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淡水有毒蓝藻导致苹果(Malus pumila)、油菜(Brassica napus)和水稻(Oryza sativa)的 DNA 损伤。

Freshwater toxic cyanobacteria induced DNA damage in apple (Malus pumila), rape (Brassica napus) and rice (Oryza sativa).

机构信息

School of Life Science, Huzhou University, Huzhou 313000, PR China.

出版信息

J Hazard Mater. 2011 Jun 15;190(1-3):240-4. doi: 10.1016/j.jhazmat.2011.03.030. Epub 2011 Mar 17.

Abstract

Cyanobacteria in freshwater ecosystems can present a harmful effect on growth and development of plants through irrigation with contaminated water. In this study, the effects of microcystins (MCs)-containing cyanobacteria extract (CE) on DNA damage of apple, rape and rice were investigated to explore the phytotoxic mechanism of MCs through DNA fragmentation and RAPD analysis. Determination of DNA fragmentation by fluorescent dye DAPI showed that significant DNA damage was observed in rice seedlings after exposure to CE while DNA fragmentation in rape seedlings and apple cultures did not differ significantly between treatment and control groups. Qualitative characterization of genomic DNA fragmentation by agarose gel electrophoresis supported the quantitative determination using DAPI. The main changes in RAPD profiles of rape seedlings following exposure of lower doses of CE were variation in band intensity for the primers F03 and S01, while higher doses of CE caused loss of normal bands and appearance of new bands except band intensity changes. The data presented here demonstrate that DNA damage in plants occurs following exposure of microcystins, and the polymorphic RAPDs may be used as an investigation tool for environmental toxicology and as a useful biomarker for the detection of genotoxic effects of microcystins on plants.

摘要

淡水生态系统中的蓝藻通过受污染的水灌溉可能会对植物的生长和发育产生有害影响。在这项研究中,通过 DNA 片段化和 RAPD 分析研究了含有微囊藻毒素(MCs)的蓝藻提取物(CE)对苹果、油菜和水稻 DNA 损伤的影响,以探索 MCs 的植物毒性机制。用荧光染料 DAPI 测定 DNA 片段化表明,暴露于 CE 后,水稻幼苗中观察到明显的 DNA 损伤,而油菜幼苗和苹果培养物的 DNA 片段化在处理组和对照组之间没有显著差异。琼脂糖凝胶电泳对基因组 DNA 片段化的定性描述支持了使用 DAPI 的定量测定。暴露于较低剂量 CE 后,油菜幼苗 RAPD 图谱的主要变化是引物 F03 和 S01 的带强度发生变化,而较高剂量的 CE 除了带强度变化外,还会导致正常带的丢失和新带的出现。这里提出的数据表明,微囊藻毒素暴露后植物会发生 DNA 损伤,多态性 RAPD 可作为环境毒理学的研究工具,也可作为检测微囊藻毒素对植物遗传毒性影响的有用生物标志物。

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