首页|外源茉莉酸甲酯诱导脐橙果实抗青霉病与活性氧代谢的关系

外源茉莉酸甲酯诱导脐橙果实抗青霉病与活性氧代谢的关系

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[目的]通过探究外源茉莉酸甲酯(Methyl Jasmonate,MeJA)诱导脐橙果实采后抗青霉病与活性氧代谢的关系,为MeJA应用于控制果实采后病害提供理论依据.[方法]以纽荷尔和龙回红脐橙果实为试材,在温度(26±1)℃、湿度85%~95%的环境下,使用浓度为50 µmol·L-1 MeJA密闭熏蒸处理24 h后,接种青霉病菌Penicillium italicum(1.25× 106 spores·mL-1)20 μL,以无菌水处理为对照,另设100 μmol·L-1水杨苷异羟肟酸(salicyhydroxamic acid,SHAM)喷施处理,测定脐橙果实活性氧代谢相关指标并分析关键酶基因表达水平.[结果]50 μmol·L-1 MeJA熏蒸处理显著提高2个脐橙品种果实的谷胱甘肽还原酶(GR)、抗坏血酸过氧化物酶(APX)、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、单脱氢抗坏血酸还原酶(MDHAR)和脱氢抗坏血酸还原酶(DHAR)活性以及对应酶基因CsGR、CsAPX、Cu-ZnSOD、CsCAT、CsMDHAR、CsDHAR3的相对表达量,在纽荷尔中MeJA处理分别为对照的1.10、1.16、1.12、1.69、1.21、1.43、1.16、1.42、1.56、1.36、1.58、2.32倍,在龙回红中 MeJA 处理分别为对照的 1.13、1.49、1.02、1.41、1.26、1.79、2.98、1.59、1.10、1.79、1.57、1.31倍;同时,显著提高了还原型谷胱甘肽(GSH)、抗坏血酸(AsA)含量和DPPH自由基清除率,降低了过氧化氢(H2O2)含量和超氧阴离子(O2·-)产生速率,延缓了丙二醛(MDA)含量的积累.[结论]使用MeJA于接种前24 h熏蒸脐橙果实,能提高柑橘果实活性氧代谢相关酶活性以及关键酶基因的表达量,增强果实对青霉病的抗性.
Involvement of induced resistance by methyl jasmonate to blue mold and reactive oxygen species metabolism in navel orange fruit
[Objective]Navel orange[Citrus sinensis(Linn.)Osbeck],one of the most widely planted citrus fruit trees in the world,is mainly planted in Chongqing,Hubei,Jiangxi,Fujian and other places in southern China.However,navel orange fruits are susceptible to diseases caused by pathogens during postharvest transportation and storage,seriously affecting the quality and economic value of the fruits.The blue mold caused by Penicillium italicum is one of the most important postharvest diseases in navel orange fruits,which is currently mainly controlled by chemicals.Currently there is an urgent need to de-velop safer and more efficient preservation techniques to control post-harvest diseases of navel orange fruits.Methyl jasmonate(MeJA)is an important natural plant growth regulator,which can be used as an inducer of resistance to pathogen infestation to produce a defense response in plants.In recent years,the aspect of MeJA-induced disease resistance in plants has become a hot issue,but there are fewer reports on MeJA-induced resistance to P.italicum in navel orange fruits.In this study,we investigated the rela-tionship between exogenous MeJA-induced postharvest resistance to the blue mold and reactive oxygen metabolism in navel orange fruits to provide a theoretical basis for the potential of the application of MeJA to control postharvest fruit diseases.[Methods]In this study,Newhall and Longhuihong navel orange fruits were used as test materials.Firstly,the fruits were cleaned with 0.05%sodium hypochlorite and water,then after being dried at room temperature,one group fruits were treated with 50 μmol·L-1 MeJA for 24 h at(26±1)℃ and 85%-95%relative humidity,another group fruits were sprayed with 100 μmol·L-1 SHAM,and the third group treated with sterile water was used as control.The conidia of P.italicum that had been cultured on PDA medium for one week were collected and made into a spore suspension with a concentration of 1.25× 106 spores·mL-1.The surface of the fruits was sterilized with 75%ethanol and inoculation was carried out by puncturing the equatorial part of the fruit at equal dis-tances using an inoculation needle with a wound size of 2 mm in diameter and 3 mm in depth and inject-ing 20 μL of spore suspension of P.italicum.Ten fruits were selected from each treatment for 7 consecu-tive days,and 1 cm of peel tissue was taken from the disease-health junction of navel oranges and quick-ly frozen with liquid nitrogen for further analysis.The activities of glutathione reductase(GR),ascor-bate peroxidase(APX),superoxide dismutase(SOD),catalase(CAT),monodehydroascorbate reductase(MDHAR),dehydroascorbate reductase(DHAR),and the relative expression levels of related genes in-cluding CsGR,CsAPX,Cu-ZnSOD,CsCAT,CsMDHAR and CsDHAR3 were measured.All data were statistically organized and analyzed by one-way analysis of variance(ANOVA)using Excel 2018 and SPSS 20.0 software.The origin 2018 software was used for graphing,and all data in the graphs were ex-pressed as mean±standard error(SE).[Results]MeJA fumigation treatment significantly enhanced the activities of GR,APX,SOD,CAT,MDHAR,DHAR and the relative expression levels of CsGR,CsAPX,Cu-ZnSOD,CsCAT,CsMDHAR and CsDHAR3 in two navel orange varieties fruits.In the Me-JA treatment ofNewhall,they were 1.10,1.16,1.12,1.69,1.21,1.43,1.16,1.42,1.56,1.36,1.58 and 2.32 times as much as the control,respectively.In the MeJA treatment of Longhuihong,they were 1.13,1.49,1.02,1.41,1.26,1.79,2.98,1.59,1.10,1.79,1.57 and 1.31 times as much as the control,respec-tively.At the same time,the content of reduced glutathione(GSH),ascorbic acid(AsA)and DPPH free radical scavenging rate were significantly increased,the content of hydrogen peroxide(H2O2)and the production rate of superoxide anion(O2·-)were decreased,and the accumulation of malondialdehyde(MDA)content was delayed.[Conclusion]In summary,MeJA fumigation of navel orange fruits for 24 h before inoculation could significantly enhance the resistance of fruits to P.italicum,increase the ac-tivity of enzymes related to active oxygen metabolism and the expression levels of key enzyme genes.The above results suggested that the enhancement of the resistance to the blue mold in navel orange fruits induced by the MeJA treatment might be related to its regulation of the reactive oxygen species metabolism.This study could provide theoretical basis and technical reference for the prevention and control of the blue mold disease during postharvest storage of the navel orange fruits.

Navel orange fruitMethyl jasmonateResistance to blue moldReactive oxygen metabolism

陈明、郑致远、王印宝、郭越、蒋海燕、付永琦、曾教科、陈金印、向妙莲

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江西农业大学农学院·果蔬贮藏与保鲜江西省重点实验室·江西省果蔬采后处理关键技术与质量安全协同创新中心,南昌 330045

脐橙果实 茉莉酸甲酯 青霉病抗性 活性氧代谢

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(12)