National Engineering Laboratory for Animal Breeding, Key Laboratory of Animal Genetics and Breeding of the Ministry of Agriculture, Beijing Key Laboratory for Animal Genetic Improvement, College of Animal Science and Technology, China Agricultural University, Beijing, China.
Institute of Animal Husbandry and Veterinary, Academy of Agricultural Sciences of Tianjin, Tianjin, China.
J Pineal Res. 2017 Aug;63(1). doi: 10.1111/jpi.12406. Epub 2017 Apr 6.
Melatonin as a potent antioxidant exhibits important nutritional and medicinal values. To produce melatonin-enriched milk will benefit the consumers. In this study, a sheep bioreactor which generates melatonin-enriched milk has been successfully developed by the technology that combined CRISPR/Cas9 system and microinjection. The AANAT and ASMT were cloned from pineal gland of Dorper sheep (Ovis aries). The in vitro studies found that AANAT and ASMT were successfully transferred to the mammary epithelial cell lines and significantly increased melatonin production in the culture medium compared to the nontransgenic cell lines. In addition, the Cas9 mRNA, sgRNA, and the linearized vectors pBC1-AANAT and pBC1-ASMT were co-injected into the cytoplasm of pronuclear embryos which were implanted into ewes by oviducts transferring. Thirty-four transgenic sheep were generated with the transgenic positive rate being roughly 35% which were identified by Southern blot and sequencing. Seven carried transgenic AANAT, two carried ASMT, and 25 carried both of AANAT and ASMT genes. RT-PCR and Western blot demonstrated that the lambs expressed these genes in their mammary epithelial cells and these animals produced melatonin-enriched milk. This is the first report to show a functional AANAT and ASMT transgenic animal model which produce significantly high levels of melatonin milk compared to their wild-type counterparts. The advanced technologies used in the study laid a foundation for generating large transgenic livestock, for example, the cows, which can produce high level of melatonin milk.
褪黑素作为一种有效的抗氧化剂,具有重要的营养和药用价值。生产富含褪黑素的牛奶将使消费者受益。本研究通过结合 CRISPR/Cas9 系统和显微注射技术,成功开发了一种生产富含褪黑素牛奶的绵羊生物反应器。AANAT 和 ASMT 从多伯绵羊(Ovis aries)的松果体中克隆。体外研究发现,AANAT 和 ASMT 成功转染到乳腺上皮细胞系中,与非转基因细胞系相比,培养基中的褪黑素产量显著增加。此外,将 Cas9 mRNA、sgRNA 和线性化载体 pBC1-AANAT 和 pBC1-ASMT 共同注射到原核胚胎的细胞质中,然后通过输卵管转移将胚胎植入母羊体内。共获得 34 只转基因绵羊,转基因阳性率约为 35%,通过Southern blot 和测序进行鉴定。其中 7 只携带转基因 AANAT,2 只携带 ASMT,25 只携带 AANAT 和 ASMT 基因。RT-PCR 和 Western blot 表明,这些羔羊在其乳腺上皮细胞中表达这些基因,并且这些动物产生富含褪黑素的牛奶。这是第一个报道显示功能性 AANAT 和 ASMT 转基因动物模型与野生型相比,产生的褪黑素牛奶水平显著提高。该研究中使用的先进技术为生产高水平褪黑素牛奶的大型转基因家畜(例如奶牛)奠定了基础。