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植物分生组织细胞核仁中DNA在激活过程中以及随后冷胁迫失活过程中的超微结构分布。

Ultrastructural distribution of DNA within plant meristematic cell nucleoli during activation and the subsequent inactivation by a cold stress.

作者信息

Mineur P, Jennane A, Thiry M, Deltour R, Goessens G

机构信息

Service de Morphologie Végétale, Université de Liège, Bd du Rectorat B22, Sart-Tilman Liège, B-4000, Belgium.

出版信息

J Struct Biol. 1998 Nov;123(3):199-210. doi: 10.1006/jsbi.1998.4038.

Abstract

We have investigated the precise location of DNA within the meristematic cell nucleolus of Zea mays root cells and Pisum sativum cotyledonary buds, in the course of their activation and induced inactivation following a subsequent treatment at low temperature. For this purpose, we combined the acetylation method, providing an excellent distinction between the various nucleolar components, with the in situ terminal deoxynucleotidyl transferase-immunogold technique, a highly sensitive method for detecting DNA at the ultrastructural level. In addition to the presence of DNA in the condensed chromatin associated with the nucleolus, we demonstrated that a significant label was detected in the nucleolus of quiescent cells in both plant models. Evident labels were also found in the dense fibrillar component of actived nucleoli. Whereas in inactivated nucleoli no significant label was observed within the dense fibrillar component, an intense label was seen over the large heterogeneous fibrillar centres only during inactivation. The granular component was never significantly labelled. These results appear to indicate that the DNA present in the dense fibrillar component of activated nucleoli withdraws from this structure during its inactivation and becomes incorporated in the large fibrillar centres. These observations suggest that in plant cells inactivation of rRNA genes is clearly accompanied by changes in the conformation of ribosomal chromatin.

摘要

我们研究了在低温处理后激活和诱导失活过程中,玉米根细胞和豌豆子叶芽的分生组织细胞核仁中DNA的精确位置。为此,我们将能出色区分各种核仁成分的乙酰化方法与原位末端脱氧核苷酸转移酶免疫金技术联用,后者是在超微结构水平检测DNA的高灵敏度方法。除了在与核仁相关的凝聚染色质中存在DNA外,我们还证明在这两种植物模型的静止细胞的核仁中检测到显著标记。在激活的核仁的致密纤维成分中也发现了明显的标记。而在失活的核仁中,在致密纤维成分中未观察到显著标记,仅在失活期间在大型异质纤维中心上看到强烈标记。颗粒成分从未被显著标记。这些结果似乎表明,激活的核仁致密纤维成分中存在的DNA在其失活过程中从该结构中撤出,并并入大型纤维中心。这些观察结果表明,在植物细胞中,rRNA基因的失活显然伴随着核糖体染色质构象的变化。

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