[1] 姜云斌, 杜艳民, 王文辉, 等.新疆阿克苏地区‘富士’苹果贮藏保鲜情况调查[J].中国果树, 2019(5):102-104.
JIANG Y B, DU Y M, WANG W H, et al.Investigation on storage and preservation of ‘Fuji’ apple in Aksu area of Xinjiang[J].China Fruits, 2019(5):102-104.
[2] 谭慧林, 金永生, 吴忠红, 等.阿克苏地区红富士苹果产业现状及提高商品性建议措施[J].保鲜与加工, 2021, 21(2):140-144.
TAN H L, JIN Y S, WU Z H, et al.Status of red fuji apple industry in Aksu prefecture and measures to improve its commodity quality[J].Storage and Process, 2021, 21(2):140-144.
[3] 李启彭, 张福胜.苹果营养成分及应用价值研究进展[J].浙江农业科学, 2017, 58(1):132-134.
LI Q P, ZHANG F S.Research progress on nutritional components and application value of apple[J].Journal of Zhejiang Agricultural Sciences, 2017, 58(1):132-134.
[4] 魏增宇. 1-MCP结合CO2处理对鲜切苹果贮藏期间品质变化影响[D].天津:天津科技大学, 2019.
WEI Z Y.Effects of 1-MCP and CO2 treatments on quality changes of fresh-cut apples during storage[D].Tianjin:Tianjin University of Science & Technology, 2019.
[5] 李宝宁. 苹果贮藏期常见病害的发生规律与防控措施[J].果树实用技术与信息, 2018(4):31-32.
LI B N.Occurrence regularity and prevention and control measures of common apple diseases during storage period[J].Practical Technology and Information of Fruit Trees, 2018(4):31-32.
[6] ZHU F.Effect of ozone treatment on the quality of grain products[J].Food Chemistry, 2018, 264:358-366.
[7] BAIA G M, FREITAS-SILVA O, JUNIOR M F.Understanding the role of chlorine and ozone to control postharvest diseases in fruit and vegetables:A review[J].Current Nutrition & Food Science, 2020, 16(4):455-461.
[8] 高聪聪, 纪海鹏, 应小川, 等.不同浓度臭氧在低温条件下对玫瑰香葡萄贮藏品质的影响[J].保鲜与加工, 2020, 20(5):16-20;26.
GAO C C, JI H P, YING X C, et al.Effects of different concentrations ozone on the storage quality of Muscat hamburg grape at low temperature[J].Storage and Process, 2020, 20(5):16-20;26.
[9] LIN S H, CHEN C K, LUO H X, et al.The combined effect of ozone treatment and polyethylene packaging on postharvest quality and biodiversity of Toona sinensis (A.Juss.) M.Roem[J].Postharvest Biology and Technology, 2019, 154:1-10.
[10] 罗文靖, 耿金川, 陈存坤, 等.臭氧处理对库尔勒香梨采后生理及贮藏品质的影响[J].食品研究与开发, 2017, 38(23):182-187.
LUO W J, GENG J C, CHEN C K, et al.Effects of ozone treatment on postharvest physiology and storage quality of Korla fragrant pear[J].Food Research and Development, 2017, 38(23):182-187.
[11] 李昌宝, 辛明, 孙宇, 等.组合保鲜技术对圣女果保鲜效果的影响[J].食品研究与开发, 2020, 41(3):123-129.
LI C B, XIN M, SUN Y, et al.Effects of combined fresh-keeping technology on the quality of cherry tomato preservation[J].Food Research and Development, 2020, 41(3):123-129.
[12] 张鹏, 秦骅, 李江阔, 等.1-MCP结合生物保鲜剂对富士苹果贮后货架品质和生理变化的影响[J].食品工业科技, 2018, 39(19):266-271.
ZHANG P, QIN H, LI J K, et al.Effects of 1-MCP combined with bio-preservatives on shelflife quality and physiological changes of fuji apples after storage[J].Science and Technology of Food Industry, 2018, 39(19):266-271.
[13] 曹建康, 姜微波, 赵玉梅.果蔬采后生理生化实验指导[M].北京:中国轻工业出版社, 2007.
CAO J K, JIANG W B, ZHAO Y M.Experiment Guidance of Postharest Physiology and Biochemistry of Fruits and Vegetables[M].Beijing:China Light Industry Press, 2007.
[14] 纪海鹏, 李超, 高聪聪, 等.不同保鲜处理对玫瑰香葡萄贮藏品质及保鲜效果的影响[J].食品与发酵工业, 2020, 46(6):127-132.
JI H P, LI C, GAO C C, et al.Effects of different preservation treatments on storage quality and preservation effect of Muscat Hamburg grapes[J].Food and Fermentation Industries, 2020, 46(6):127-132.
[15] 张晓军, 刘长悦, 董成虎, 等.二氧化氯对西周密25号哈密瓜采后生理及贮藏品质的影响[J].食品研究与开发, 2017, 38(22):198-203.
ZHANG X J, LIU C Y, DONG C H, et al.Effects of chlorine dioxide(ClO2)treatment on postharvest physiology and storage quality of cantaloupe ‘Xizhoumi 25’[J].Food Research and Development, 2017, 38(22):198-203.
[16] 张梦媛. MeJA对采后苹果果实品质和乙烯生物合成及其信号转导途径关键基因表达的影响[D].锦州:渤海大学, 2019.
ZHANG M Y.Effects of MeJA on quality and expression of key genes involved in ethylene biosynthesis and signal transduction pathway during postharvest ripening of apple fruit[D].Jinzhou:Bohai University, 2019.
[17] ZHANG X J, TANG N, ZHANG H J, et al.Comparative transcriptomic analysis of cantaloupe melon under cold storage with ozone treatment[J].Food Research International, 2021, 140:109993.
[18] 李海登, 蒋佳男, 张春萌, 等.纳米ZnO保鲜膜对苹果保鲜效果的研究[J].食品科技, 2019, 44(10):33-36.
LI H D, JIANG J N, ZHANG C M, et al.The preservation effect of nanometer ZnO plastic film on apple[J].Food Science and Technology, 2019, 44(10):33-36.
[19] 余泽龙. 臭氧诱导的蚕豆气孔运动及其信号调控机制的研究[D].兰州:兰州大学, 2010.
YU Z L.Ozone-induced Vicia faba stomatal movement and signal regulation mechanisms[D].Lanzhou:Lanzhou University, 2010.
[20] HAN Q, GAO H Y, CHEN H J, et al.Precooling and ozone treatments affects postharvest quality of black mulberry (Morus nigra) fruits[J].Food Chemistry, 2017, 221:1 947-1 953.
[21] 肖玥惠子. 缓释型臭氧对红地球葡萄保鲜关键技术的研究[D].长沙:中南林业科技大学, 2018.
XIAO Y H Z.Study on the key technology of slowly releasing ozone preservation of red globe grape[D].Changsha:Central South University of Forestry & Technology, 2018.
[22] 张慧杰, 纪海鹏, 张晓军, 等.臭氧处理对采后西兰花贮藏品质的影响[J].食品研究与开发, 2019, 40(23):9-14.
ZHANG H J, JI H P, ZHANG X J, et al.Effect of ozone treatment on the quality of postharvest broccoli[J].Food Research and Development, 2019, 40(23):9-14.
[23] CHEN C K, ZHANG X J, ZHANG H J, et al.Label-free quantitative proteomics to investigate the response of strawberry fruit after controlled ozone treatment[J].RSC Advances, 2019, 9(2):676-689.
[24] 纪海鹏, 张佳楠, 董成虎, 等.臭氧处理对美人指葡萄保鲜效果的影响[J].包装工程, 2020, 41(1):17-22.
JI H P, ZHANG J N, DONG C H, et al.Effects of ozone treatment on the preservation effect of manicure finger grape[J].Packaging Engineering, 2020, 41(1):17-22.
[25] 陈花, 王建军, 王建武, 等.拮抗酵母结合水溶性壳聚糖对海红果采后贮藏品质的影响[J].食品与发酵工业, 2020, 46(23):147-155.
CHEN H, WANG J J, WANG J W, et al.Effect of antagonistic yeast combined with water soluble chitosan on postharvest storage quality of Malus micromalus fruit[J].Food and Fermentation Industries, 2020, 46(23):147-155.
[26] 张佳楠, 纪海鹏, 董成虎, 等.臭氧处理对贮藏后期库尔勒香梨贮藏品质的影响[J].保鲜与加工, 2020, 20(3):12-17.
ZHANG J N, JI H P, DONG C H, et al.Effect of ozone treatments on storage quality of Korla pear in late storage period[J].Storage and Process, 2020, 20(3):12-17.
[27] 伍小红, 李建科, 惠伟.臭氧处理对苹果保鲜的影响研究[J].食品科技, 2006, 31(7):252-254.
WU X H, LI J K, HUI W.Study on apple preservation by ozone treatment[J].Food Science and Technology, 2006, 31(7):252-254.