Suppr超能文献

在根皮层生长和分化细胞中原位检测到的DNA聚合酶和RNA聚合酶的活性。

Activities of DNA polymerases and RNA polymerases detected in situ in growing and differentiating cells of root cortex.

作者信息

Olszewska M J, Kononowicz A K

出版信息

Histochemistry. 1979 Feb 21;59(4):311-23. doi: 10.1007/BF00689613.

Abstract

Activities of DNA polymerases and RNA polymerases were studied by autoradiographic methods in growing and differentiating root cortex cells of Zea mays - a species in which endomitosis occurs - and Tulipa kaufmanniana - in which this process does not occur. In Tulipa kaufmanniana, the highest activity of DNA polymerase appears in the nuclei of meristematic zone during the S phase of the cell cycle. In Zea mays, endomitotic replication of DNA occurs in all growth and differentiation zones and the activity of DNA polymerase in the nuclei is similar to that in the meristematic zone. In both species, nuclear RNA synthesis, measured with 3H uridine incorporation, is highest in the meristematic zone and declines steadily with development. Activity of nuclear RNA polymerase is present in all developmental zones in both species and is similar to that in the meristematic zone. 3H uridine incorporation into nucleoli decreases markedly in both species, whereas the activity of nucleolar RNA polymerase remains at a high level in all root segments in Zea mays and decreases slightly in Tulipa kaufmanniana. It is argued that the differences between the incorporation of 3H uridine and that or 3H UMP may be caused by a reduction of the pool of endogenous ribonucleoside triphosphates. Marked activities of DNA polymerase and RNA polymerase in cytoplasm are possibly related to the growth and division of plastids and mitochondria.

摘要

利用放射自显影法,对玉米(一种发生核内有丝分裂的物种)和考夫曼郁金香(不发生此过程的物种)生长和分化中的根皮层细胞中的DNA聚合酶和RNA聚合酶活性进行了研究。在考夫曼郁金香中,DNA聚合酶的最高活性出现在细胞周期S期的分生区细胞核中。在玉米中,DNA的核内有丝分裂复制发生在所有生长和分化区域,细胞核中DNA聚合酶的活性与分生区相似。在这两个物种中,用3H尿苷掺入法测定的核RNA合成在分生区最高,并随着发育而稳步下降。两个物种所有发育区域均存在核RNA聚合酶活性,且与分生区相似。在两个物种中,3H尿苷掺入核仁的量均显著减少,而玉米所有根段的核仁RNA聚合酶活性保持在较高水平,考夫曼郁金香中则略有下降。有人认为,3H尿苷掺入量与3H UMP掺入量之间的差异可能是由于内源性核糖核苷三磷酸池的减少所致。细胞质中DNA聚合酶和RNA聚合酶的显著活性可能与质体和线粒体的生长及分裂有关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验