yang QE, Johnson SE & Ealy AD*.  Protein kinase C delta mediates fibroblast growth factor- 2-induced interferon-tau expression in bovine trophoblast. Biol Reprod. 2011;   84(5):933-43.

23. Yang QE, Giassetti MI & Ealy AD*.  Fibroblast growth factors activate mitogen-activated protein kinase pathways to promote migration in ovine trophoblast cells. Reproduction. 2011; 141(5):707-714.

24. Yan CL#, Yang QE#, Zhou GB, Hou YP, Zhao XM, Fan ZQ, Liu MQ, Liu L, Zhu SE*. Open-pulled straw (OPS) vitrification of in vitro fertilised mouse embryos at various stages.Acta Vet Hung. 2008;56(2):245-53.

25. Yang QE, Hou YP, Zhou GB, Yang ZQ, Zhu SE*. Stepwise in-straw dilution and direct transfer using open pulled straws (OPS) in the mouse: a potentail model for field manipulaiton of vitrified embryos. J Repro & Dev. 2007;53(2):21. 

中文论文(*通讯作者)

1.安晓宇,王玉军,李永昌,贾功雪,杨其恩*.高原鼢鼠精子发生的形态学特征和关键调控因子探究.《兽类学报》 2020;40(5):435-445.

2.贾功雪,丁路明,徐尚荣,方有贵,付弘赟,杨其恩*.青藏高原牦牛遗传资源保护和利用:问题与展望.《生态学报》 2020;40(18):6314-6323

参编专著

1.闫荣格,张瑞娜,杨其恩.精原干细胞功能维持和冷冻保存研究进展.《动物配子与胚胎冷冻保存原理与应用》主编: 朱士恩.科学出版社,2016

2.艾德强等《青海牦牛》青海民族出版社,2022

合作论文

1. Ealy AD*, Yang QE. Control of interferon-tau expression duirng early pregnancy in ruminants. Am J Reprod Immunol. 2009; 61(2):95-106.

2. Tong MH, Yang QE, Davis JC & Griswold MD.  Retinol dehydrogenase 10 is indispensible for spermatogenesis in juvenile males.  PNAS. 2013;110(2):543-8.

3. Chan F, Oatley MJ, Kaucher AV, Yang QE, Bieberich CJ, Shashikant CS, Oatley JM. Functional and molecular features of the Id4+ germline stem cell population in mouse testes. Genes Dev. 2014;28(12):1351-62. 

4. Oatley MJ, Kaucher AV, Yang QE, Waqas MS, Oatley JM.  Conditions for Long-Term Culture of Cattle Undifferentiated Spermatogonia.  Biol Reprod. 2016 Jul;95(1):14. 

5. Xu SR,  Peng W, Yang QL, Jia GX, Ma SK,  Yang QE, Zhang J*, Zhang RN*. Transcriptome analysis revealed key signlaing networks regulating ovarian activities in the domestic yak. Theriogenology. 2020; 147:50-56. 

 
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