Departament de Medicina Experimental, Universitat de Lleida, Lleida, Spain.
Laboratory of Evolutionary Developmental Neurobiology, Lleida's Institute for Biomedical Research Dr. Pifarré Foundation (IRBLleida), Lleida, Spain.
Front Neural Circuits. 2022 Feb 17;16:831074. doi: 10.3389/fncir.2022.831074. eCollection 2022.
Taking advantage of two Otp-specific reporter lines of transgenic mice (Otp-eGFP and Otp-Cre; Rpl22-HA), we identify and describe different Otp cell populations across various pallial regions, including the pallial amygdala, the piriform cortex, the mesocortex, the neocortex, and the hippocampal complex. Some of these populations can be followed throughout development, suggesting migration from external sources (for example, those of the pallial amygdala and at least some of the cingulate cortex). Other cells become visible during postnatal development (some of those in the neocortex and hippocampal formation) or in adulthood (those of the parahippocampal lobe), and seem to be produced locally. We discuss the possible role of Otp in these different populations during different moments of ontogenesis. We also analyze the connectivity patterns of some of these cells and discuss their functional implications. For example, our data suggest that Otp cells of the pallial amygdala might be engaged in networks with other Otp cells of the medial amygdala with the same embryonic origin, and may regulate specific aspects of social behavior. Regarding Otp cells in the parahippocampal lobe, they seem to be projection neurons and may regulate hippocampal function during spatial navigation and memory formation. The two reporter transgenic mice employed here provide very powerful tools for high precision studies on these different Otp cells of the pallium, but careful attention should be paid to the age and to differences between lines.
利用两种 OTP 特异性报告基因线的转基因小鼠(Otp-eGFP 和 Otp-Cre;Rpl22-HA),我们在各种皮层区域(包括皮层杏仁核、梨状皮层、中脑皮层、新皮层和海马复合体)中鉴定并描述了不同的 OTP 细胞群体。其中一些群体可以在整个发育过程中被追踪,这表明它们是从外部来源(例如,皮层杏仁核和至少一些扣带回皮层)迁移而来的。其他细胞在出生后发育过程中变得可见(新皮层和海马结构中的一些)或在成年期(海马旁回中的一些)出现,并且似乎是局部产生的。我们讨论了 OTP 在不同发育阶段的这些不同群体中的可能作用。我们还分析了其中一些细胞的连接模式,并讨论了它们的功能意义。例如,我们的数据表明,皮层杏仁核的 OTP 细胞可能与具有相同胚胎起源的内侧杏仁核的其他 OTP 细胞参与网络,并且可能调节特定的社会行为方面。关于海马旁回中的 OTP 细胞,它们似乎是投射神经元,并且可能在空间导航和记忆形成过程中调节海马的功能。这里使用的两种报告基因转基因小鼠为研究皮层中的这些不同的 OTP 细胞提供了非常强大的工具,但应特别注意年龄和系之间的差异。