吉林大学学报(工学版) ›› 2001, Vol. ›› Issue (2): 40-44.

• 论文 • 上一篇    下一篇

静电场对绿豆种子综合生物性状的影响及机理探讨

李晓光1, 任露泉2, 佟金2, 许建平3   

  1. 1. 吉林大学南岭校区 农机工程研究院, 吉林 长春 130025;
    2. 吉林大学南岭校区 地面机械仿生技术教育部重点实验室, 吉林 长春 130025;
    3. 吉林职业师范学院 电子工程系, 吉林 长春 130052
  • 收稿日期:2000-10-14 出版日期:2001-04-25
  • 基金资助:
    国家自然科学基金重点资助项目(59835200)

Mechanism Exploration and Effects of Electrostatic Field on Comprehensive Biological Characteristics of Mung Bean Seeds

LI Xiao-guang1, REN Lu-quan2, TONG Jin2, XU Jian-ping3   

  1. 1. Institute of Agricultural Machinery Engineering, Jilin University, Nanling Campus, Changchun 130025, China;
    2. Key Lab of Terrain-Machinery Bionic Engineering, Education Ministry, Jilin University, Nanling Campus, Changchun 130025, China;
    3. Dept of Electronic Engineering, Jilin Vocational Teacher's College, Changchun 130052, China
  • Received:2000-10-14 Online:2001-04-25

摘要: 绿豆种子经不同强度的均匀高压静电场作用一定的时间,实验观察种子的发芽情况,统计经不同强度静电场作用后的种子的发芽率、活力指数,分析其幼芽抗旱性的变化,测定种子的浸泡液电导率及种子的淀粉酶和过氧化物酶的变化,对产生变化的机理进行了分析。实验证明,通过适当的静电场处理,绿豆种子的浸泡液电导率明显降低,淀粉酶和过氧化物酶的活性明显提高,相应的种子的发芽率和绿豆芽成活率及抗旱能力也明显提高。不同强度的静电场影响效果有所差异。场强为 4kV/cm的静电场对绿豆种子的发芽及其芽期生长的综合影响效果最佳;场强为 2kV/cm和 5kV/cm时,对芽期的抗旱能力有明显的促进作用;场强为7kV/cm时,对绿豆种子的发芽率及芽期的抗旱能力有抑制作用。

关键词: 静电场, 绿豆种子, 发芽率, 抗旱性, 电导率, 淀粉酶, 过氧化物酶

Abstract: The uniform high pressure electrostatic field with different strengths is applid to Mung bean seeds.It is required for the experiment to observe the germination of Mung seeds,to count the germination rate and vitality index of Mung seeds,to analyse the plumule drought resistance,to measure the soak conductivity,seed anylase or peroxidases,and to analyse its mechanism,after the seeds are processed with the different strenghts electrostatic field.The experiment proves that after processed through the proper electrostatic field,the soak conductivity of Mung bean seeds can be reduced obviously,and the vitality of anylase and peroxidases can be increased remarkably.And the germination rate of the corresponding seeds,the vitality rate of Mung bean sprouts,and its drought resistance property can be increased remarkably.However,the effects are different for the electrostatic field with different strengths.When the field strength is 4 kV/cm,the comprehensive effects of the electrostatic field on Mung bean germination and sprout growth will reach the optimization.When the field strenght is 2 kV/cm and 5kV/cm,the sprout ability of drought resistance will be promoted obviously.When the field strength is 7 kV/cm,the germination and the drought resistance ability of Mung bean seeds will be restrained.

Key words: electrostatic field, Mung bean seed, germination rate, drought resistance property, conductivity anylase, peroxidases

中图分类号: 

  • Q689
[1] Morar Roman. Electrostatic treatment of bean seeds[A]. IEEE Industry Applications Society[C], NJ, USA, 95CB35862:1335~1337.
[2] 胡玉才.农业生物的电磁环境效应研究综述[J].农业工程学报,1999,15(2):15~20.
[3] Edwin L Carstensen. Biological effects of power freguency electric fields[J]. Journal of Electrostatics, 1997, 39:157~174.
[4] Valberg P A, Kavet R, Raffety C N. Can low level 50/60Hz electric and magnetic field cause biological effects[J]. Radia tion Research, 1997, 148(1):2~21.
[5] 林炎坤.常用的几种蒽酮比色定糖法的比较和改进[J].植物生理学通报,1989(4):53~55.
[6] Chibisov S M, Breus T K, Levitin A E. Biological effects of planetary magnetic storms[J]. Biophysics, 1995, 40(5):959~968.
[7] Chance B. Assay of catalase and peroxidase[J]. Methods in Enzymology, 1955, 10(2):765~775.
[8][日] 菅义夫.静电手册[M].北京:科学技术出版社,1983.
[1] 王涛, 裴存栋, 韩万水, 陈峰. 应力对混凝土中氯离子渗透性的影响[J]. 吉林大学学报(工学版), 2015, 45(4): 1102-1106.
[2] 周亚军, 石晶, 胡士恒, 康建波, 苏丹, 马龙彪, 刘微. 含苹果颗粒果汁通电加热速度与优化模型[J]. 吉林大学学报(工学版), 2011, 41(增刊2): 344-348.
[3] 张俊宁,李民赞,孔德秀,邹奇章,王琦 . 基于“电流电压四端法”的温室栽培基质电导率测量[J]. 吉林大学学报(工学版), 2007, 37(02): 484-0488.
[4] 周亚军, 殷涌光, 王淑杰, 王丹, 于庆宇, 刘微. 食品欧姆加热技术的原理及研究进展[J]. 吉林大学学报(工学版), 2004, (2): 324-329.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!