Shimp Kristin L, Bhatnagar Kunwar P, Bonar Christopher J, Smith Timothy D
School of Physical Therapy, Slippery Rock University, Slippery Rock, Pennsylvania, USA.
Anat Rec A Discov Mol Cell Evol Biol. 2003 Sep;274(1):862-9. doi: 10.1002/ar.a.10101.
Ecological explanations have been put forward to account for the precocious or delayed development of patency in ducts leading to the vomeronasal organ (VNO) in certain mammals. Perinatal function may be related, in part, to the patency or fusion of the vomeronasal and nasopalatine (NPD) ducts. However, few studies have focused on NPD development in primates, which generally have a prolonged period of dependence during infancy. In this study we examined 24 prenatal primates and 13 neonatal primates, and a comparative sample of fetal mice and insectivores. In embryonic and early fetal Microcebus murinus, the NPD was completely fused, whereas in fetuses of later stages the duct was partially fused or completely patent. M. myoxinus of all stages demonstrated some degree of NPD fusion. In all other prenatal primates, the NPD was fused to some extent. Four prenatal insectivores (Tenrec ecaudatus) showed some degree of NPD fusion. In Mus musculus at 19 days gestation, the NPD was patent, although the anatomically separate VNO duct was fused. T. ecaudatus and most of the neonatal primates revealed complete NPD patency. An exception was Saguinus geoffroyi, which exhibited fusion of the NPD near the VNO opening. These observations may relate to differences in perinatal VNO function. The differences noted in our study suggest that M. murinus and M. myoxinus may differ in perinatal VNO functionality and perhaps in related behavior. Observations of neonatal primates suggest that NPD patency may be relatively common at birth and could serve other purposes in addition to being an access route for VNO stimuli.
生态学解释已被提出,以说明某些哺乳动物中通向犁鼻器(VNO)的导管过早或延迟通畅的发育情况。围产期功能可能部分与犁鼻和鼻腭(NPD)导管的通畅或融合有关。然而,很少有研究关注灵长类动物的NPD发育,灵长类动物在婴儿期通常有较长的依赖期。在本研究中,我们检查了24只产前灵长类动物和13只新生灵长类动物,以及胎儿小鼠和食虫动物的对照样本。在胚胎期和早期胎儿期的小嘴狐猴中,NPD完全融合,而在后期胎儿中,导管部分融合或完全通畅。所有阶段的Myoxinus murinus都表现出一定程度的NPD融合。在所有其他产前灵长类动物中,NPD在一定程度上融合。四只产前食虫动物(马岛猬)表现出一定程度的NPD融合。在妊娠19天的小家鼠中,NPD是通畅的,尽管解剖学上独立的VNO导管是融合的。马岛猬和大多数新生灵长类动物显示NPD完全通畅。一个例外是杰氏狨,它在VNO开口附近表现出NPD融合。这些观察结果可能与围产期VNO功能的差异有关。我们研究中注意到的差异表明,小嘴狐猴和Myoxinus murinus在围产期VNO功能上可能存在差异,也许在相关行为上也存在差异。对新生灵长类动物的观察表明,NPD通畅在出生时可能相对常见,除了作为VNO刺激的进入途径外,还可能有其他用途。