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对诱导进行同步细胞分裂的植物组织培养物中信使核糖核酸和核糖体核糖核酸合成的研究。

Studies on messenger and ribosomal RNA synthesis in plant tissue cultures induced to undergo synchronus cell division.

作者信息

Fraser R S

出版信息

Eur J Biochem. 1975 Jan 15;50(3):529-37. doi: 10.1111/j.1432-1033.1975.tb09893.x.

Abstract

Messenger and ribosomal RNA metabolism was tudied in a plant tissue culture system: cells from the quiescent tubers of Helianthus tuberosus (Jerusalem artichoke) were induced to divide synchronously and dedeifferentiate by excision and culture of explants in nutrient medium. Large accumulations of ribosomal RNA and protein started early in the 20-h lag-period preceding the first division. In pulse-labelling experiments, two types of polydisperse messenger-like RNAs were detected one with and one without a poly(adenylic acid) sequence. In the first 2 h of culture the two polydisperse RNA fractions were the predominant types of RNA synthesised. Ribosomal RNA synthesis was very low during the first 2 h, but acclerated later. Low concentrations of actinomycin-D strongly inhibited ribosomal RNA synthesis, but had little effect on the synthesis of transfer RNA or either type of polydisperse messenger-like RNA. In explants cultured with low concentrations of actinomycin-D ribosomal RNA accumulation was completely inhibited, but cell division and protein accumulation occurred, though at a reduced rate. It is concluded that the synthesis and accumulation of new ribosomal RNA which normally occur during culture are not required for the induction of cell division or for protein accumulation, i.e. the ribosomal RNA existing in the quiescent tuver cells can support protein accumulation and cell division induced by excision and culture. The quiescent tuber tissue is also shown to contain significant amounts of messenger-like RNA.

摘要

在一个植物组织培养系统中研究了信使核糖核酸(mRNA)和核糖体核糖核酸(rRNA)的代谢:通过切除菊芋(洋姜)休眠块茎的外植体并在营养培养基中培养,诱导其细胞同步分裂并去分化。在第一次分裂前20小时的延迟期早期,核糖体RNA和蛋白质大量积累。在脉冲标记实验中,检测到两种多分散的类信使RNA,一种带有聚腺苷酸序列,另一种没有。在培养的最初2小时内,这两种多分散RNA组分是合成的主要RNA类型。在最初2小时内,核糖体RNA合成非常低,但随后加速。低浓度的放线菌素-D强烈抑制核糖体RNA合成,但对转移RNA或任何一种多分散类信使RNA的合成影响很小。在用低浓度放线菌素-D培养的外植体中,核糖体RNA积累被完全抑制,但细胞分裂和蛋白质积累仍会发生,不过速率降低。得出的结论是,培养过程中正常发生的新核糖体RNA的合成和积累对于细胞分裂的诱导或蛋白质积累并非必需,即休眠块茎细胞中存在的核糖体RNA能够支持由切除和培养诱导的蛋白质积累和细胞分裂。还表明休眠块茎组织含有大量的类信使RNA。

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