首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Effects of bisphenol A on the microtubule arrays in root meristematic cells of Pisum sativum L.
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Effects of bisphenol A on the microtubule arrays in root meristematic cells of Pisum sativum L.

机译:双酚A对Pisum Sativum L.根系细胞中微管阵列的影响。

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Bisphenol A (BPA), a widely used chemical in the plastics industry that displays weak oestrogenic properties, is an emerging environmental pollutant, potentially harmful to living organisms. The presumed cytotoxicity of BPA to plant cells has been poorly studied. To understand how BPA might influence plant cell division and affect the underlying cytoskeleton, the effects of BPA on the microtubule (MT) arrays of meristematic root-tip cells of Pisum sativum L. were investigated. Root tips of young seedlings were exposed to 20, 50 and 100mg/L BPA for 1, 3, 6, 12 and 24h. The effects of each treatment were determined by means of confocal laser scanning microscopy after immunolabelling of tubulin and counterstaining of DNA, and by use of light and transmission electron microscopy. It was found that BPA affected normal chromosome segregation, hampered the completion of cytokinesis and deranged interphase and mitotic MT arrays. BPA effects were dependent on the stage of each cell at the time of BPA entrance. Moreover, BPA induced the formation of macrotubules with a mean diameter of 32 ± 0.14 nm, compared with 23 ± 0.70 nm for the MT arrays in untreated cells. Finally, all MT arrays and macrotubules were depolymerised upon longer treatment. Taken together, the data suggest that BPA exerts acute anti-mitotic effects on meristematic root-tip cells of P. sativum, MT arrays constitute a primary sub-cellular target of BPA toxicity, and the manifested chromosomal abnormalities could be attributed to the disruption of the MT cytoskeleton.
机译:双酚A(BPA)是塑料行业中广泛使用的化学品,呈现出弱的雌激素性质,是一种新兴的环境污染物,可能对生物有害。 BPA对植物细胞的推定细胞毒性已经很差。为了了解BPA如何影响植物细胞分裂并影响底层细胞骨架,研究了BPA对Pisum Sativum L的微管(MT)阵列的微管(MT)阵列。幼苗的根尖暴露于20,50和100mg / L BPA,1,3,6,12和24h。通过同学激光扫描显微镜在免疫引出的微管蛋白和DNA占据后,通过使用光和透射电子显微镜来确定每种处理的效果。发现BPA影响正常染色体隔离,阻碍了细胞因子和紊乱间和有丝分裂MT阵列的完成。 BPA效应依赖于BPA入口时每种细胞的阶段。此外,BPA诱导形成平均直径为32±0.14nm的Macrotubules的形成,而未处理细胞中的MT阵列的23±0.70nm。最后,所有MT阵列和Macrotubules在更长的处理时被解聚。该数据表明,BPA对P. Sativum的共同根尖细胞施加急性抗丝分裂作用,Mt阵列构成了BPA毒性的主要亚细胞靶,并且表现染色体异常可能归因于破坏Mt细胞骨架。

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