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首页> 外文期刊>Biochemical and Biophysical Research Communications >Generation of juvenile rainbow trout derived from cryopreserved whole ovaries by intraperitoneal transplantation of ovarian germ cells
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Generation of juvenile rainbow trout derived from cryopreserved whole ovaries by intraperitoneal transplantation of ovarian germ cells

机译:腹腔内移植卵巢生殖细胞从低温保存的整个卵巢中产生幼体虹鳟鱼

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Cryopreservation of fish sperm offers the practical applications in the selective breeding and biodiversity conservation. However, because of the lack of cryopreservation methods for fish eggs and embryos, maternally inherited cytoplasmic compartments cannot be successfully preserved. We previously developed an alternative method to derive functional eggs and sperm from cryopreserved whole testis by transplanting testicular cells into female and male recipients. However, if target fish had ovaries, the previous method employing male-derived germ cells would be ineffective. Here, we aimed to generate functional gametes from cryopreserved whole ovaries by transplanting ovarian germ cells into peritoneal cavity of sterile hatchlings. Cryopreservation conditions for rainbow trout ovaries (1.0 M DMSO, 0.1 M trehalose, and 10% egg yolk) were optimized by testing several different cryoprotective agents. Ovarian germ cells from thawed ovaries were intraperitoneally transplanted into allogeneic triploid hatchlings. Transplanted germ cells migrated toward and were incorporated into recipient gonads, where they underwent gametogenesis. Transplantation efficiency of ovarian germ cells remained stable after cryopreservation period up to 1185 days. Although all triploid recipients that did not undergo transplantation were functionally sterile, 5 of 25 female recipients and 7 of 25 male recipients reached sexual maturity at 2.5 years post-transplantation. Inseminating the resultant eggs and sperm generated viable offspring displaying the donor characteristics of orange body color, green fluorescence, and chromosome numbers. This method is thus a breakthrough tool for the conservation of endangered fish species that are crucial to cryopreserve the genetic resources of female fish. (C) 2016 Elsevier Inc. All rights reserved.
机译:鱼精的冷冻保存在选择性育种和生物多样性保存中提供了实际应用。但是,由于缺乏用于鱼卵和胚胎的冷冻保存方法,因此无法成功保存母系遗传的细胞质区室。我们以前开发了一种替代方法,通过将睾丸细胞移植到雌性和雄性受体中,从冷冻保存的整个睾丸中提取功能性卵和精子。但是,如果目标鱼有卵巢,那么以前使用雄性生殖细胞的方法将无效。在这里,我们旨在通过将卵巢生殖细胞移植到无菌幼体的腹膜腔中,从低温保存的整个卵巢中产生功能性配子。通过测试几种不同的冷冻保护剂,优化了虹鳟鱼卵巢的冷冻保存条件(1.0 M DMSO,0.1 M海藻糖和10%的蛋黄)。将来自解冻卵巢的卵巢生殖细胞腹膜内移植到同种异体三倍体幼体中。移植的生殖细胞向并迁移到受体性腺中并在那里进行配子发生。冷冻保存长达1185天后,卵巢生殖细胞的移植效率仍保持稳定。尽管所有未接受移植的三倍体接受者在功能上都是不育的,但25位女性接受者中有5位和25位男性接受者中有7位在移植后2.5年达到了性成熟。授精后的卵和精子产生了可存活的后代,表现出橙色,绿色荧光和染色体数目的供体特征。因此,该方法是保护濒危鱼类物种的突破性工具,这些鱼类对于冷冻保存雌性鱼类的遗传资源至关重要。 (C)2016 Elsevier Inc.保留所有权利。

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