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首页> 外文期刊>Developmental biology >Development of dorsal-ventral polarity in the optic vesicle and its presumptive role in eye morphogenesis as shown by embryonic transplantation and in ovo explant culturing
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Development of dorsal-ventral polarity in the optic vesicle and its presumptive role in eye morphogenesis as shown by embryonic transplantation and in ovo explant culturing

机译:胚胎移植和卵外植体培养表明,小泡背腹极性的发育及其在眼形态发生中的推测作用

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摘要

Dorsal and ventral specification in the early optic vesicle appears to play a crucial role in the proper development of the eye. In the present study, we performed embryonic transplantation and organ culturing of the chick optic vesicle in order to investigate how the dorsal-ventral (D-V) polarity is established in the optic vesicle and what role this polarity plays in proper eye development. The left optic vesicle was cut and transplanted inversely in the right eye cavity of host chick embryos. This method ensured that the D-V polarity was reversed while the anteroposterior axis remained normal. The results showed that the location of the choroid fissure was altered from the normal (ventral) to ectopic positions as the embryonic stage of transplantation progressed from 6 to 18 somites. At the same time, the shape of the optic vesicle and the expression patterns of Pax2 and Tbx5, marker genes for ventral and dorsal regions of the optic vesicle, respectively, changed concomitantly in a similar way. The crucial period was between the 8- and 14-somite stages, and during this period the polarity seemed to be gradually determined. In ovo explant culturing of the optic vesicle showed that the D-V polarity and choroid fissure formation were already specified by the 10-somite stage. These results indicate that the D-V polarity of the optic vesicle is established gradually between 8- and 14-somite stages under the influence of signals derived from the midline portion of the forebrain. The presumptive signal(s) appeared to be transmitted from proximal to distal regions within the optic vesicle. A severe anomaly was observed in the development of optic vesicles reversely transplanted around the 10-somite stage: the optic cup formation was disturbed and subsequently the neural retina and pigment epithelium did not develop normally. We concluded that establishment of the D-V polarity in the optic vesicle plays an essential role in the patterning and differentiation of the neural retina and pigment epithelium. (C) 2002 Elsevier Science (USA). [References: 45]
机译:早期囊泡的背侧和腹侧规格在眼睛的正常发育中似乎起着至关重要的作用。在本研究中,我们进行了小鸡视神经囊泡的胚胎移植和器官培养,以研究如何在视神经囊泡中建立背腹(D-V)极性以及该极性在正常的眼睛发育中起什么作用。切开左视泡并反向移植到宿主小鸡胚的右眼腔中。这种方法确保了D-V极性反转,而前后轴保持正常。结果表明,随着移植的胚胎阶段从6个节段发展到18个节段,脉络膜裂隙的位置从正常(腹侧)改变为异位。同时,视神经泡的形状以及视神经腹和背侧区域的标记基因Pax2和Tbx5的表达模式也以类似的方式随之变化。关键时期在8到14人寿期之间,在此期间,极性似乎逐渐确定。在卵外植体中,对囊泡的培养表明,D-V极性和脉络膜裂隙的形成已在10次方位阶段确定。这些结果表明,在从前脑的中线部分得到的信号的影响下,在8个和14个s节阶段之间逐渐建立了囊泡的D-V极性。推测信号似乎是从视泡内的近端区域传输到远端区域的。在10-somite阶段反向移植的视神经囊泡的发育中观察到严重异常:视神经杯的形成受到干扰,随后神经视网膜和色素上皮细胞未正常发育。我们得出的结论是,视神经泡中D-V极性的建立在神经视网膜和色素上皮的模式和分化中起着至关重要的作用。 (C)2002 Elsevier Science(美国)。 [参考:45]

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