首页> 外文期刊>Acta Agriculturae Slovenica >Effect of microwave radiation on seed viability, survival of Aspergillus niger van Tieghem and oil quality of oilseeds crops canola, soybean and safflower
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Effect of microwave radiation on seed viability, survival of Aspergillus niger van Tieghem and oil quality of oilseeds crops canola, soybean and safflower

机译:微波辐射对油菜籽油菜,大豆和红花种子活力,黑曲霉存活率和油品质的影响

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摘要

The effect of microwave's radiation on seed viability of three different oilseed crops, spores of Aspergillus niger and quality of extracted oil from treated seeds over various exposure times was evaluated. The seeds were exposed to 2450 MHz. at five different power levels of 0, 100, 200, 400, 600 and 800 W for two exposure times of three and five minutes. At a given time, a direct negative relationship between seed viability and microwave's radiation power level was detected. Substantial variation in the lethality of tested seeds to microwave's power levels was apparent in the fiducial limits of the estimated LD50 values in probit analysis approach. A similar trend of A. niger spores' susceptibility to microwave radiation was detected. The microwaves'radiation and exposure time did not impact one another and a significant interaction was not detected. Short term- fungal infection did not cause substantial quantitative and qualitative damage to the oilseeds. The oil quality was generally unaffected by microwave radiation and fungal infestation for tested oilseeds. Moreover, microwave radiation decreased seed germination percentage and vigor index. The microwave radiation could provide an effective and friendly environmental treatment technique for improving the dietary consumption of the oil in any seed disinfestation program.
机译:在不同的暴露时间下,评估了微波辐射对三种不同油料作物种子活力,黑曲霉孢子和从处理过的种子中提取的油的品质的影响。种子暴露于2450 MHz。在0、100、200、400、600和800 W的五个不同功率水平下,曝光时间分别为三分钟和五分钟。在给定的时间,检测到种子活力与微波辐射功率水平之间存在直接的负相关关系。在概率分析方法中估计的LD50值的基准范围内,被测种子的致死性对微波功率水平的显着变化是显而易见的。发现了黑曲霉孢子对微波辐射的相似趋势。微波的辐射时间和暴露时间没有相互影响,也没有发现明显的相互作用。短期真菌感染并未对油料种子造成实质性的定量和定性损害。对于测试的油籽,油的质量通常不受微波辐射和真菌侵染的影响。此外,微波辐射降低了种子发芽率和活力指数。微波辐射可以提供一种有效而友好的环境处理技术,以改善任何种子灭虫程序中油脂的饮食消耗。

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