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[谷斑皮蠹(Ephestia kuehniella Zeller)增殖眼盘中有丝分裂和H-胸腺嘧啶核苷掺入的分布情况]

[Distribution of mitoses andH-thymidine incorporation in proliferating eye discs ofEphestia kuehniella Zeller].

作者信息

Egelhaaf Albrecht, Berndt Peter, Küthe Heinz-Werner

机构信息

Lehrstuhl für Experimentelle Morphologie, Zoologisches Institut der Universität zu Köln, Weyertal 119, D-5000, Köln 41, Bundesrepublik Deutschland.

出版信息

Wilehm Roux Arch Dev Biol. 1975 Jun;178(2):185-202. doi: 10.1007/BF00848396.

Abstract
  1. During the first four days after pupation the eye anlage extends by cell proliferation from a dorsocaudal differentiation center. This extension is due to a peripheral growth zone and leads to a tripling of the eye area. During its extension, the eye anlage incorporates adjacent epidermal material. 2. Within this peripheral zone, which moves continuously outward, two concentric zones marked by dividing cells were observed (Fig. 1 c, 2a, b). After injection of tritium-labelled thymidine, the radioactive material is incorporated into these zones (Fig. 5). They are separated by an area in which no replication takes place. 3. In the course of development of the eye the mitotic rate decreases until pupation and then reaches its maximum at the end of the first day after pupation. Thereafter the mitotic rate decreases continously to zero on the 5th day (Fig. 3, Table 1). Most of the mitotic spindles are orientated radially with respect to the differentiation centre (180°), especially in the inner proliferation zone. Many of the remaining spindles were preferentially orientated tangentially (90°) with respect to the differentiation centre (Fig. 4). About 2/3 of the spindles are orientated parallel to the surface, the others are orientated in a diagonal or vertical direction (Table 2). 4. TheH-thymidine incorporation pattern indicates that in each zone most or all cells divide only once. 24 hours after injection the tritium-labelled nuclei of the inner zone were found in all regions of the praeommatidium; apparently all cell types which take part in differentiation of the ommatidium were labelled. The results are discussed with respect to the hypothesis of the clonal origin of the ommatidium from a stem cell.
摘要
  1. 在化蛹后的头四天里,眼原基从背尾侧分化中心通过细胞增殖而扩展。这种扩展归因于一个外周生长区,并导致眼面积增加两倍。在其扩展过程中,眼原基并入相邻的表皮物质。2. 在这个不断向外移动的外周区内,观察到两个由分裂细胞标记的同心区(图1c、2a、b)。注射氚标记的胸腺嘧啶核苷后,放射性物质被并入这些区域(图5)。它们被一个不发生复制的区域隔开。3. 在眼的发育过程中,有丝分裂率在化蛹前下降,然后在化蛹后的第一天末达到最大值。此后,有丝分裂率持续下降,在第5天降至零(图3,表1)。大多数有丝分裂纺锤体相对于分化中心呈放射状排列(180°),尤其是在内侧增殖区。其余许多纺锤体相对于分化中心优先呈切向排列(90°)(图4)。约2/3的纺锤体与表面平行排列,其他纺锤体呈对角线或垂直方向排列(表2)。4. H-胸腺嘧啶核苷掺入模式表明,在每个区域大多数或所有细胞仅分裂一次。注射后24小时,在内区中发现了氚标记的细胞核存在于小眼的所有区域;显然,所有参与小眼分化的细胞类型都被标记了。关于小眼起源于干细胞的克隆假说对这些结果进行了讨论。

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