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高等植物联会复合体的一些形态学方面

Some morphological aspects of the synaptonemal complex in higher plants.

作者信息

La Cour L F, Wells B

出版信息

Philos Trans R Soc Lond B Biol Sci. 1977 Mar 21;277(955):259-66. doi: 10.1098/rstb.1977.0016.

Abstract

The synaptonemal complex is illustrated in electron micrographs from pollen mother cells (p.m.cs) of the following plants: Fritillaria lanceolata, Allium fistulosum, Tulbaghia violacea, Luzula purpurea, Phaedranassa viridiflora and the tulip cultivar Keiserkroon. The possibility that the lateral elements in synaptonemal complexes of plants are tubiform structures is discussed in relation to their fine structure and in the light of a deformity seen in them. An assessment of the evidence suggesting that both lateral and central elements in the complex are ribonucleoprotein structures is made. The effect of brief water treatment on the chromatin and synaptonemal complex at zygotene in p.m.cs of the Phaedranassa is discussed, particularly with reference to two precisely oriented axial strands then seen running between the lateral elements. Examination of stages of premeiotic interphase and early leptotene in p.m.cs of the Fritillaria, revealed that the axial cores laid down at leptotene are formed first in heterochromatic regions, which in this species are locked in chromocentres that persist until pachytene. Further, at leptotene the chromatin in these parts was singularly more decondensed (diffuse) than at any other period, including the premeiotic interphase, subsequent stages of meiosis and mitotic cycle in meristems. It is suggested that the diffuse state of the chromatin in chromocentres at the onset of leptotene, allows the necessary freedom of movement required to promote homologous pairing of the heterochromatic segments. Evidence of such a movement was indicated by a change in position of the nucleoli, which moved from a more central position at early premeiotic interphase to a peripheral one at the onset of leptotene, when they are seen adpressed to the nuclear envelope.

摘要

在以下植物的花粉母细胞(p.m.cs)的电子显微照片中展示了联会复合体:披针叶贝母、葱、紫花紫娇花、紫灯藓、绿花仙灯花以及郁金香品种凯泽克伦。结合植物联会复合体的精细结构以及其中观察到的一种畸形情况,讨论了其侧生元件为管状结构的可能性。对表明复合体中的侧生元件和中央元件均为核糖核蛋白结构的证据进行了评估。讨论了短暂水处理对绿花仙灯花花粉母细胞偶线期染色质和联会复合体的影响,尤其提及了当时在侧生元件之间看到的两条精确排列的轴向链。对贝母花粉母细胞减数分裂前间期和早细线期阶段的检查显示,细线期形成的轴向核心首先在异染色质区域形成,在该物种中,这些区域锁定在染色中心中,直至粗线期。此外,在细线期,这些部位的染色质比包括减数分裂前间期、减数分裂后续阶段以及分生组织有丝分裂周期在内的任何其他时期都更加解聚(弥散)。有人提出,细线期开始时染色中心中染色质的弥散状态,为促进异染色质区段的同源配对提供了必要的运动自由度。核仁位置的变化表明了这种运动的存在,核仁在减数分裂前间期早期处于更中心的位置,而在细线期开始时移至周边位置,此时可见它们紧贴核膜。

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