通过电磁场萌发研究优化大豆作为生物燃料资源

D. Sleper, M. Pathan, B. Camps-Raga, Somsak Tantong, Phumin Kirawanich, James E. Thompson, N. Islam
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引用次数: 3

摘要

研究人员将代号为“麦哲伦”(Magellan)的大豆种子分成五组,并在实验室内以不同强度的功率、频率和时间暴露在电磁场中。暴露处理后的种子按照美国种子分析协会制定的程序发芽。每组各100粒种子按上述程序萌发,并记录发芽率。每种处理的另外10颗种子,包括对照组,被人工碾碎,放在单独的试管中进行脂肪酸分析。温室处理结果证实了电磁场对大豆发芽的影响。此外,不同遗传背景的大豆品系在种子发芽率方面可能对电磁场有不同的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of soybeans as a biofuel resource through germination studies under electromagnetic fields
Soybean seeds codenamed Magellan that can be used as future resources of biofuels were separated into five groups and exposed with electromagnetic fields inside the test chamber with different intensity levels of power, frequency, and time. Seeds after exposure treatments were germinated according to the procedures established by the American Association of Seed Analysts. A hundred seeds from each group were germinated according to these procedures and the percent germination was recorded. Another ten seeds from each treatment, including controls, were manually crushed and placed in separate test tubes for fatty acid analyses. The processed results from the greenhouse confirm effects of electromagnetic fields on the soybean germination. In addition, it is possible that soybean lines with different genetic backgrounds may respond differently to electromagnetic fields in terms of percent seed germination.
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