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Effects of carbon-based nanomaterials on seed germination, biomass accumulation and salt stress response of bioenergy crops

机译:碳基纳米材料对生物能源作物种子萌发,生物量积累和盐胁迫响应的影响

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摘要

Bioenergy crops are an attractive option for use in energy production. A good plant candidate for bioenergy applications should produce a high amount of biomass and resist harsh environmental conditions. Carbon-based nanomaterials (CBNs) have been described as promising seed germination and plant growth regulators. In this paper, we tested the impact of two CBNs: graphene and multi-walled carbon nanotubes (CNTs) on germination and biomass production of two major bioenergy crops (sorghum and switchgrass). The application of graphene and CNTs increased the germination rate of switchgrass seeds and led to an early germination of sorghum seeds. The exposure of switchgrass to graphene (200 mg/l) resulted in a 28% increase of total biomass produced compared to untreated plants. We tested the impact of CBNs on bioenergy crops under salt stress conditions and discovered that CBNs can significantly reduce symptoms of salt stress imposed by the addition of NaCl into the growth medium. Using an ion selective electrode, we demonstrated that the concentration of Na+ ions in NaCl solution can be significantly decreased by the addition of CNTs to the salt solution. Our data confirmed the potential of CBNs as plant growth regulators for non-food crops and demonstrated the role of CBNs in the protection of plants against salt stress by desalination of saline growth medium.
机译:生物能源作物是用于能源生产的有吸引力的选择。生物能源应用的良好候选植物应产生大量生物质并抵抗恶劣的环境条件。碳基纳米材料(CBN)已被描述为有前途的种子发芽和植物生长调节剂。在本文中,我们测试了两种CBN:石墨烯和多壁碳纳米管(CNT)对两种主要生物能源作物(高粱和柳枝switch)的发芽和生物量生产的影响。石墨烯和碳纳米管的应用提高了柳枝seeds种子的发芽率,并导致了高粱种子的早期发芽。与未经处理的植物相比,柳枝200暴露于石墨烯(200 mg / l)导致产生的总生物量增加了28%。我们测试了盐胁迫条件下CBNs对生物能源作物的影响,发现CBNs可以显着减少因在生长培养基中添加NaCl而施加的盐胁迫症状。使用离子选择性电极,我们证明了通过向盐溶液中添加CNT可以显着降低NaCl溶液中Na + 离子的浓度。我们的数据证实了CBNs作为非粮食作物植物生长调节剂的潜力,并证明了CBNs在盐水生长培养基脱盐中保护植物免受盐胁迫的作用。

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