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小麦尖眼蕈蚊(同物异名:眼菌蚊)卵巢卵泡中珠孔器的形态发生

Morphogenesis of the micropylar apparatus in ovarian follicles of the fungus gnatBradysia tritici (syn.Sciara ocellaris).

作者信息

Wenzel Friedel, Gutzeit Herwig O, Zissler Dieter

机构信息

Institut für Biologie I (Zoologie), Albertstrasse 21 a, D-7800, Freiburg i.Br., Germany.

出版信息

Rouxs Arch Dev Biol. 1990 Nov;199(3):146-155. doi: 10.1007/BF01681487.

Abstract

The ultrastructure and morphogenesis of the micropylar apparatus (MPA) have been studied in follicles of the fungus gnatBradysia tritici. The MPA is formed by a group of follicle cells located at the anterior pole of the single large nurse cell. In principle, the MPA consists of two thickened plates made of vitelline membrane material, the lower (LMP) and upper micropylar plate (UMP). The former is synthesized by 3 follicle cells, the latter by 4 different follicle cells. The micropylar channel system consists of a central channel with a single outer orifice and three branches which reach the plasma membrane of the oocyte. The branches are moulded by cellular extensions of the LMP-forming cells which are sandwiched between the two growing micropylar plates. Microtubuli and microfilaments were identified parallel to the long axis of the cellular extensions. At the time of MPA synthesis the nurse cell is still large and hence the MPA-forming cells have no contact to the oocyte. At the end of oogenesis when the regression of the nurse cell is completed, the MPA becomes connected to the other parts of the egg shell. At this time an ultrastructurally homogeneous region forms in the adjacent ooplasm ("cytoplasmic cone"). The possible relevance of these cytological observations for the control of development is discussed.

摘要

已对麦种蝇(Bradysia tritici)卵泡中的珠孔器(MPA)的超微结构和形态发生进行了研究。MPA由位于单个大型滋养细胞前极的一组卵泡细胞形成。原则上,MPA由两层由卵黄膜材料制成的加厚板组成,即下部珠孔板(LMP)和上部珠孔板(UMP)。前者由3个卵泡细胞合成,后者由4个不同的卵泡细胞合成。珠孔通道系统由一个具有单个外孔的中央通道和三个延伸至卵母细胞质膜的分支组成。这些分支由夹在两个生长中的珠孔板之间的LMP形成细胞的细胞延伸形成。微管和微丝与细胞延伸的长轴平行排列。在MPA合成时,滋养细胞仍然很大,因此形成MPA的细胞与卵母细胞没有接触。在卵子发生结束时,当滋养细胞的退化完成时,MPA与卵壳的其他部分相连。此时,在相邻的卵质中形成一个超微结构均匀的区域(“细胞质锥”)。讨论了这些细胞学观察结果对发育控制的可能相关性。

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