Evidence of Oocyte Polarity in Bovine; Implications for Intracytoplasmic Sperm Injection and Somatic Cell Nuclear Transfer

被引:2
|
作者
Hosseini, Seyed Morteza [1 ,2 ]
Moulavi, Fariba [2 ]
TanhaieVash, Nima [2 ]
Shams-Esfandabadi, Naser [1 ]
Nasr-Esfahani, Mohammad Hossein [2 ]
Shirazi, Abolfazl [1 ,3 ]
机构
[1] Shahrekord Univ, Res Inst Anim Embryo Technol, Shahrekord, Iran
[2] ACECR, Royan Inst Biotechnol, Reprod Biomed Res Ctr, Dept Reprod Biotechnol, Esfahan, Iran
[3] ACECR, Avicenna Res Inst, Reprod Biotechnol Res Ctr, Tehran, Iran
关键词
Oocyte; Polarity; Transcript; Sperm; Bovine; DEVELOPMENTAL COMPETENCE; MOUSE EMBRYO; BLASTOCYST; PROTEINS; TROPHECTODERM; LINEAGE; ZYGOTES; FATE; AXIS;
D O I
10.22074/cellj.2017.4887
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Objective: We recently demonstrated spatial regionalization of maternal transcripts and proteins within unfertilized ovine oocyte. Here, we investigated the likelihood of oocyte polarity for the first time in bovine. Materials and Methods: In this experimental study, in vitro matured bovine oocytes were used for manual bisection [into oocyte halve that were near-to (HNS) and far-from (FS) spindle] or trisection [into MII-spindle (S), the spindle-side half (NS), and the distal half unassociated with the spindle (FS)]. Prepared pools of oocyte substructures were used for comparative quantitative real-time polymerase chain reaction (RT-qPCR). To map the possible preferential sperm entry point (SEP), the spatial relationship between SEP and MII-spindle was measured 5 hours post-fertilization. Results: The proportional amount of maternal mRNA in S oocyte fragment was estimated to be 6 to 11-fold higher than NS and FS counterparts. The relative abundances of Nanog, Oct4, Fgf4 and Tead4 were significantly higher in HNS oocyte fragment compared t0 FS. The relative abundances of Ctnb, Carm1, Rex1, Sox2 and Cdx2 were comparable between HNS and NS oocyte fragments. FS oocyte fragment possessed significantly higher transcripts of Gata4 compared to HNS. The distribution of certain transcripts related to pluripotency and lineage commitment were different depending upon the region of the oocyte; either enriched at S (Tead4, Nanog, Ctnb and Sox2), NS (Oct4), or FS (Gata6). The SEP in almost (90%) fertilized oocytes was located in MII-hemisphere. Conclusion: The observation of spatial restriction of mRNAs and SEP within MII-oocyte may indicate that the principal forces of oocyte polarity are evolutionary conserved. This may in turn highlight the need for refinements in the methodology of intracytoplasmic sperm injection (where a sperm is injected far from the MII-spindle) and somatic cell nuclear transfer (where a major amount of regulative mRNAs that are associated with MII-spindle is removed during enucleation).
引用
收藏
页码:482 / 491
页数:10
相关论文
共 50 条
  • [1] Effect of volume of oocyte cytoplasm on embryo development after parthenogenetic activation, intracytoplasmic sperm injection, or somatic cell nuclear transfer
    Sayaka, Wakayama
    Satoshi, Kishigami
    Van Thuan, Nguyen
    Hiroshi, Ohta
    Takafusa, Hikichi
    Eiji, Mizutani
    Thuy, Bui Hong
    Masashi, Miyake
    Teruhiko, Wakayama
    [J]. ZYGOTE, 2008, 16 (03) : 211 - 222
  • [2] Development of novel intracytoplasmic sperm injection and somatic cell nuclear transfer techniques for animal reproduction
    Wakayama, Teruhiko
    [J]. ANIMAL SCIENCE JOURNAL, 2011, 82 (01) : 8 - 16
  • [3] Intracytoplasmic sperm injection in bovine:: Effects of oocyte activation, sperm pretreatment and injection technique
    Suttner, R
    Zakhartchenko, V
    Stojkovic, P
    Müller, S
    Alberio, R
    Medjugorac, I
    Brem, G
    Wolf, E
    Stojkovic, M
    [J]. THERIOGENOLOGY, 2000, 54 (06) : 935 - 948
  • [4] Timing of sperm and oocyte nuclear progression after intracytoplasmic sperm injection
    Dozortsev, D
    DeSutter, P
    Rybouchkin, A
    Dhont, M
    [J]. HUMAN REPRODUCTION, 1995, 10 (11) : 3012 - 3017
  • [5] Oocyte activation and parthenogenetic development of bovine oocytes following intracytoplasmic sperm injection
    Li, X
    Hamano, K
    Qian, X
    Funauchi, K
    Furudate, M
    Minato, Y
    [J]. ZYGOTE, 1999, 7 (03) : 233 - 237
  • [6] PhiC31-based Site-Specific Transgenesis System for Production of Transgenic Bovine Embryos by Somatic Cell Nuclear Transfer and Intracytoplasmic Sperm Injection
    Sekhavati, Mohammad Hadi
    Hosseini, Sayed Morteza
    Tahmoorespur, Mojtaba
    Ghaedi, Kamran
    Jafarpour, Farnoosh
    Hajian, Mehdi
    Dormiani, Kyanoosh
    Nasr-Esfahani, Mohammad Hossain
    [J]. CELL JOURNAL, 2018, 20 (01) : 98 - 107
  • [7] Effective Oocyte Vitrification and Survival Techniques for Bovine Somatic Cell Nuclear Transfer
    Park, Min Jee
    Lee, Seung Eun
    Kim, Eun Young
    Lee, Jun Beom
    Jeong, Chang Jin
    Park, Se Pill
    [J]. CELLULAR REPROGRAMMING, 2015, 17 (03) : 199 - 210
  • [8] Experience with oocyte donation and intracytoplasmic sperm injection
    Tsirigotis, M
    Hutchon, S
    Pelekanos, M
    Lawrence, J
    Yazdani, N
    Craft, IL
    [J]. HUMAN REPRODUCTION, 1995, 10 (11) : 2821 - 2823
  • [9] Artificial oocyte activation and intracytoplasmic sperm injection
    Nasr-Esfahani, Mohammad Hossein
    Deemeh, Mohammad Reza
    Tavalaee, Marziyeh
    [J]. FERTILITY AND STERILITY, 2010, 94 (02) : 520 - 526
  • [10] HUMAN OOCYTE ACTIVATION FOLLOWING INTRACYTOPLASMIC INJECTION - THE ROLE OF THE SPERM CELL
    DOZORTSEV, D
    RYBOUCHKIN, A
    DESUTTER, P
    QIAN, C
    DHONT, M
    [J]. HUMAN REPRODUCTION, 1995, 10 (02) : 403 - 407