Department of Applied Science, University of Arkansas at Little Rock, Arkansas 72204, USA.
ACS Nano. 2012 Mar 27;6(3):2128-35. doi: 10.1021/nn204643g. Epub 2012 Feb 29.
Carbon nanotubes have shown promise as regulators of seed germination and plant growth. Here, we demonstrate that multiwalled carbon nanotubes (MWCNTs) have the ability to enhance the growth of tobacco cell culture (55-64% increase over control) in a wide range of concentrations (5-500 μg/mL). Activated carbon (AC) stimulated cell growth (16% increase) only at low concentrations (5 μg/mL) while dramatically inhibited the cellular growth at higher concentrations (100-500 μg/mL). We found a correlation between the activation of cells growth exposed to MWCNTs and the upregulation of genes involved in cell division/cell wall formation and water transport. The expression of the tobacco aquaporin (NtPIP1) gene, as well as production of the NtPIP1 protein, significantly increased in cells exposed to MWCNTs compared to control cells or those exposed to AC. The expression of marker genes for cell division (CycB) and cell wall extension (NtLRX1) was also up-regulated in cells exposed to MWCNTs compared to control cells or those exposed to activated carbon only.
碳纳米管在调节种子萌发和植物生长方面表现出了很大的潜力。在这里,我们证明了多壁碳纳米管(MWCNTs)能够在广泛的浓度范围内(5-500 μg/mL)增强烟草细胞培养物的生长(比对照增加 55-64%)。活性炭(AC)仅在低浓度(5 μg/mL)下刺激细胞生长(增加 16%),而在较高浓度(100-500 μg/mL)下则显著抑制细胞生长。我们发现,暴露于 MWCNTs 的细胞生长的激活与参与细胞分裂/细胞壁形成和水分运输的基因的上调之间存在相关性。与对照细胞或仅暴露于活性炭的细胞相比,暴露于 MWCNTs 的烟草水通道蛋白(NtPIP1)基因的表达以及 NtPIP1 蛋白的产生显著增加。与对照细胞或仅暴露于活性炭的细胞相比,暴露于 MWCNTs 的细胞中细胞分裂(CycB)和细胞壁延伸(NtLRX1)的标记基因的表达也上调。