纤毛虫大核发育的电镜研究。

Cytobiologie Pub Date : 1978-10-01
C K Pyne
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引用次数: 0

摘要

用电子显微镜研究了纤毛虫(Chilodonella uncinata)大核器官的发育。描述了宏核和微核的超微结构进行比较。在发育的第一阶段,当大核样本的DNA含量从2℃增加到32℃时,染色体在样本内可见为不同的亲锇小体。在初始多倍体化阶段结束时,染色体脱形,产生直径为25 ~ 50nm的长丝状结构。后者呈现出奇异的带状模式,12 ~ 25 nm厚的密集带与密度较小的带间有规律地交替。在任何其他类型的核中尚未观察到这种组织。这些丝状结构被解释为高度去中心化的少染色体。在大核发育的最后阶段,这些结构凝聚成细细的染色质链和致密的小颗粒;随着染色质链的消失,颗粒的数量逐渐增加。这些小颗粒很可能彼此融合,形成营养大核的染色质颗粒。目前还没有证据表明这种纤毛虫存在染色质断裂,但这个问题需要进一步研究。老的大核保持正常的超微结构,直到大核标本发育的后期,直到后期才变为收缩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron microscopic studies on the macronuclear development in the ciliate Chilodonella uncinata.

The development of macronuclear anlage in the ciliate Chilodonella uncinata has been studied through electron microscopy. The ultrastructure of macro- and micronuclei is described for comparison. During the first stage of development, when the DNA content of the macronuclear anage increases from 2 C to 32 C, chromosomes are visible as distinct osmiophilic bodies inside the anlage. At the end of the initial polyploidization phase, the chromosomes despiralize, giving rise to long filamentous structures 25 to 50 nm in diameter. The latter show a singular banding pattern, with dense bands 12 to 25 nm thick alternating regularly with less dense interbands. Such an organization has not yet been observed in any other type of nucleus. These filamentous structures have been interpreted as highly despiralized oligotenic chromosomes. During the final stage of macronuclear development, these structures condense into thin chromatin strands and small dense granules; the number of granules increases progressively as the chromatin strands disappear. These small granules very likely fuse amongst themselves to form the chromatin granules of the vegetative macronucleus. No evidence has yet been found for a fragmentation of chromatin in this ciliate, but this problem needs further study. The old macronucleus maintains a normal ultrastructure until a late stage of development of the macronuclear anlage, becoming pycnotic only towards the very end of the latter process.

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