Nanosecond‐pulsed plasma protects against bacterial fruit blotch and promotes melon seedling growth

Author:

Guo Yi‐Xi1,Fan Ting1ORCID,Liu Xiao‐Qin2,Chen Man‐Jie1,Zhang Na‐Na1,Chen Yu‐He1,Wang Xiao‐Dong2

Affiliation:

1. College of Sciences/Xinjiang Production and Construction Corps, Key Laboratory of Advanced Energy Storage Materials and Technologies Shihezi University Shihezi China

2. Department of Agriculture Shihezi University Shihezi China

Abstract

AbstractBACKGROUNDBacterial fruit blotch (BFB), known as the ‘cancer’ of cucurbits, is a seed‐borne disease of melons caused by Acidovorax citrulli. Traditional chemical treatments for BFB are ineffective and adversely affect the environment. Using dielectric barrier discharge (DBD) nanosecond‐pulsed plasma technology, melon seeds were treated to promote germination and growth and to control BFB.RESULTSBased on the evaluation parameters of seed germination, seedling growth, leaf yellowing and bacterial infection after seed plasma treatments, 9 min at 20 kV was selected as the optimal plasma discharge parameter. In this study, seedling growth was significantly improved after treating melon seeds carrying A. citrulli using this discharge parameter. The number of first true leaves measured on the eighth day was 2.3 times higher and the disease index was reduced by 60.5% compared to the control group. Attenuated total reflectance–Fourier transform infrared measurements show that plasma treatments penetrate the seed coat and denature polysaccharides and proteins in the seed kernel, affecting their growth and sterilization properties.CONCLUSIONPre‐sowing treatment of melon seeds carrying A. citrulli using nanosecond‐pulsed plasma technology can effectively control seedling BFB disease and promote melon seedling growth by optimizing DBD parameters. © 2024 Society of Chemical Industry.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Reference35 articles.

1. Bacterial fruit rot of watermelon in Florida;Crall JM;Plant Dis Rep,1969

2. new bacterial disease on watermelon in the Mariana Islands;Wall GC;Phytopathology,1988

3. Acidovorax citrulli: generating basic and applied knowledge to tackle a global threat to the cucurbit industry

4. Disease and pest outbreaks. Turkey. A new bacterial disease of watermelon in Turkey: bacterial fruit blotch of watermelon;Demir G;Arab Near East Plant Prot Newsl,1996

5. Slag-based silicon fertilizer improves the resistance to bacterial fruit blotch and fruit quality of melon grown under field conditions

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