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低强度连续波氦氖激光辐射对向日葵(Helianthus annuus L.)种子热力学和萌发参数及潜在参与种子萌发的酶的影响。

Effects of different doses of low power continuous wave he-ne laser radiation on some seed thermodynamic and germination parameters, and potential enzymes involved in seed germination of sunflower (Helianthus annuus L.).

机构信息

Department of Physics, University of Agriculture, Faisalabad, Pakistan.

出版信息

Photochem Photobiol. 2010 Sep-Oct;86(5):1050-5. doi: 10.1111/j.1751-1097.2010.00782.x. Epub 2010 Jul 28.

Abstract

In this study, water-soaked seeds of sunflower were exposed to He-Ne laser irradiation of different energies to determine whether or not He-Ne laser irradiation caused changes to seed thermodynamic and germination parameters as well as effects on the activities of germination enzymes. The experiment comprised four energy levels: 0 (control), 100, 300 and 500mJ of laser energy and each treatment replicated four times arranged in a completely randomized design. The experimentation was performed under the greenhouse conditions in the net-house of the Department of Botany, University of Agriculture, Faisalabad. The seed thermodynamic parameters were calculated according to seed germination thermograms determined with a calorimeter at 25.8°C for 72h. Various thermodynamic parameters of seed (ΔH, (ΔS)(e), (ΔS)(c), (ΔS)(e) /Δt and (ΔS)(c) /Δt) were affected significantly due to presowing laser treatment. Significant changes in seed germination parameters and enzyme activities were observed in seeds treated with He-Ne laser. The He-Ne laser seed treatment resulted in increased activities of amylase and protease. These results indicate that the low power continuous wave He-Ne laser light seed treatment has considerable biological effects on seed metabolism. This seed treatment technique can be potentially employed to enhance agricultural productivity.

摘要

在这项研究中,用水浸泡过的葵花籽暴露在不同能量的氦氖激光下,以确定氦氖激光照射是否会改变种子热力学和发芽参数,以及对发芽酶活性的影响。该实验包括四个能量水平:0(对照)、100、300 和 500mJ 的激光能量,每个处理重复四次,完全随机设计排列。实验在费萨拉巴德农业大学植物学系温室网室中进行。种子热力学参数根据在 25.8°C 下用热量计确定的种子发芽热谱图在 72 小时内计算得出。由于预播种激光处理,种子的各种热力学参数(ΔH、(ΔS)(e)、(ΔS)(c)、(ΔS)(e)/Δt 和(ΔS)(c)/Δt)受到显著影响。在氦氖激光处理的种子中观察到种子发芽参数和酶活性的显著变化。氦氖激光种子处理导致淀粉酶和蛋白酶活性增加。这些结果表明,低功率连续波氦氖激光光种子处理对种子代谢具有相当大的生物学效应。这种种子处理技术可用于提高农业生产力。

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