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利用环保磁场和电场刺激大豆种子。

Stimulation of soy seeds using environmentally friendly magnetic and electric fields.

机构信息

Department of Biophysics, University of Life Sciences in Lublin, Akademicka 13, 20-950, Lublin, Poland.

Department of Analysis and Differential Equations, University of Warmia and Mazury in Olsztyn, Słoneczna 54, 10-710, Olsztyn, Poland.

出版信息

Sci Rep. 2023 Oct 23;13(1):18085. doi: 10.1038/s41598-023-45134-y.

Abstract

The study analyses the impact of alternating (magnetic induction B = 30 mT for t = 60 s) and constant magnetic fields (B = 130 mT for t = 17 h) and alternating electric fields (electric current E = 5 kV/cm for t = 60 s) on various growth parameters of soy plants: the germination energy and capacity, plants emergence, the fresh mass of seedlings, protein content (Kjeldahl's method), and photosynthetic parameters (with MINI-PAM 2000 WALTZ Photosynthesis Yield Analyser and a SPAD-502 Chlorophyll Meter). Four cultivars were used: MAVKA, MERLIN, VIOLETTA, and ANUSZKA. Moreover, the advanced Machine Learning processing pipeline was proposed to distinguish the impact of physical factors on photosynthetic parameters. The use of electromagnetic fields had a positive impact on the germination rate in MERLIN seeds. The best results in terms of germination improvement were observed for alternating magnetic field stimulation in all cultivars (p > 0.05). For the VIOLETTA cultivar an increase (p > 0.05) in the emergence and overall number of plants as well as fresh mass was observed after electromagnetic field stimulation. For the MAVKA and MERLIN cultivars, the concentration of proteins in the leaves was noticeably higher in plants grown from seeds stimulated using a constant magnetic field.

摘要

该研究分析了交变磁场(B=30mT,t=60s)和恒定磁场(B=130mT,t=17h)以及交变电场(E=5kV/cm,t=60s)对大豆植株各种生长参数的影响:发芽能量和活力、植株出苗、幼苗的鲜重、蛋白质含量(凯氏定氮法)和光合作用参数(使用 MINI-PAM 2000 WALTZ 光合作用产量分析仪和 SPAD-502 叶绿素计)。使用了四个品种:MAVKA、MERLIN、VIOLETTA 和 ANUSZKA。此外,还提出了先进的机器学习处理管道来区分物理因素对光合作用参数的影响。电磁场的使用对 MERLIN 种子的发芽率有积极影响。在所有品种中,交变磁场刺激对发芽率的提高效果最好(p>0.05)。对于 VIOLETTA 品种,在电磁场刺激后,出苗率和植物总数以及鲜重都有所增加(p>0.05)。对于 MAVKA 和 MERLIN 品种,用恒定磁场刺激种子生长的植物叶片中的蛋白质浓度明显更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/603e/10593769/e19a1432067c/41598_2023_45134_Fig1_HTML.jpg

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