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生长素诱导的烟草悬浮细胞中转录翻译 mRNA 的快速变化。

Auxin-induced rapid changes in translatable mRNAs in tobacco cell suspension.

机构信息

Department of Plant Molecular Biology, Botanical Laboratory, University of Leiden, Nonnensteeg 3, NL-2311 VJ, Leiden, The Netherlands.

出版信息

Planta. 1987 Dec;172(4):514-9. doi: 10.1007/BF00393868.

Abstract

When 2,4-dichlorophenoxyacetic acid (2,4-D)-dependent tobacco cell suspensions, one normal and one transformed by Agrobacterium tumefaciens, were subcultured on hormone-lacking medium the stationary phase of the cell cycle was reached earlier than on medium containing 2,4-D. Addition of the auxin 2,4-D could restore cell division activity within 10-12 h for the most rapidly reacting cell line. The cell-division response was characterized as being auxin-specific and optimal with 2,4-D at 2.2 10(-6) M. Although the cell lines used showed different characteristics, both reacted with a rapid increase in at least three mRNA species within 1 or 2 h after 2,4-D application. Two, 2,4-D-induced protein spots, seen after in-vitro translation, had the same characteristics (MWs 35 kilodaltons (kDa) and 25 kDa with isoelectric points of 7.1 and 6.3, respectively) in both cell lines. Water-treated controls did not show alterations in the translatable mRNA populations. This indicates that the accumulation of the corresponding mRNAs is an early hormone-induced event. Since cell division is the only measurable reaction found after auxin application, cell systems as described here offer excellent possibilities for studying early auxin-induced changes at the molecular level preceding mitosis.

摘要

当 2,4-二氯苯氧乙酸(2,4-D)依赖的烟草细胞悬浮液,一个正常的和一个被根瘤农杆菌转化的,在缺乏激素的培养基上继代培养时,细胞周期的静止期比在含有 2,4-D 的培养基上更早到达。添加生长素 2,4-D 可以在 10-12 小时内恢复最快速反应细胞系的细胞分裂活性。细胞分裂反应被描述为对生长素特异性的,在 2,4-D 为 2.2×10(-6)M 时最佳。尽管所使用的细胞系表现出不同的特性,但两者在 2,4-D 应用后 1 或 2 小时内,至少有三种 mRNA 物种的快速增加反应。在两种细胞系中,经过体外翻译后,发现有两种 2,4-D 诱导的蛋白质斑点具有相同的特征(MWs 35 千道尔顿(kDa)和 25 kDa,等电点分别为 7.1 和 6.3)。用水处理的对照没有显示可翻译的 mRNA 群体的变化。这表明相应的 mRNAs 的积累是激素诱导的早期事件。由于细胞分裂是在生长素应用后发现的唯一可测量的反应,因此所描述的细胞系统为研究有丝分裂前的早期生长素诱导的分子水平变化提供了极好的可能性。

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