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鸡胚胎和新生雏鸡个体发育过程中精氨酸血管加压素基因表达与激素合成

Arginine vasotocin gene expression and hormone synthesis during ontogeny of the chicken embryo and the newborn chick.

作者信息

Mühlbauer E, Hamann D, Xu B, Ivell R, Udovic B, Ellendorff F, Grossmann R

机构信息

Institute for Small Animal Research, Celle, FRG.

出版信息

J Neuroendocrinol. 1993 Jun;5(3):281-8. doi: 10.1111/j.1365-2826.1993.tb00484.x.

DOI:10.1111/j.1365-2826.1993.tb00484.x
PMID:8319002
Abstract

Chicken embryos at different developmental stages (embryonal day (E) 6 to 21) and chicks at posthatch day 1 (D1) were monitored for the development of their hypothalamo-neurohypophysial system as indicated by the kinetics of arginine vasotocin (AVT) gene expression via mRNA concentration and brain AVT content. Our data concerning the onset of gene expression support previous results from our laboratory and others about an early activation of the AVT gene transcriptional and translational activity around E6. We could detect measurable amounts of AVT in chicken embryo brains at E6 and an exponential increase during further development until D1. Dot blots of hypothalamic RNA extracts indicated that AVT gene transcript concentrations rose between E12 and E17 and slightly dropped thereafter. Northern hybridization showed that this drop was caused by a decrease of full length message and an increase of smaller transcripts during late embryonal and D1 stages, probably an AVT mRNA specific degradation phenomenon. The dissociation between the increase of AVT concentration and AVT mRNA concentration visible at the D1 stage might be due to accumulation and storage of AVT in the magnocellular neurons, preferentially in their axon terminals in the neurohypophysis. Blood samples taken from E14 onwards revealed a constant increase in plasma osmolality and plasma AVT concentration. Our data suggest that, in the chicken, AVT seems to be required early during embryonal development, either for osmoregulatory or further unknown functions.

摘要

通过精氨酸血管催产素(AVT)基因表达的动力学(经由mRNA浓度和脑AVT含量),监测处于不同发育阶段的鸡胚(胚胎期(E)6至21天)和孵化后第1天(D1)的雏鸡下丘脑-神经垂体系统的发育情况。我们关于基因表达起始的数据支持了我们实验室及其他实验室先前的研究结果,即AVT基因转录和翻译活性在E6左右早期被激活。我们在E6时可检测到鸡胚脑中存在可测量的AVT量,并且在进一步发育直至D1期间呈指数增加。下丘脑RNA提取物的斑点印迹表明,AVT基因转录本浓度在E12至E17之间上升,此后略有下降。Northern杂交显示,这种下降是由于在胚胎后期和D1阶段全长信息减少以及较小转录本增加所致,这可能是一种AVT mRNA特异性降解现象。在D1阶段可见的AVT浓度增加与AVT mRNA浓度增加之间的解离可能是由于AVT在大细胞神经元中积累和储存,优先在神经垂体的轴突终末中积累和储存。从E14开始采集的血样显示血浆渗透压和血浆AVT浓度持续增加。我们的数据表明,在鸡中,AVT似乎在胚胎发育早期是必需的,要么用于渗透调节,要么用于其他未知功能。

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