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在四尾栅藻中,细胞生长和分裂过程对镉的敏感性存在差异。

Cell growth and division processes are differentially sensitive to cadmium in Scenedesmus quadricauda.

作者信息

Bisová K, Hendrychová J, Cepák V, Zachleder V

机构信息

Laboratory of Cell Cycles, Division of Autotrophic Microorganisms, Institute of Microbiology, Academy of Sciences of the Czech Republic, 379 81 Trebon, Czechia.

出版信息

Folia Microbiol (Praha). 2003;48(6):805-16. doi: 10.1007/BF02931518.

Abstract

The effect of cadmium on growth processes (accumulation of RNA, proteins and cell volume), cell cycle reproductive events (DNA replication, mitosis, protoplast fission and daughter-cell formation) and the regulatory activity of histone H1 kinases were monitored in synchronized cultures of the chlorococcal alga Scenedesmus quadricauda. Distinct dosage-dependent inhibitory effects of cadmium ions were found in individual growth and reproductive processes. At concentration of about 60 mumol/L CdCl2, the growth processes were slowed down after about half of the cell cycle but the cells grew to the same or larger size than did untreated cells. At higher concentration, the growth became progressively inhibited, being completely blocked above 240 mumol/L. Total RNA accumulation was the most sensitive growth process. Each of the reproductive events was a target for cadmium ions with increasing sensitivity in the following order: DNA replication, mitosis, protoplast fission and daughter cell formation. Throughout the entire experiment, the activity of "mitosis-specific" histone H1 kinases was negligible in the cadmium (60 mumol/L CdCl2) treated cultures, whilst that of the control culture varied, peaking just prior to nuclear divisions. The activity of "growth-associated" histone H1 kinases was not affected by cadmium ions. No effect was found if cadmium was present during the precommitment period. The longer the period in the presence of cadmium, the stronger inhibition of reproductive events.

摘要

在绿球藻四角栅藻的同步培养物中,监测了镉对生长过程(RNA、蛋白质积累和细胞体积)、细胞周期繁殖事件(DNA复制、有丝分裂、原生质体分裂和子细胞形成)以及组蛋白H1激酶调节活性的影响。在个体生长和繁殖过程中发现了镉离子明显的剂量依赖性抑制作用。在约60μmol/L CdCl2浓度下,生长过程在约半个细胞周期后减缓,但细胞生长到与未处理细胞相同或更大的尺寸。在更高浓度下,生长逐渐受到抑制,在240μmol/L以上完全受阻。总RNA积累是最敏感的生长过程。每个繁殖事件都是镉离子的作用靶点,敏感性依次增加:DNA复制、有丝分裂、原生质体分裂和子细胞形成。在整个实验过程中,在镉(60μmol/L CdCl2)处理的培养物中,“有丝分裂特异性”组蛋白H1激酶的活性可忽略不计,而对照培养物的活性则有所变化,在核分裂前达到峰值。“生长相关”组蛋白H1激酶的活性不受镉离子影响。在预暴露期存在镉时未发现影响。镉存在的时间越长,对繁殖事件的抑制作用越强。

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