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沙袋鼠(尤金袋鼠)嗅觉系统的发育

Development of the olfactory system in a wallaby (Macropus eugenii).

作者信息

Ashwell K W S, Marotte L R, Cheng Gang

机构信息

Department of Anatomy, School of Medical Sciences, The University of NSW, Sydney, NSW, Australia.

出版信息

Brain Behav Evol. 2008;71(3):216-30. doi: 10.1159/000119711. Epub 2008 Mar 6.

Abstract

We used carbocyanine dye tracing techniques in conjunction with hematoxylin and eosin staining, immunohistochemistry for GAP-43, and tritiated thymidine autoradiography to examine the development of the olfactory pathways in early pouch young tammar wallabies (Macropus eugenii). The overarching aim was to test the hypothesis that the olfactory system of newborn tammars is sufficiently mature at birth to contribute to the guidance of the pouch young to the nipple. Although GAP-43 immunoreactive fibers emerge from the olfactory epithelium and enter the olfactory bulb at birth, all other components of the olfactory pathway in newborn tammars are very immature at birth, postnatal day (P0). In particular, maturation of the vomeronasal organ and its projections to the accessory olfactory bulb appears to be delayed until P5 and the olfactory bulb is poorly differentiated until P12, with glomerular formation delayed until P25. The lateral olfactory tract is also very immature at birth with pioneer axons having penetrated only the most rostral portion of the piriform lobe. Interestingly, there were some early (P0) projections from the olfactory epithelium to the medial septal region and lamina terminalis (by the terminal nerve) and to olfactory tubercle and basal forebrain. The former of these is presumably serving the transfer of LHRH(+) neurons to the forebrain, as seen in eutherians, but neither of these very early pathways is sufficiently robust or connected to the more caudal neuraxis to play a role in nipple finding. Tritiated thymidine autoradiography confirmed that most piriform cortex pyramidal neurons are generated in the first week of life and are unlikely to be able to contribute to circuitry guiding the climb to the pouch. Our findings lead us to reject the hypothesis that olfactory projections contribute to guidance of the newborn tammar to the pouch and nipple. It appears far more likely that the trigeminal pathways play a significant role in this behavior because the central projections of the trigeminal nerve are more mature at birth in this marsupial.

摘要

我们运用了碳花青染料示踪技术,并结合苏木精-伊红染色、GAP-43免疫组织化学以及氚标记胸腺嘧啶核苷放射自显影技术,来研究早期育儿袋中的幼年帚尾袋貂(Macropus eugenii)嗅觉通路的发育情况。总体目标是验证一个假设,即新生帚尾袋貂的嗅觉系统在出生时已足够成熟,能够引导育儿袋中的幼崽找到乳头。尽管出生时GAP-43免疫反应性纤维从嗅觉上皮出现并进入嗅球,但新生帚尾袋貂嗅觉通路的所有其他组成部分在出生时(出生后第0天,P0)都非常不成熟。特别是,犁鼻器及其向副嗅球的投射的成熟似乎延迟到P5,嗅球在P12之前分化不良,肾小球形成延迟到P25。外侧嗅束在出生时也非常不成熟,先驱轴突仅穿透了梨状叶最前端的部分。有趣的是,从嗅觉上皮到内侧隔区和终板(通过终神经)以及到嗅结节和基底前脑有一些早期(P0)投射。正如在真兽类动物中所见,前者可能是为了将促性腺激素释放激素(LHRH)阳性神经元转移到前脑,但这两条非常早期的通路都不够强大,也没有与更靠后的神经轴相连,无法在寻找乳头中发挥作用。氚标记胸腺嘧啶核苷放射自显影证实,大多数梨状皮质锥体细胞在出生后的第一周产生,不太可能对引导幼崽爬向育儿袋的神经回路有贡献。我们的研究结果使我们拒绝了嗅觉投射有助于引导新生帚尾袋貂找到育儿袋和乳头的假设。在这种有袋动物中,三叉神经通路在这种行为中发挥重要作用的可能性似乎要大得多,因为三叉神经的中枢投射在出生时更成熟。

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