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首页> 外文期刊>Journal of cell biology >A FINE STRUCTURAL ANALYSIS OF CLEAVAGE INDUCTION AND FURROWING IN THE EGGS OF ARBACIA PUNCTULATA
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A FINE STRUCTURAL ANALYSIS OF CLEAVAGE INDUCTION AND FURROWING IN THE EGGS OF ARBACIA PUNCTULATA

机译:刺槐卵卵裂诱导和沟眉的精细结构分析

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A fine structural study has been carried out on the various formed elements present before, during, and after the first cleavage division, not only in normally developing Arbacia eggs, but also in eggs which have been induced to cleave prematurely by high-pressure centrifugation. The aim has been to ascertain whether or not any of the morphologically identifiable components may be involved in initiating the furrowing process. Also, attention has been given to the fine structure of the cytoplasmic cortex, particulary in the walls of the furrow, in the hope of reaching a better understanding of the mechanics of cleavage. The annulate lamellae and the membranous envelope of the nucleus are the only formed elements which disappear shortly before cleavage, not only in eggs undergoing normal division, but also in eggs which have been induced to cleave ahead of schedule by high-pressure, high-force centrifugation. Therefore, it is suggested as a tentative hypothesis that materials liberated upon disintegration of the nuclear membrane and the annulate lamellae play an essential role in initiating and effecting the furrowing reaction, especially since the stratification of these elements in experimentally induced eggs corresponds to the position of the developing furrow. Another of the membranous elements in the egg, the Golgi complex, shows considerable modification as a result of high-pressure centrifugation, but these structures do not undergo disintegration. Rather, they become curled into rounded bodies. The vacuole population is not greatly affected by inducing treatments. During cleavage, both naturally occurring and experimentally induced, a considerable number of 50 A filaments appear in the denser cytoplasmic cortex, but only in the walls of the furrow. These filaments are similar to those which have been demonstrated in a number of contractile cells. Accordingly, it is suggested that this fibrillar system may be actively involved in the development of the cleavage force.
机译:在第一次分裂分裂之前,之中和之后对存在的各种形成元素进行了精细的结构研究,不仅在正常发育的Arbacia卵中,而且还在通过高压离心诱导过早分裂的卵中。目的是确定是否可以通过任何形态学上可识别的成分参与犁沟过程。而且,已经对细胞质皮质的精细结构,特别是在沟壁中的结构,给予了关注,以期希望能更好地理解卵裂的机理。环状薄片和核的膜状包膜是分裂前不久就消失的唯一形成的元素,不仅在经历正常分裂的卵中,而且在通过高压,高力提前分裂的卵中也是如此。离心。因此,作为一个假说,有人建议说,由于核膜和环状薄片的崩解而释放的物质在引发和影响犁沟反应中起着至关重要的作用,特别是因为这些元素在实验诱导的卵中的分层对应于卵的位置。不断发展的犁沟。鸡蛋中的另一种膜元素,高尔基复合体,由于高压离心作用而显示出相当大的修饰,但这些结构并未分解。相反,它们变得卷曲成圆形体。液泡种群不受诱导治疗的影响很大。在分裂过程中,无论是自然发生的还是实验诱导的,相当多的50 A细丝出现在较密的细胞质皮质中,但仅出现在犁沟壁中。这些细丝与在许多收缩细胞中已证实的细丝相似。因此,建议该原纤维系统可以积极地参与分裂力的发展。

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