PAN Yue,SI Hongbo,PAN Yuwei,et al.Inhibitory Effect of Plasma Activated Water on Agrobacterium tumefaciens and Its Prevention and Treatment of Cerasus Crown Gall[J].Northern Horticulture,2024,(9):54-61.[doi:10.11937/bfyy.20233332]
等离子体活化水对根癌土壤杆菌的抑制作用及其对樱花根癌病的防治
- Title:
- Inhibitory Effect of Plasma Activated Water on Agrobacterium tumefaciens and Its Prevention and Treatment of Cerasus Crown Gall
- 文章编号:
- 1001-0009(2024)09-0054-08
- 关键词:
- 樱花; 根癌病; Agrobacterium tumefaciens; 等离子体活化水
- 分类号:
- S 474
- 文献标志码:
- A
- 摘要:
- 以樱花幼苗为试材,使用低温等离子体活化水冷杀菌技术(PAW)对樱花幼苗及其病原菌进行处理,研究了PAW对樱花苗木的抗病作用,以期为PAW在樱花根癌病防治中的应用提供参考依据。结果表明:等离子体活化水能有效地抑制樱花根癌病病菌Agrobacterium tumefaciens的生长,其可以对Agrobacterium tumefaciens的细胞结构造成破坏。CK组樱花幼苗的根瘤发生率为100%,根瘤的平均直径为18.8 mm,处理后的幼苗发病率为56.7%,根瘤的平均直径为8.4 mm。此外,PAW可以提高樱花根系多酚氧化酶(PPO)和苯丙氨酸解氨酶(PAL)及超氧化物歧化酶(SOD)活性的表达,激活樱花植株的抗性。综上,PAW具有一定的生物防治潜力,可以防御樱花根癌病。
- Abstract:
- Taking cherry blossom seedlings as the test material,PAW was used to treat cherry blossom seedlings and their pathogens,and the anti disease effect of PAW on cherry blossom seedlings was studied,in order to provide reference for the application of PAW in the prevention and control of Cerasus crown gall.The results showed that plasma activated water can effectively inhibit the growth of cherry blossom root cancer pathogen Agrobacterium tumefaciens,which could cause damage to the cellular structure of Agrobacterium tumefaciens.The incidence of root nodules of cherry seedlings in the control group was 100%,the average diameter of root nodules was 18.8 mm,the incidence rate of treated seedlings was 56.7%,and the average diameter of root nodules was 8.4 mm.In addition,PAW could increase the expression of PPO,PAL and SOD activities in cherry blossom roots,activating the resistance of cherry blossom plants.In summary,PAW had certain biological control potential and could defend against Cerasus crown gall.
参考文献/References:
[1]孙泽硕,李永华,柳新红,等.四十一份樱花品种资源表型性状遗传多样性分析[J].北方园艺,2022(22):57-66.[2]KERR A,PANAGOPOULOS C G.Biotypes of Agrobacterium radiobacter var.tumefaciens and their biological control[J].Journal of Phytopathology,1977,90(2):172-179.[3]TOLBA I H,SOLIMAN M A.Efficacy of native antagonistic bacterial isolates in biological control of crown gall disease in Egypt[J].Annals of Agricultural Sciences,2013,58(1):43-49.[4]罗贵斌,张建军,陈晓东,等.起垄与药剂组合对樱花根癌病防效及生长的影响[J].北方园艺,2017(3):121-126.[5]GUPTA A K,KHOSLA K,BHARDWAJ S S,et al.Biological control of crown gall on peach and cherry rootstock colt by native Agrobacterium radiobacter Isolates[J].The Open Horticulture Journal,2010,3(1):1-10.[6]AEINI M,MIRZAEE H,TAGHAVI S M,et al.Occurrence of crown gall disease on Ficusbenjamina in Fars and Isfahan Provinces of Iran[J].Archives of Phytopathology and Plant Protection,2014,47(18):2257-2262.[7]NIEMIRA B A.Cold plasma decontamination of foods[J].Annual Review of Food Science and Technology,2012,3:125-142.[8]LEE S Y,PARK H H,MIN S C.Pulsed light plasma treatment for the inactivation of Aspergillus flavus spores,Bacillus pumilus spores,and Escherichia coli O157:H7 in red pepper flakes[J].Food Control,2020,118:107401.[9]AHMED H,MAUNULA L,KORHONEN J.Reduction of norovirus in foods by nonthermal treatments:A review[J].Journal of Food Protection,2020,83(12):2053-2073.[10]SARANGAPANI C,O’TOOLE G,CULLEN P J,et al.Atmospheric cold plasma dissipation efficiency of agrochemicals on blueberries[J].Innovative Food Science & Emerging Technologies,2017,44:235-241.[11]XU H,ZHU Y,DU M,et al.Subcellular mechanism of microbial inactivation during water disinfection by cold atmospheric-pressure plasma[J].Water Research,2021,188:116513.[12]MAY,XIONG S,YOU J,et al.Effects of vacuum chopping on physicochemical and gelation properties of myofibrillar proteins from silver carp (Hypophthalmichthys molitrix)[J].Food Chemistry,2018,245:557-563.[13]张锡唐.芽孢杆菌JK-XZ8的种类鉴定及其对樱花根癌病的防治[D].南京:南京林业大学,2020.[14]GUO J,HUANG K,WANG X,et al.Inactivation of yeast on grapes by plasma-activated water and its effects on quality attributes[J].Journal of Food Protection,2017,80(2):225-230.[15]XIANG Q,KANG C,NIU L,et al.Antibacterial activity and a membrane damage mechanism of plasma-activated water against Pseudomonas deceptionensis CM2[J].LWT,2018,96:395-401.[16]KANG M H,HONG Y J,ATTRI P,et al.Analysis of the antimicrobial effects of nonthermal plasma on fungal spores in ionic solutions[J].Free Radical Biology and Medicine,2014,72:191-199.[17]GRAVES D B.The emerging role of reactive oxygen and nitrogen species in redox biology and some implications for plasma applications to medicine and biology[J].Journal of Physics D:Applied Physics,2012,45(26):263001.[18]PANNGOM K,LEE S H,PARK D H,et al.Non-thermal plasma treatment diminishes fungal viability and up-regulates resistance genes in a plant host[J].PLoS One,2014,9(6):e99300.[19]COMBARROS R G,COLLADO S,DAZ M.Toxicity of titanium dioxide nanoparticles on Pseudomonas putida[J].Water Research,2016,90:378-386.[20]IMON〖AKCˇ〗ICOV J,KALI〖AKNˇ〗KOV B,KOV〖AKCˇ〗IK D,et al.Cold plasma treatment triggers antioxidative defense system and induces changes in hyphal surface and subcellular structures of Aspergillus flavus[J].Applied Microbiology and Biotechnology,2018,102(15):6647-6658.[21]MIR S A,SIDDIQUI M W,DAR B N,et al.Promising applications of cold plasma for microbial safety,chemical decontamination and quality enhancement in fruits[J].Journal of Applied Microbiology,2020,129(3):474-485.[22]THIRUMDAS R,KOTHAKOTA A,ANNAPURE U,et al.Plasma activated water (PAW):Chemistry,physico-chemical properties,applications in food and agriculture[J].Trends in Food Science & Technology,2018,77:21-31.[23]XU Y,TIAN Y,MA R,et al.Effect of plasma activated water on the postharvest quality of button mushrooms,Agaricus bisporus[J].Food Chemistry,2016,197:436-444.[24]BERARDINELLI A,PASQUALI F,CEVOLI C,et al.Sanitisation of fresh-cut celery and radicchio by gas plasma treatments in water medium[J].Postharvest Biology and Technology,2016,111:297-304.[25]BAFOIL M,JEMMAT A,MARTINEZ Y,et al.Effects of low temperature plasmas and plasma activated waters on Arabidopsis thaliana germination and growth[J].PLoS One,2018,13(4):e0195512.[26]MANIRUZZAMAN M,SINCLAIR A J,CAHILL D M,et al.Nitrate and hydrogen peroxide generated in water by electrical discharges stimulate wheat seedling growth[J].Plasma Chemistry and Plasma Processing,2017,37(5):1393-1404.[27]TAKAHATA J,TAKAKI K,SATTA N,et al.Improvement of growth rate of plants by bubble discharge in water[J].Japanese Journal of Applied Physics,2015,54(1S):01AG07.[28]LUX A,LUKA〖AKCˇ〗OV Z,VACULK M,et al.Silicification of root tissues[J].Plants,2020,9(1):111.[29]VACULK M,LUKA〖AKCˇ〗OV Z,BOKOR B,et al.Alleviation mechanisms of metal(loid) stress in plants by silicon:A review[J].Journal of Experimental Botany,2020,71(21):6744-6757.[30]于威,郝天龙.几种防御性酶在植物抗病方面的研究进展[J].北京农业,2014(36):133-134.[31]王曼玲,胡中立,周明全,等.植物多酚氧化酶的研究进展[J].植物学通报,2005,40(2):215-222.[32]CORONA-CARRILLO J I,FLORES-PONCE M,CHVEZ-NJERA G,et al.Peroxidase activity in scutella of maize in association with anatomical changes during germination and grain storage[J].SpringerPlus,2014,3:399.[33]赵亚楠,文晓鹏.樱桃砧木实生苗对根癌菌侵染的抗性及生理响应[J].西北植物学报,2012,32(7):1390-1394.[34]LUKACOVA Z,SVUBOVA R,SELVEKOVA P,et al.The effect of plasma activated water on maize (Zea mays L.) under arsenic stress[J].Plants,2021,10(9):1899.
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备注/Memo
第一作者简介:潘越(1988-),女,博士研究生,助理研究员,现主要从事苗木抗病等研究工作。E-mail:799092953@qq.com.责任作者:司红波(1978-),男,硕士,副研究员,现主要从事苗木基地建设与管理等研究工作。E-mail:308491942@qq.com.基金项目:国家重点研发计划资助项目(2019YFD1002300);江苏高校哲学社会科学研究资助项目(2023SJYB0161)。收稿日期:2023-09-27