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TserangDonko Mipam

Showing results (1-10 of 13) with videos related to

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Molecular Biology Reports|February 25, 2014
Isolation and characterization of polymorphic microsatellites in the genome of yak (Bos grunniens)Xin Cai, TserangDonko Mipam, Fangfang Zhao, et al.
Molecular Biology Reports|November 20, 2010
Abundant variations of MC4R gene revealed by Phylogenies of Yak (Bos grunniens) and other mammalsXin Cai, TserangDonko Mipam, Hairong Zhang, et al.
Data in Brief|July 2, 2016
Comparative testis proteome dataset between cattleyak and yakFang Yang, TserangDonko Mipam, Lei Sun, et al.
Theriogenology|June 2, 2026
Expression patterns and proliferative effect of OTUD6A on Sertoli cells and Leydig cells in cattleyakWenjing Dong, Peng Zhang, Zhenhua Shen, et al.
Functional & Integrative Genomics|October 9, 2021
Testis transcriptome profiling identified lncRNAs involved in spermatogenic arrest of cattleyakXin Cai, Shixin Wu, TserangDonko Mipam, et al.
International Journal of Biological Sciences|January 14, 2020
Bovid microRNAs involved in the process of spermatogonia differentiation into spermatocytesChuanfei Xu, Mujahid Ali Shah, TserangDonko Mipam, et al.
Plos One|February 25, 2020
Testis transcriptome profiling identified genes involved in spermatogenic arrest of cattleyakShixin Wu, TserangDonko Mipam, Chuanfei Xu, et al.
Scientific Reports|January 14, 2018
Differentially expressed microRNAs between cattleyak and yak testisChuanfei Xu, Shixin Wu, Wangsheng Zhao, et al.
Theriogenology|November 21, 2016
Comparative analysis of testis transcriptomes associated with male infertility in cattleyakXin Cai, Shumin Yu, TserangDonko Mipam, et al.
Theriogenology|May 7, 2026
Distinct testicular somatic cell profiles in cattle-yak with spermatogenic arrest compared to yakPeng Zhang, Zhenhua Shen, Shixin Wu, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Molecular Biology Reports|February 25, 2014
Isolation and characterization of polymorphic microsatellites in the genome of yak (Bos grunniens)Xin Cai, TserangDonko Mipam, Fangfang Zhao, et al.
Molecular Biology Reports|November 20, 2010
Abundant variations of MC4R gene revealed by Phylogenies of Yak (Bos grunniens) and other mammalsXin Cai, TserangDonko Mipam, Hairong Zhang, et al.
Data in Brief|July 2, 2016
Comparative testis proteome dataset between cattleyak and yakFang Yang, TserangDonko Mipam, Lei Sun, et al.
Theriogenology|June 2, 2026
Expression patterns and proliferative effect of OTUD6A on Sertoli cells and Leydig cells in cattleyakWenjing Dong, Peng Zhang, Zhenhua Shen, et al.
Functional & Integrative Genomics|October 9, 2021
Testis transcriptome profiling identified lncRNAs involved in spermatogenic arrest of cattleyakXin Cai, Shixin Wu, TserangDonko Mipam, et al.
International Journal of Biological Sciences|January 14, 2020
Bovid microRNAs involved in the process of spermatogonia differentiation into spermatocytesChuanfei Xu, Mujahid Ali Shah, TserangDonko Mipam, et al.
Plos One|February 25, 2020
Testis transcriptome profiling identified genes involved in spermatogenic arrest of cattleyakShixin Wu, TserangDonko Mipam, Chuanfei Xu, et al.
Scientific Reports|January 14, 2018
Differentially expressed microRNAs between cattleyak and yak testisChuanfei Xu, Shixin Wu, Wangsheng Zhao, et al.
Theriogenology|November 21, 2016
Comparative analysis of testis transcriptomes associated with male infertility in cattleyakXin Cai, Shumin Yu, TserangDonko Mipam, et al.
Theriogenology|May 7, 2026
Distinct testicular somatic cell profiles in cattle-yak with spermatogenic arrest compared to yakPeng Zhang, Zhenhua Shen, Shixin Wu, et al.
Pageof 2