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Dnd1 Knockout in Sturgeons By CRISPR/Cas9 Generates Germ Cell Free Host for Surrogate Production

机译:CRISPR / Cas9在St鱼中的Dnd1敲除产生代生殖细胞的无宿主宿主

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Sturgeons also known as living fossils are facing threats to their survival due to overfishing and interference in natural habitats. Sterlet ( Acipenser ruthenus ) due to its rapid reproductive cycle and small body size can be used as a sterile host for surrogate production for late maturing and large sturgeon species. Dead end protein (dnd1) is essential for migration of Primordial Germ Cells (PGCs), the origin of all germ cells in developing embryos. Knockout or knockdown of dnd1 can be done in order to mismigrate PGCs. Previously we have used MO and UV for the aforementioned purpose, and in our present study we have used CRISPR/Cas9 technology to knockout dnd1 . No or a smaller number of PGCs were detected in crispants, and we also observed malformations in some CRISPR/Cas9 injected embryos. Furthermore, we compared three established methods to achieve sterility in sterlet, and we found higher embryo survival and hatching rates in CRISPR/Cas9, UV and MO, respectively.
机译:由于过度捕捞和对自然栖息地的干扰,鱼也被称为活化石,正面临着生存威胁。斯特雷(Acipenser ruthenus)由于其快速的繁殖周期和小的体形,可以用作后期成熟和大型st鱼种类的替代生产的无菌宿主。死端蛋白(dnd1)对于原始生殖细胞(PGC)的迁移至关重要,PGC是发育中胚胎中所有生殖细胞的起源。可以对dnd1进行敲除或敲除,以迁移PGC。以前,我们已将MO和UV用于上述目的,在本研究中,我们已使用CRISPR / Cas9技术敲除dnd1。在薯片中未检测到PGC或PGC数量较少,我们还观察到了一些CRISPR / Cas9注射胚胎的畸形。此外,我们比较了三种确定的实现sterster不育的方法,我们发现CRISPR / Cas9,UV和MO分别具有更高的胚胎存活率和孵化率。

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