Air Atmospheric Dielectric Barrier Discharge Plasma Induced Germination and Growth Enhancement of Wheat Seed

被引:1
作者
Yujuan Li
Tiecheng Wang
Yiran Meng
Guangzhou Qu
Qiuhong Sun
Dongli Liang
Shibin Hu
机构
[1] Northwest A&F University,College of Natural Resources and Environment
[2] Ministry of Agriculture,Key Laboratory of Plant Nutrition and the Agri
[3] Northwest A&F University,environment in Northwest China
来源
Plasma Chemistry and Plasma Processing | 2017年 / 37卷
关键词
Dielectric barrier discharge plasma; Germination; Seedling growth; Seed treatment; Wheat;
D O I
暂无
中图分类号
学科分类号
摘要
Air atmospheric dielectric barrier discharge plasma (DBD) was attempted to pretreat wheat seed to improve its germination and growth in this study. The effects of the DBD plasma treatment on the wheat seed germination, seedling growth, osmotic-adjustment products, lipid peroxidation level, and antioxidant enzymes activity were investigated. The experimental results showed that the DBD plasma treatment with an appropriate time scale could promote the wheat seed germination and seedling growth. The germination potential, germination rate, germination index, and vigor index increased by 26.7, 9.1, 16.9, and 46.9% after 7 min’s DBD plasma treatment, respectively; the root length, shoot length, fresh weight, and dry weight of the seedlings also increased after the DBD plasma treatment. The osmotic-adjustment products, proline and soluble sugar contents, in the wheat seedlings were significantly enhanced after the DBD plasma treatment with an appropriate time scale, while the malondialdehyde content decreased. Moreover, the activities of superoxide dismutase and peroxidase also increased after the DBD plasma treatment. The DBD plasma treatment led to etching effect on the wheat seed coat, resulting in the improvement of its water absorption capacity.
引用
收藏
页码:1621 / 1634
页数:13
相关论文
共 197 条
[1]  
Ashrafi E(2015)Seed treatment to overcome salt and drought stresses during germination in safflower ( J Plant Nutr 38 2151-2158
[2]  
Razmjoo J(2015) L.) Seed Sci Technol 43 297-302
[3]  
Miano AC(2008)Effect of ultrasound technology on barley seed germination and vigour Field Crop Res 108 143-149
[4]  
Forti VA(2015)Stand establishment and early field vigour variation in a tropicalised shrunken-2 maize population Indian J Agric Sci 85 1153-1157
[5]  
Abud HF(2013)Effect of seed coating with Hoagland solution on seed quality and field performance in rice ( Agron J 105 222-228
[6]  
Gomes-Junior FG(2013)) Grass Forage Sci 68 339-344
[7]  
Cicero SM(2014)Effect of seed vigor on intraspecific competition and grain yield in maize For Sci 60 367-373
[8]  
Augusto PED(2010)Effect of ascorbic acid on seed germination of three halophytic grass species under saline conditions Exp Agric 46 231-242
[9]  
Adetimirin VO(2014)Roles of gibberellin and auxin in promoting seed germination and seedling vigor in pinus massoniana Appl Mech Mater 675–677 1142-1145
[10]  
Tiwari TN(2015)Enhancing seed germination of four crop species using an ultrasonic technique Scand J For Res 30 639-642