Ca+GA3处理对减轻芦柑裂果的生理与分子机制研究OA北大核心CSTPCD
Physiological and molecular mechanism of Ca+GA3 treatment alleviating fruit cracking incidence in ponkan
[目的]探究减轻芦柑裂果的生理与分子机制.[方法]以10年生早熟芦柑(易裂品种)为试材,果面喷施0.3 g.L1螯合钙和10mg·L-1 GA3为处理,以清水为对照(CK).测定裂果率和果实外观品质,同时测定果皮ROS含量和抗氧化能力、细胞壁代谢酶活性和结构成分含量,以及抗氧化酶和细胞壁代谢酶相关基因表达差异.[结果]Ca+GA3处理有效降低了裂果率,增大了芦柑果形指数、单果质量和果顶果皮厚度;提高了芦柑果皮中抗氧化酶SOD、CAT活性,降低了H2O2、O2(·-)产生速率和MDA含量以及POD、PPO活性.同时,Ca+GA3处理提高了芦柑果皮果胶、纤维素含量,降低木质素含量以及PME、PL、PG、CX和PAL、4CL、C4H活性;提高了果皮的延展性和韧性,减少了裂果的发生.Ca+GA3处理显著提高了抗氧化酶相关基因CrSOD、CrCAr在芦柑果皮中的相对表达量,降低了 CrPOD、CrPPO以及细胞壁代谢相关基因CrPME、CrPL、CrPG、CrCX、CrPAL、Cr4CL、CrC4H的相对表达量.[结论]在生理与分子水平上明确了 Ca+GA3处理可以通过调控果皮活性氧代谢与细胞壁代谢来降低裂果率.研究结果对生产上预防和减轻芦柑裂果具有一定理论意义和应用价值.
[Objective]Fruit cracking is a physiological disease,which seriously affects the appearance and quality of fruit.Ponkan fruit cracking rate can be as high as 70%in serious cases,which has be-come a major problem in the development of the ponkan production.Fruit cracking is regulated by mul-tiple cell physiological and biochemical metabolisms during peel development.Therefore,the physio-logical and molecular mechanisms of ponkan fruit cracking was investigated in order to provide theoret-ical basis for the prevention and alleviation of the fruit cracking in production.[Methods]In this study,10-year-old early-maturing ponkan fruit(cracking-susceptible cultivar)in Tianma Citrus Farm in Yong-chun County,Fujian,China,were used as the experimental material.Eighteen trees with relatively con-sistent nutrition level and growth state under conventional cultivation management were selected for the experiment.At the expansion period of ponkan fruit in June and July,the fruit sprayed with 0.3 g·L-1 chelated calcium and 10 mg·L-1 GA3(Ca+GA3)were used as the treatment group,and the fruit sprayed with water as the control(CK).Ponkan fruit started to crack on August 15,2022,and the fruit were col-lected at 15 d intervals(105,120,135,150 and 165 d after full bloom).The fruit cracking rate and ap-pearance quality were investigated,including transverse diameter,vertical diameter,fruit shape index,single fruit weight and peel thickness.In addition,H2O2 and MDA contents,and O2·-production rate as well as antioxidant enzyme activities(SOD,CAT,POD,and PPO)in ponkan peel were determined.Fur-thermore,the cell wall metabolic enzyme activities(PME,PL,PG,CX,PAL,4CL,and C4H)and the structural components(protopectin,soluble pectin,cellulose,and lignin)were measured.And the ex-pression of the related genes of antioxidant enzymes and cell wall metabolic enzymes in the peel were analyzed.[Results]Ca+GA3 treatment significantly reduced the cracking rate of ponkan fruit.The transverse diameter and vertical diameter of the fruit increased,and fruit shape index,single fruit weight and top peel thickness in Ca+GA3 treatment were greater than those of CK.Abnormal metabo-lism of ROS is one of the most important causes of fruit cracking.During the period of 105-165 days after full bloom,the contents of H2O2,MDA and the rate of O2(·-)production in ponkan peel showed a gen-eral trend of increasing and then decreasing and reached a peak at 135 d after full bloom.Ca+GA3 treat-ment reduced the degree of lipid peroxidation in cell membrane of the peel.The activities of antioxidant enzymes SOD and CAT in ponkan peel peaked at 135 d after full bloom,which was significantly high-er,while POD and PPO activities significantly lower in Ca+GA3 treatment than in CK.The results indi-cated that Ca+GA3 treatment increased SOD and CAT activities,and decreased POD and PPO activities in ponkan peel.The higher activities of peel cell wall hydrolases,the faster the cell wall polysaccharide degradation,and the higher fruit cracking incidence.The Ca+GA3 treatment resulted in a consistently higher protopectin and lower soluble pectin contents in ponkan peel than those of CK.In addition,PME,PL and PG in ponkan peel were significantly reduced after Ca+GA3 treatment.The results indicat-ed that Ca+GA3 treatment reduced the rate of degradation of protopectin into soluble pectin.The content of cellulose in ponkan peel decreased slowly during 105-165 days after full bloom.Ca+GA3 treatment effectively increased the content of cellulose in ponkan peel,while decreased CX activity.Lignin con-tent in ponkan peel treated with Ca+GA3was lower than that of CK during the period of 105-165 d after full bloom,and the activities of PAL,4CL,and C4H,key enzymes in lignin synthesis,decreased in the peel throughout the whole period of growth and development of ponkan fruit.These results indicate that Ca+GA3 treatment can effectively reduce the activities of key enzymes in lignin synthesis in the peel.Ca+GA3 treatment significantly increased the relative expression of antioxidant enzyme genes CrSOD and CrCAT,and decreased the relative expressions of CrPOD and CrPPO,as well as cell wall metabo-lism related genes CrPME,CrPL,CrPG,CrCX,CrPAL,Cr4CL,and CrC4H in ponkan peel.Ca+GA3 treatment improved the ductility and toughness of the peel and reduced the occurrence of the fruit crack-ing by influencing the ROS content,antioxidant capacities,cell wall metabolic enzyme activities and structural components in the peel.[Conclusion]In summary,Ca+GA3 treatment increased SOD and CAT activities,decreased O2·-production rate and H2O2 and MDA contents,as well as POD and PPO ac-tivities in ponkan peel.Ca+GA3 treatment reduced PME,PL,PG,PAL,4CL and C4H activities and lig-nin content,increased the protopectin and cellulose contents in ponkan peel.The expression levels of CrSOD,CrCAT,CrPOD,CrPPO,CrPME,CrPL,CrPG,CrCX,CrPAL,Cr4CL and CrC4H in the peel of ponkan fruit treated with Ca+GA3 were consistent with the activities of related enzymes and the accu-mulation of the metabolites.Ca+GA3 treatment is effective to reduce fruit cracking rate by affecting ROS metabolism and cell wall metabolism in fruit peel at both molecular and physiological levels.
吴维林;周秋蓉;黄嘉康;任华晴;陈伊冉;张加成;杜茜;张宇平;王平
福建农林大学园艺学院·作物遗传育种与综合利用教育部重点实验室,福州 350002福建省永春县天马柑橘场,福建永春 362600
园艺学与植物营养学
芦柑裂果Ca+GA3处理活性氧代谢细胞壁代谢
PonkanFruit crackingCa+GA3 treatmentROS metabolismCell wall metabolism
《果树学报》 2024 (008)
1563-1576 / 14
国家现代农业(柑橘)产业技术体系专项(CARS-26)
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