鸡(Gallus gallus)视觉通路的丘脑-胼胝体阶段的早期发育。

IF 2.3 4区 医学 Q3 NEUROSCIENCES
Rosana Reyes-Pinto, María-José Rojas, Juan-Carlos Letelier, Gonzalo J. Marín, Jorge Mpodozis
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引用次数: 0

摘要

视网膜通路是所有羊膜动物中高度保守的视觉通路。在鸟类和哺乳动物中,位于中脑顶部(视神经乳头/上丘)的视网膜感受神经元是丘脑中继器(圆形核/丘脑后叶)的上升投射源,而丘脑中继器又根据层间回路的柱状递归排列,投射到特定的掌叶区域(视觉背侧室脊[vDVR]/颞叶皮层)。这些惊人的结构对应关系是否或在多大程度上源于相似的发育过程,目前还是一个悬而未决的问题。以前对鸟类这一系统的发育研究大多集中在视网膜-视神经-丘脑连接的建立上,而忽略了丘脑-胼胝体-丘脑内电路的发育。在这项工作中,我们通过免疫组化测定和生物胞素与 DiI 的精确体外晶体注射,在鸡胚胎中对后者进行了研究。我们发现,vDVR 的分层组织以及 vDVR 层间的同位互联系统早在 E8 阶段就已存在。在这一阶段,丘脑-vDVR投射也高度组织化。我们的免疫组化检测结果表明,这两种投射系统同时出现的时间甚至更早。结合之前的研究结果,这些结果揭示出,与哺乳动物形成鲜明对比的是,鸟类躯干神经通路的外围和中央阶段是沿着不同的时间轴发展的,躯干神经-丘脑-内颞叶组织出现在视网膜-躯干神经回路之前,而且可能独立于视网膜-躯干神经回路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Early Development of the Thalamo-Pallial Stage of the Tectofugal Visual Pathway in the Chicken (Gallus gallus)

Early Development of the Thalamo-Pallial Stage of the Tectofugal Visual Pathway in the Chicken (Gallus gallus)

The tectofugal pathway is a highly conserved visual pathway in all amniotes. In birds and mammals, retinorecipient neurons located in the midbrain roof (optic tectum/superior colliculus) are the source of ascending projections to thalamic relays (nucleus rotundus/caudal pulvinar), which in turn project to specific pallial regions (visual dorsal ventricular ridge [vDVR]/temporal cortex) organized according to a columnar recurrent arrangement of interlaminar circuits. Whether or to which extent these striking hodological correspondences arise from comparable developmental processes is at present an open question, mainly due to the scarcity of data about the ontogeny of the avian tectofugal system. Most of the previous developmental studies of this system in birds have focused on the establishment of the retino-tecto-thalamic connectivity, overlooking the development of the thalamo-pallial-intrapallial circuit. In this work, we studied the latter in chicken embryos by means of immunohistochemical assays and precise ex vivo crystalline injections of biocytin and DiI. We found that the layered organization of the vDVR as well as the system of homotopic reciprocal connections between vDVR layers were present as early as E8. A highly organized thalamo-vDVR projection was also present at this stage. Our immunohistochemical assays suggest that both systems of projections emerge simultaneously even earlier. Combined with previous findings, these results reveal that, in striking contrast with mammals, the peripheral and central stages of the avian tectofugal pathway develop along different timelines, with a tecto-thalamo-intrapallial organization arising before and possibly independently of the retino-isthmo-tectal circuit.

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来源期刊
CiteScore
5.80
自引率
8.00%
发文量
158
审稿时长
3-6 weeks
期刊介绍: Established in 1891, JCN is the oldest continually published basic neuroscience journal. Historically, as the name suggests, the journal focused on a comparison among species to uncover the intricacies of how the brain functions. In modern times, this research is called systems neuroscience where animal models are used to mimic core cognitive processes with the ultimate goal of understanding neural circuits and connections that give rise to behavioral patterns and different neural states. Research published in JCN covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of nervous systems in species with an emphasis on the way that species adaptations inform about the function or organization of the nervous systems, rather than on their evolution per se. JCN publishes primary research articles and critical commentaries and review-type articles offering expert insight in to cutting edge research in the field of systems neuroscience; a complete list of contribution types is given in the Author Guidelines. For primary research contributions, only full-length investigative reports are desired; the journal does not accept short communications.
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