Department of Botany, School of Biology, Aristotle University of Thessaloniki, GR-541 24 Thessaloniki, Greece.
Physiol Plant. 2013 Feb;147(2):169-80. doi: 10.1111/j.1399-3054.2012.01652.x. Epub 2012 Jun 23.
Hexavalent chromium [Cr(VI)] is an accumulating environmental pollutant due to anthropogenic activities, toxic for humans, animals and plants. Therefore, the effects of Cr(VI) on dividing root cells of lentil (Lens culinaris) were investigated by tubulin immunofluorescence and DNA staining. In Cr(VI)-treated roots, cell divisions were perturbed, the chromosomes formed irregular aggregations, multinucleate cells were produced and tubulin clusters were entrapped within the nuclei. All cell cycle-specific microtubule (MT) arrays were affected, indicating a stabilizing effect of Cr(VI) on the MTs of L. culinaris. Besides, a time- and concentration-dependent gradual increase of acetylated α-tubulin, an indicator of MT stabilization, was observed in Cr(VI)-treated roots by both immunofluorescence and western blotting. Evidence is also provided that reactive oxygen species (ROS) caused by Cr(VI), determined with the specific marker dichlorofluorescein, may be responsible for MT stabilization. Combined treatments with Cr(VI) and oryzalin revealed that Cr(VI) overcomes the depolymerizing ability of oryzalin, as it does experimentally introduced hydrogen peroxide, further supporting its stabilizing effect. In conclusion, it is suggested that the mitotic aberrations caused by Cr(VI) in L. culinaris root cells may be the result of MT stabilization rather than depolymerization, which consequently disturbs MT dynamics and their related functions.
六价铬 [Cr(VI)] 是一种由于人为活动而积累的环境污染物,对人类、动物和植物都具有毒性。因此,通过微管蛋白免疫荧光和 DNA 染色研究了六价铬对豌豆(Lens culinaris)分裂根细胞的影响。在六价铬处理的根中,细胞分裂受到干扰,染色体形成不规则聚集,多核细胞产生,微管蛋白簇被困在核内。所有细胞周期特异性微管(MT)阵列都受到影响,表明 Cr(VI) 对 L. culinaris 的 MT 具有稳定作用。此外,通过免疫荧光和 Western blot 观察到,Cr(VI) 处理的根中乙酰化α-微管蛋白逐渐增加,这是 MT 稳定的一个指标,呈时间和浓度依赖性。还提供了证据表明,Cr(VI) 引起的活性氧(ROS),用特异性标记物二氯荧光素测定,可能是 MT 稳定的原因。Cr(VI) 和抑丝菌素的联合处理表明,Cr(VI) 克服了抑丝菌素的解聚能力,就像它实际上引入的过氧化氢一样,进一步支持了它的稳定作用。总之,建议 Cr(VI) 在豌豆根细胞中引起的有丝分裂异常可能是 MT 稳定而不是解聚的结果,这会干扰 MT 动力学及其相关功能。