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Nanoparticles effects on growth and differentiation in cell culture of carrot (Daucus carota L.).

机译:纳米颗粒对胡萝卜( Daucus carota L.)细胞生长和分化的影响。

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摘要

Nanoparticles (NPs) effects on developmental processes like cell growth, de-differentiation, and embryogenesis were analyzed using the in vitro model system of Daucus carota L. somatic embryogenesis. Fe3O4 NPs, 6 nm diameter, were dispensed at doses ranging from 2.01 to 33.5 mg/l to carrot in vitro cultures at different times, along the stages of cell growth and embryogenic differentiation. Moreover, the mitotic index of cell cultures under treatments has been cytologically determined. The results demonstrated that Fe3O4 NPs exposure from 2.01 to 6.70 mg/l slightly affected growth, mitotic index, and de-differentiation. At the dose of 20.10 mg/l cell growth and relative mitotic index dropped dramatically, and stopped completely at 33.5 mg/l. Moreover, these higher doses, entirely blocked embryo formation when treatments were done along somatic embryogenesis induction. Therefore, this model system seems well suited to check NPs impact on developmental processes.
机译:使用 Daucus carota L.体细胞胚发生的体外模型系统分析了纳米颗粒(NPs)对细胞生长,去分化和胚发生等发育过程的影响。将直径为6 nm的Fe 3 O 4 NPs以2.01至33.5 mg / l的剂量分配到不同培养条件下的胡萝卜体外时代,沿着细胞生长和胚胎发生分化的阶段。此外,已经在细胞学上确定了在处理下的细胞培养物的有丝分裂指数。结果表明,Fe 3 O 4 NPs暴露于2.01至6.70 mg / l对生长,有丝分裂指数和去分化有轻微影响。在20.10 mg / l的剂量下,细胞生长和相对有丝分裂指数急剧下降,并在33.5 mg / l时完全停止。而且,当沿着体细胞胚发生诱导进行治疗时,这些较高剂量完全阻断了胚胎形成。因此,该模型系统似乎非常适合检查NP对发展过程的影响。

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