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实验性的细胞质成分变化能够改变多毛纲沙蚕属(环节动物门,多毛纲)中卵裂球的决定作用。

Experimental change of cytoplasmic composition can convert determination of blastomeres inPlatynereis dumerilii (Annelida, Polychaeta).

作者信息

Dorresteijn Adriaan W C, Eich Pia

机构信息

Zoologisches Institut (Abteilung 1) der Universität Mainz, Saarstraße 21, W-6500, Mainz, Germany.

出版信息

Rouxs Arch Dev Biol. 1991 Nov;200(6):342-351. doi: 10.1007/BF00665530.

Abstract

Early development ofPlatynereis dumerilii is characterized by an extremely constant cleavage pattern in which the volumes and cytoplasmic contents of the blastomeres show remarkably little variability (Dorresteijn 1990). In order to test the necessity of a precise partitioning of the cytoplasm, we have stratified the ooplasm by mild centrifugation (10 min at 300 g) after completion of meiosis but before first cleavage. The cytoplasm of the zygote stratifies randomly with respect to the pre-existing animal-vegetal axis, but first cleavage follows the animal-vegetal axis dividing the plasm before it has rearranged to its normal distribution. As usual, first cleavage is unequal in the majority of centrifuged eggs. Different sorts of cytoplasm are always distributed abnormally in comparison to normal two-cell stages. Under two circumstances this leads to the formation of double trunk structures in the young worm. Such 'double monsters' either originate from zygotes whose clear cytoplasm has been distributed equally to the two daughter blastomeres at first cleavage, or from unequal two-cell embryos whose larger blastomere cleaved equally at second cleavage forming blastomeres with equal lots of clear cytoplasm. Cell-lineage could be followed in an individual embryo of the latter category and showed the existence of two adjacent D-quadrants, giving rise to a double monster with a forked trunk. Embryos of the former category give rise to two opponent D-quadrants and double monsters with a four-sided trunk. As in the normal embryo, the amount of clear cytoplasm in a blastomere is positively correlated with the speed of its cell cycle, and endows the cell with D-quadrant developmental capacities as can be judged by the cleavage pattern.

摘要

杜氏阔沙蚕(Platynereis dumerilii)的早期发育特点是具有极其恒定的卵裂模式,其中卵裂球的体积和细胞质含量变化非常小(多雷斯泰因,1990年)。为了测试细胞质精确分配的必要性,我们在减数分裂完成后但在第一次卵裂前通过轻度离心(300克,10分钟)对卵质进行了分层。合子的细胞质相对于预先存在的动物 - 植物轴随机分层,但第一次卵裂沿着动物 - 植物轴进行,在细胞质重新排列到其正常分布之前就将细胞质分开。与往常一样,大多数离心后的卵中第一次卵裂是不均等的。与正常的二细胞阶段相比,不同类型的细胞质总是分布异常。在两种情况下,这会导致幼体蠕虫形成双躯干结构。这种“双头怪物”要么源自合子,其透明细胞质在第一次卵裂时被平均分配到两个子卵裂球中,要么源自不均等的二细胞胚胎,其较大的卵裂球在第二次卵裂时均等分裂,形成具有等量透明细胞质的卵裂球。可以追踪后一类单个胚胎的细胞谱系,发现存在两个相邻的D象限,从而产生具有叉状躯干的双头怪物。前一类胚胎产生两个相对的D象限和具有四边形躯干的双头怪物。与正常胚胎一样,卵裂球中透明细胞质的量与其细胞周期速度呈正相关,并赋予细胞D象限发育能力,这可以通过卵裂模式来判断。

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