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Effect of Using Two Different Types of Carbon Nanotubes for Blackberry (Rubus adenotrichos) in Vitro Plant Rooting, Growth and Histology

机译:黑莓(Rubus adenotrichos)使用两种不同类型的碳纳米管对植物生根,生长和组织学的影响

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Nanoparticles are able to interact with biomolecules, creating functional nanosystems for transportation within in vivo cells, and leading to the study of their potential applications in the field of plant biotechnology. Therefore, the aim of this research was to determine the growth and rooting effect of functionalized (SWCNTs-COOH) and non-functionalized nanoparticles with iron residue inner particles (SWCNTs-Fe) in blackberry (Rubus adenotrichos) in vitro plants. Two types of SWCNTs were used, both of them characterized in a solid sample through Raman spectroscopy (λ = 532 nm) showing differences in the G band between SWCNT + Fe and SWCNT + COOH. The in vitro plants (approximately 15 mm length) were inoculated in a rooting medium. Six treatments were established: 4, 8, 12 μg/ml for each type of SWCNTs and a control without nanotubes. The assessed variables consisted of the average number of days for root emergence, average number of roots per plant, average root length per plant and the average stem length. This study determined that, in general, the SWCNTs-COOH promoted the growth of the in vitro plants under this assay, when compared to the SWCNTs-Fe trials. The lowest SWCNTs-COOH dose evidenced the best results for the assessed variables. Additionally, the histological analysis also evidenced that the plants treated with SWCNTs-COOH nanotubes (4 μg/ml) increased their cellular metabolism when compared to the control group.
机译:纳米粒子能够与生物分子相互作用,创建在体内细胞内运输的功能纳米系统,并导致对其在植物生物技术领域的潜在应用的研究。因此,本研究的目的是确定功能化的(SWCNTs-COOH)和非功能化的带有铁残留内颗粒(SWCNTs-Fe)的纳米颗粒在黑莓(Rubus adenotrichos)体外植物中的生长和生根效果。使用了两种类型的SWCNT,它们均通过拉曼光谱法(λ= 532 nm)表征为固体样品,显示出SWCNT + Fe和SWCNT + COOH之间的G带差异。将体外植物(约15mm长)接种在生根培养基中。建立了六种处理方法:每种类型的SWCNT分别为4、8、12μg/ ml,无纳米管的对照组。评估的变量包括平均出根天数,每株植物的平均根数,每株植物的平均根长和平均茎长。这项研究确定,与SWCNTs-Fe试验相比,在此试验下,SWCNTs-COOH通常促进了体外植物的生长。最低的SWCNTs-COOH剂量证明了评估变量的最佳结果。此外,组织学分析还证明,与对照组相比,用SWCNTs-COOH纳米管(4μg/ ml)处理的植物增加了其细胞代谢。

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