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核聚变与等离子体物理 ›› 2006, Vol. 26 ›› Issue (1): 75-80.

• 研究报告 • 上一篇    

弧光等离子体与梯度磁场结合处理番茄种子的生物效应

尹美强1,马腾才1 ,黄明镜2 ,马步洲2   

  1. (1.大连理工大学三束材料改性国家重点实验室,大连116024 ; 2.山西省农科院旱地农业研究中心,太原030031)
  • 收稿日期:2005-08-17 修回日期:2005-11-11 出版日期:2006-03-15 发布日期:2012-05-29
  • 作者简介:尹美强(1976-) ,女,山西省人,博士研究生,主要从事等离子体生物工程研究。
  • 基金资助:

    国家重点基金资助项目 (19805030) ;山西省自然基金资助项目 (20051078)

The biological effect of arc discharge plasma combined with gradual magnetic field on tomato seeds

YIN Mei-qiang, MA Teng-cai, HUANG Ming-jing, MA Bu-zhou   

  1. (1. State Key Laboratory of Material Modification by Laser , Ion and Electron Beams , Dalian University of Technology , Dalian 116023 ; 2. Arid Farming Research Center , Shanxi Academy of Agricultural Sciences , Taiyuan 030031)
  • Received:2005-08-17 Revised:2005-11-11 Online:2006-03-15 Published:2012-05-29

摘要:

介绍了弧光放电等离子体与梯度磁场相结合来处理植物种子这一新兴的等离子体生物技术。给出了番茄种子 (中蔬6号)经不同参数的磁化等离子体处理后的生物效应及种子的抗旱性对比。结果表明: 种子中脯氨酸含量明显提高, 说明磁化等离子体能通过降低细胞渗透势来增加番茄抗旱性; SOD、POD活性、根系活力和ATP含量增加, 表明磁化等离子体可以通过清除植物体内自由基和增强代谢来增加番茄对水分胁迫的抗性。

关键词: 磁化等离子体, 番茄, 抗旱性

Abstract:

Using arc discharge plasma combined with gradual magnetic field to treat seeds is a new plasma biological technology. The biological effect and drought resistance of tomato seeds treated with different plasma parameters were compared. The increasing of proline content indicates that the drought resistance of tomato seedlings could be increased due to reduction of penetration potential of plant cell. Increased SOD , POD activity , root activity and ATP content show that water stress could be alleviated by eliminating the free radicle and increasing metabolism.

Key words: Magnetized plasma , Tomato , Drought resistance

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