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将鹰嘴豆(Cicer arietinum L.)种子暴露于静磁场可提高其发芽率和早期生长特性。

Exposure of seeds to static magnetic field enhances germination and early growth characteristics in chickpea (Cicer arietinum L.).

作者信息

Vashisth Ananta, Nagarajan Shantha

机构信息

Division of Agricultural Physics, Indian Agricultural Research Institute, New Delhi 110012, India.

出版信息

Bioelectromagnetics. 2008 Oct;29(7):571-8. doi: 10.1002/bem.20426.

Abstract

Seeds of chickpea (Cicer arietinum L.) were exposed in batches to static magnetic fields of strength from 0 to 250 mT in steps of 50 mT for 1-4 h in steps of 1 h for all fields. Results showed that magnetic field application enhanced seed performance in terms of laboratory germination, speed of germination, seedling length and seedling dry weight significantly compared to unexposed control. However, the response varied with field strength and duration of exposure without any particular trend. Among the various combinations of field strength and duration, 50 mT for 2 h, 100 mT for 1 h and 150 mT for 2 h exposures gave best results. Exposure of seeds to these three magnetic fields improved seed coat membrane integrity as it reduced the electrical conductivity of seed leachate. In soil, seeds exposed to these three treatments produced significantly increased seedling dry weights of 1-month-old plants. The root characteristics of the plants showed dramatic increase in root length, root surface area and root volume. The improved functional root parameters suggest that magnetically treated chickpea seeds may perform better under rainfed (un-irrigated) conditions where there is a restrictive soil moisture regime.

摘要

将鹰嘴豆(Cicer arietinum L.)种子分批暴露于强度为0至250 mT的静磁场中,磁场强度以50 mT为步长递增,暴露时间为1至4小时,各磁场强度下暴露时间以1小时为步长递增。结果表明,与未暴露的对照相比,施加磁场显著提高了种子在实验室发芽、发芽速度、幼苗长度和幼苗干重方面的表现。然而,响应随磁场强度和暴露持续时间而变化,没有任何特定趋势。在磁场强度和持续时间的各种组合中,暴露于50 mT 2小时、100 mT 1小时和150 mT 2小时的处理效果最佳。种子暴露于这三种磁场中可改善种皮膜完整性,因为这降低了种子浸出液的电导率。在土壤中,接受这三种处理的种子使1月龄植株的幼苗干重显著增加。植株的根系特征显示根长、根表面积和根体积显著增加。改善的功能性根系参数表明,经磁处理的鹰嘴豆种子在雨养(非灌溉)条件下,即在土壤水分状况受限的情况下可能表现更好。

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