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Rapid and efficient genetic manipulation of gyrencephalic carnivores using in utero electroporation

机译:子宫电穿孔技术快速高效地处理人脑食肉动物

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Background Higher mammals such as primates and carnivores have highly developed unique brain structures such as the ocular dominance columns in the visual cortex, and the gyrus and outer subventricular zone of the cerebral cortex. However, our molecular understanding of the formation, function and diseases of these structures is still limited, mainly because genetic manipulations that can be applied to higher mammals are still poorly available. Results Here we developed and validated a rapid and efficient technique that enables genetic manipulations in the brain of gyrencephalic carnivores using in utero electroporation. Transgene-expressing ferret babies were obtained within a few weeks after electroporation. GFP expression was detectable in the embryo and was observed at least 2?months after birth. Our technique was useful for expressing transgenes in both superficial and deep cortical neurons, and for examining the dendritic morphologies and axonal trajectories of GFP-expressing neurons in ferrets. Furthermore, multiple genes were efficiently co-expressed in the same neurons. Conclusion Our method promises to be a powerful tool for investigating the fundamental mechanisms underlying the development, function and pathophysiology of brain structures which are unique to higher mammals.
机译:背景技术诸如灵长类动物和食肉动物的高级哺乳动物具有高度发达的独特大脑结构,例如视觉皮层中的眼优势列,大脑皮层的回旋和脑室下区。但是,我们对这些结构的形成,功能和疾病的分子理解仍然受到限制,这主要是因为可用于高等哺乳动物的遗传操作仍然很少。结果在这里,我们开发并验证了一种快速有效的技术,该技术可以在子宫电穿孔中对人脑食肉动物的大脑进行基因操作。在电穿孔后数周内获得了表达转基因的雪貂婴儿。在胚胎中可检测到GFP表达,并在出生后至少2个月观察到。我们的技术可用于在浅层和深层皮质神经元中表达转基因,并用于检查雪貂中表达GFP的神经元的树突形态和轴突轨迹。此外,多个基因在同一神经元中有效地共表达。结论我们的方法有望成为研究高级哺乳动物特有的大脑结构发育,功能和病理生理基础的基本机制的有力工具。

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