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Three-to-5-day weaning-to-estrus intervals do not affect neither efficiency of collection nor in vitro developmental ability of in vivo-derived pig zygotes

机译:三〜5天的断奶间隔不影响集体源性猪Zygotes的收集效率也不影响

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摘要

An efficient system to collect large numbers of vital zygotes is a pre-requisite for application of zygote genome-editing technology, including development of efficient models for xenotransplantation using pigs. Owing to the sub-optimal in vitro production of zygotes in pigs, efficient collection of in vivo developed zygotes is required. Timing of ovulation is a key factor to sustain efficiency since the interval between pronuclear formation and the first division is very short in pigs. The weaning-to-estrus interval can, due to its inverse relation with length of estrus and time of ovulation, interfere with ovulation and make it asynchronous, which reduces the probability of obtaining zygotes. This retrospective study compared the effects of three weaning-to-estrus intervals of 3, 4 or 5 days on zygote collection efficiency in a total of 17 trials over a 3-year period including 223 sows. Donor sows in groups of 10-15 animals were super-ovulated with eCG 24 h after weaning and those in estrus at 48-72 h post-eCG were immediately treated with hCG, followed by insemination 6 and 24 h thereafter. Collected structures during laparotomy on Day 2 (Day 0: onset of estrus) were morphologically evaluated and only those with a single cell and two visible polar bodies were considered as zygotes. Zygotes were injected with CRISPRCas9 editor mixture and cultured for 6 days to evaluate their developmental ability against non-injected control zygotes. Of all recovered structures (N = 5,468), 67.4%, 30.8% and 1.8% were zygotes, 2-cell embryos and oocytes-degenerated embryos, respectively. The different weaning-to-estrus intervals did not affect either the percentages of collected zygotes (range: 64.1%-70.0%) or the percentages of sows with zygotes at collection time (range: 69.0%-73.3%). The weaning-to-estrus intervals did not affect the in vitro developmental ability of zygotes. After 24 h of culture, 78.1 +/- 2.0% and 95.1 +/- 0.6 (P < 0.05) of injected (N = 2,345) and non-injected (N = 335) zygotes, respectively, developed to 2-to-4-cell embryo stage. The total efficiency of the system was 64.1 +/- 2.2% and 85.8 +/- 1.5% (P < 0.05) for injected and noninjected zygotes, respectively. In conclusion, the results indicate that neither the efficiency of collecting in vivo derived porcine zygotes from superovulated sows nor the zygote ability to develop to blastocyst after cytoplasmic genome-editing injection were affected by a weaning-to-estrus interval between 3-to-5 days. (C) 2019 Elsevier Inc. All rights reserved.
机译:一种有效的系统,用于收集大量生命性的Zygotes是用于在利用基因组编辑技术的应用前的先决条件,包括使用猪的异种传导的有效模型的开发。由于猪中的次优,在猪中的次倾斜产生,需要在体内开发的Zygotes中的有效收集。排卵的时间是维持效率的关键因素,因为Prontclear形成的间隔和第一划分在猪中非常短。断奶对雌性间隔可以,由于其与雌性长度和排卵时间长度的反向关系,干扰排卵并使其异步,这降低了获得Zygotes的可能性。这种回顾性研究比较了三个断奶间隔3,4或5天的效果在3年期间,共有17个试验,包括223次母猪。 10-15只动物组中的供体母猪在断奶后用ECG 24小时超级排卵,并在48-72小时的ECG后立即用HCG治疗,然后均为授精6和24小时。在第2天(第0天:ESTRUS发作)期间收集的结构在形态学评价,并且只认为具有单个细胞和两个可见极性体的那些被认为是Zygotes。用Cr CrCAS9编辑器混合物注射Zygotes并培养6天,以评估其对非注射控制的发育能力。在所有回收的结构(n = 5,468)中,67.4%,30.8%和1.8%分别是基因,2细胞胚胎和卵母细胞 - 退化的胚胎。不同的断奶致炎间隔不影响收集的受精卵(范围:64.1%-70.0%)或收集时间的母猪百分比(范围:69.0%-73.3%)。断奶对雌激素间隔不影响Zygotes的体外发育能力。在培养24小时后,78.1 +/- 2.0%和95.1 +/- 0.6(P <0.05)分别为2-4的注射(n = 2,345)和未注射(n = 335)个Zygotes。 -Cell胚胎阶段。系统的总效率分别为64.1 +/- 2.2%和85.8 +/- 1.5%(P <0.05),分别注入和非留下的Zygotes。总之,结果表明,在细胞质基因组编辑注射液中,在超温母猪中,在超温母猪中,在细胞质基因组编辑注射后的胚泡中产生的能力均未受到在3到5之间的断奶间隔的影响的影响天。 (c)2019 Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Theriogenology》 |2020年第1期|共6页
  • 作者单位

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Linkoping Univ Dept Clin &

    Expt Med IKE Campus US S-58183 Linkoping Sweden;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Salk Inst Biol Studies 10010 N Torrey Pines Rd La Jolla CA 92037 USA;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

    Univ Murcia Dept Med &

    Anim Surg Fac Vet Med Int Excellence Campus Higher Educ &

    Res E-30100 Murcia Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

    Zygote; Pig; Embryo collection; CRISPR-Cas9; Cytoplasmic injection; Weaned to estrus interval;

    机译:Zygote;猪;胚胎收集;CRISPR-CAS9;细胞质注射;断奶对Estrus间隔;

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