Sembada Anca Awal, Maki Shinya, Faizal Ahmad, Fukuhara Toshiyuki, Suzuki Takeshi, Lenggoro I Wuled
Chemical Engineering Program, Graduate School of Engineering, Tokyo University of Agriculture and Technology, Koganei 184-8588, Tokyo, Japan.
Department of Science of Technology Innovation, Nagaoka University of Technology, Nagaoka 940-2188, Niigata, Japan.
Nanomaterials (Basel). 2023 Jul 19;13(14):2110. doi: 10.3390/nano13142110.
The addition of nanoparticles has been reported to be an effective strategy for enhancing seed germination, but the underlying mechanisms whereby this occurs are unclear. In the present study, we added silica nanoparticles (SiNPs) to an aqueous growth medium in which tomato seeds were germinated. We examined the effects of SiNPs on growth and possible mechanisms of action. SiNPs had a diameter of 10-17 nm and 110-120 nm. SiNPs shortened the mean germination time from 5.24 ± 0.29 days to 4.64 ± 0.29 days. Seedling vigor, measured by criteria including length and weight, was also improved compared to the control condition. The presence of SiNPs in the seedlings was assessed using an X-ray fluorescence spectrometer. The nanoparticles may have promoted germination by enhancing water imbibition by the seeds or altering the external microenvironment. Scanning electron microscopy revealed changes in the seed coat during germination, many of which were only observed in the presence of nanoparticles. Soil bacteria affect germination; specifically, sp. may promote germination. The number of sp. changed in the germination medium with SiNPs compared to the control. This suggested that these bacteria could interact with SiNPs to promote germination.
据报道,添加纳米颗粒是提高种子发芽率的有效策略,但其发生的潜在机制尚不清楚。在本研究中,我们将二氧化硅纳米颗粒(SiNPs)添加到番茄种子发芽的水培生长培养基中。我们研究了SiNPs对生长的影响及其可能的作用机制。SiNPs的直径为10 - 17纳米和110 - 120纳米。SiNPs将平均发芽时间从5.24±0.29天缩短至4.64±0.29天。与对照条件相比,通过包括长度和重量等标准衡量的幼苗活力也有所提高。使用X射线荧光光谱仪评估幼苗中SiNPs的存在情况。纳米颗粒可能通过增强种子的水分吸收或改变外部微环境来促进发芽。扫描电子显微镜显示发芽过程中种皮的变化,其中许多变化仅在纳米颗粒存在时才观察到。土壤细菌影响发芽;具体而言, sp. 可能促进发芽。与对照相比,含有SiNPs的发芽培养基中 sp. 的数量发生了变化。这表明这些细菌可能与SiNPs相互作用以促进发芽。