Impact of microsecond-pulsed plasma-activated water on papaya seed germination and seedling growth

被引:0
|
作者
席登科 [1 ]
张先徽 [2 ]
杨思泽 [2 ]
叶尚姗 [3 ]
石川健治 [4 ]
堀勝 [4 ]
叶尚凌 [1 ,4 ]
机构
[1] Plasma Technology Research Center, Department of Physics, Faculty of Science, University of Malaya
[2] Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, Fujian Engineering Research Center for EDA, Fujian Provincial Key Laboratory of Electromagnetic Wave Science and Detection Technology, Xiamen Key Laboratory of Multiphysics Electronic Infor
[3] Department of Physics, Xiamen University Malaysia
[4] Center for Low-temperature Plasma Sciences, Nagoya University
基金
中国国家自然科学基金;
关键词
plasma-activated water; non-thermal plasma; microbial inactivation; seed metabolism;
D O I
暂无
中图分类号
S661.6 [木瓜];
学科分类号
摘要
The seed of Carica papaya consists of a hard shell-like testa with inhibitors in vivo causing slow, erratic and asynchronous germination. In this work, plasma-activated water prepared by microsecond-pulsed plasma jets(μPAW) was applied to treat papaya seeds. The μPAW after plasma activation of 30 min was about 40℃. The reactive species such as NO2, NO3, and H2O2in the μPAW activated from deionized water were measured and correlated to the seed germination rate and the seedling growth performance. The μPAW-treated papaya seed achieved a higher germination rate of 90%, which is 26% higher than the control group using deionized water. Comparing the results with a hot water(40℃)reference group showed that the reactive species in μPAW played primary roles in germination improvement, with little effect caused by the heat shock. The μPAW also sterilized the treated seeds, reducing the germination stress. The morphological change in the seeds was observed by SEM, showing an effect of physical etching after treatment promoting seed imbibition. The biochemical mechanism of the seed germination was deduced with reference to the evolution of surface chemistry, functional groups, and ABA content. The accelerated seed metabolism observed was corresponded to the chemical modification pathway. Besides, early seedlings developed from treated seeds were observed to be healthy, grow more leaves, and have better root structures. The content of MDA in the treated papaya seedlings decreased along with increased SOD and higher ion concentration. The μPAW that can be prepared at atmospheric pressure for bulk production offers a low-risk and cost-effective seed priming technology that may significantly increase the production of agricultural crops.
引用
收藏
页码:630 / 641
页数:12
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