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暴露于单壁碳纳米管会对 Thymus daenensis celak. 幼苗的体外发芽、生化和抗氧化特性产生不同的影响。

Exposure to single-walled carbon nanotubes differentially affect in vitro germination, biochemical and antioxidant properties of Thymus daenensis celak. seedlings.

机构信息

Department of Horticultural Science, Faculty of Agriculture, Shiraz University, Shiraz, Iran.

Medicinal Plants Processing Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

BMC Plant Biol. 2023 Nov 20;23(1):579. doi: 10.1186/s12870-023-04599-9.

Abstract

Carbon nanomaterials such as single-walled carbon nanotubes (SWCNTs) offer a new possibility for phyto-nanotechnology and biotechnology to improve the quality and quantity of secondary metabolites in vitro. The current study aimed to determine the SWCNTs effects on Thyme (Thymus daenensis celak.) seed germination. The seedlings were further assessed in terms of morphological and phytochemical properties. Sterile seeds were cultured in vitro and treated with various concentrations of SWCNTs. Biochemical analyses were designed on seedling sample extracts for measuring antioxidant activities (AA), total flavonoids (TFC) and phenolic contents, and the main enzymes involved in oxidative reactions under experimental treatments. The results indicated that an increase in SWCNTs concentration can enhance the total percentage of seed germination. The improvement was observed in samples that received SWCNTs levels of up to 125 µg ml, even though seedling height and biomass accumulation decreased. Seedling growth parameters in the control samples were higher than those of grown in SWCNT-fortified media. This may have happened because of more oxidative damage as well as a rise in POD and PPO activities in tissues. Additionally, secondary metabolites and relevant enzyme activities showed that maximum amounts of TPC, TFC, AA and the highest PAL enzyme activity were detected in samples exposed to 62.5 µg ml SWCNTs. Our findings reveal that SWCNTs in a concentration-dependent manner has different effects on T. daenensis morphological and phytochemical properties. Microscopic images analysis revealed that SWCNTs pierce cell walls, enter the plant cells and agglomerate in the cellular cytoplasm and cell walls. The findings provide insights into the regulatory mechanisms of SWCNTs on T. daenensis growth, germination and secondary metabolites production.

摘要

碳纳米材料,如单壁碳纳米管(SWCNTs),为植物纳米技术和生物技术提供了一种新的可能性,可提高体外次生代谢物的质量和数量。本研究旨在确定 SWCNTs 对百里香(Thymus daenensis celak.)种子萌发的影响。进一步根据形态和植物化学特性评估幼苗。将无菌种子在体外培养并用不同浓度的 SWCNTs 处理。设计了幼苗样品提取物的生化分析,以测量抗氧化活性(AA)、总类黄酮(TFC)和酚类含量,以及实验处理下参与氧化反应的主要酶。结果表明,SWCNTs 浓度的增加可以提高种子总萌发率。在接受高达 125 µg ml 的 SWCNTs 水平的样品中观察到了这种改善,尽管幼苗高度和生物量积累减少。对照样品中的幼苗生长参数高于在 SWCNT 强化培养基中生长的样品。这可能是由于组织中 POD 和 PPO 活性的增加以及更多的氧化损伤所致。此外,次生代谢物和相关酶活性表明,在暴露于 62.5 µg ml SWCNTs 的样品中检测到 TPC、TFC、AA 的最大量和最高 PAL 酶活性。我们的研究结果表明,SWCNTs 以浓度依赖的方式对 T. daenensis 的形态和植物化学特性具有不同的影响。显微镜图像分析表明,SWCNTs 刺穿细胞壁,进入植物细胞,并在细胞质和细胞壁中聚集。这些发现为 SWCNTs 对 T. daenensis 生长、萌发和次生代谢产物产生的调节机制提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e82/10658928/f70feee7ba2b/12870_2023_4599_Fig1_HTML.jpg

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