套袋红富士苹果除袋和采收时期及贮藏期生理特性的研究
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摘要
苹果套袋可促进果实着色,增加果面光洁度,降低农药残留,提高果品商品价值。除
    袋时期对套袋果实品质有重要影响。本研究于 2002-2003 年在渭北苹果产区扶风县对套双
    层纸袋的短枝红富士苹果进行了不同时期的除袋试验,从 9 月 16 日到 10 月 10 日共 8 次除
    袋时期。并对套袋和对照果实在贮藏期间测定了失重率、可溶性固形物、呼吸强度、花青
    苷含量及部分相关酶活性。其目的在于筛选渭北果区红富士苹果适宜的除袋时期和探讨套
    袋苹果的贮藏性能,为果业生产提供依据。研究结果表明:
    1.除袋时期对短枝红富士苹果外观品质有明显影响。9 月 20 日~10 月 10 日除袋,果实
    着色快,且随着除袋时间的推迟,果实着色逐渐加快。除袋过早,果实成熟度低,着色较
    慢;除袋过晚,光照强度不足,气温下降,着色不良。除内袋后 6 天内,果皮花青苷含量
    上升迅速,6~8 天果面鲜红、光滑,此时采果商品性最好。除内袋 10 天后,果实外观品质
    逐渐下降。
    2. 不同时期除袋对红富士苹果的单果重和果形指数影响不明显。同时期采收的果实,
    随着除袋时期的推迟,果实硬度和可溶性固形物含量呈下降趋势,但差异不显著。说明套
    袋能在一定程度上降低果实的硬度和可溶性固形物含量。
    3. 渭北产区短枝红富士苹果适宜的除外袋时期为 9 月 24 日~10 月 10 日,果实的最佳
    外观商品性采收期为除内袋后 6~8 天,由此推算除外袋的最佳时期为采收前 10~12 天,应
    根据市场需求情况先确定采收期,再根据采收期确定除袋期。
    4. 套袋对果实的耐藏性有一定影响:除袋后着色时间较短的果实在贮藏过程中花青苷
    易分解而使果皮变黄;套袋果在贮藏过程中乙烯的产生和呼吸高峰在一定程度上增大,但
    不影响到达呼吸高峰的时间;相对膜透性和 MDA 含量前期无差异,在贮藏 4~5 个月后套
    袋果高于对照果,经方差分析差异显著;
    5.套袋果易在后期发生褐变,和对照相比呈极显著水平,套袋果果皮保水能力差,失
    重率增大。由此看出套袋可降低果实的耐藏性,主要体现在呼吸、PPO 和膜脂过氧化程度
    上。从硬度和 PG 酶活性上差异不显著。
Bagging for apple can improve coloring, make fruit luminous, reduce remain of
    agrochemical and increase price in market. Debagging date has a important effect on the
    quality of fruit. A different debagging experiment for short-branch ?Red Fuji. apple was
    conducted by using Jinggong double bag in Fufeng county shanxi province from 2002 to 2003.
    The first debagging date is 16th September, debagging 8 times (once every four days), the last
    time is 14th October. During storing, we studied the effect of bagging on color changing,
    respiration, content of solids, ratio of weight loss and PGf PPO activity which related to storage
    in order to detect the most appropriate date of debagging and the effect of bagging on storing.
    We want to give our dedication to fruit producing in practice and base theory. The results as
    follows:
     1.The different debagging date has obvious effect on the appearance of fruit. Debagging
    from September 20th to October 10th,coloring is quick, the later we debagged, the quicker
    fruit colored. Debagging too early, the fruits’ coloring gets slow, and the mature degree
    descend; debagging too late, the intensity of light is not sufficient, and the temperature gets
    down, so coloring is not well. Within 6 days after removing inter bag, the content of
    anthocyanin in peel develops rapidly, during the time of 6~8 days, the appearance of fruit has
    bright-colored, luminous, which is the most welcomed by market. 10 days later after
    removing inter bag, the outer quality is getting worse and worse.
     2. The different time debagging has no obvious effect on single weight and index of fruit
    shape. Fruit picked at the same time, with the postponing of picking fruit, its firmness and
    soluble solids has a trend of going down, but the differ is not obvious. So bagging Lower
    firmness and the content of soluble solids on the certain degree.
     3. The most appropriate debagging time is from September 24th to October 10th in north of
    River Wei of Shanxi province, the most appropriate picking time is within 6~8 days after
    removing inter bag. So we get that the most appropriate removing outer bag is within 10~12 days
    before picking. We should get the picking time from market.s need, and then get the removing bag
    date from picking time.
    
    
    4. The effect of bagging on storing include several aspects: The anthocyanin is easy to
    Resolve and fruit peel get yellow if coloring time is short; Ethylene and respiration summit of
    the bagged apple rise at some degree, but the time of reaching respiration summit is not
    changed; We did not find the difference from relative membrane permeability and the content
    of MDA at the earlier time during storing, after 4~5 months later, the relative membrane
    permeability and MDA of bagged fruit is larger than CK.s, and be obvious at 0.05 degree by
    analyzing;
     5.The bagged fruit is easy to brown in later time of storage, and also be obvious at 0.01
    degree, The capacity of containing water of thinner peel of bagged fruit gets less, so it is
    easier to lose water. We conclude that bagged apple was worse in storage than CK from
    respiration, PPO and over oxidize degree of lipo-membrane, but not show the difference in
    PG activity and hardness.
引文
[1] 马锋旺. 世界苹果生产发展趋势及我国苹果发展的建议. 果农之友,2004,(2):4~5
    [2] 刘汉成,吕勇斌,易法海.中国苹果生产发展及生产特征分析. 农业现代化研究,
     2003,(24):149~151
    [3] 刘汉成,易法海,祁春节. 我国苹果的比较优势与国际竞争力分析. 农产品贸易,2002(3):45~
     47
    [4] 杨尚武. 红富士苹果生产中存在的问题与解决途径. 甘肃农业, 2004(2):38~39
    [5] 刘志坚. 苹果套袋状况考察专论(上)[J].中国果菜,2001(2):46~47
     苹果套袋状况考察专论(下)[J].中国果菜,2001(3):46~47
    [6] 刘寄明,王少敏等. 套袋短枝红富士果实内含物及果皮色素的变化[J].果树科学,2000(1):
     76~77
    [7] 刘志坚,王志高,杨良杰等. 苹果全套袋栽培概论[J]. 山西果树. 2000(1):10~11
    [8] 吴纯清,程凤. 水果套袋技术及其对果实品质的影响[J]. 西南园艺,2001(4):30
    [9] 赵宗方,谢嘉宝. 富士苹果皮画倾诉发育的相关因素分析[J],果树科学,1992,9:134~137
    [10] 刘成连,姜瑞敏. 新型多功能苹果套袋的实质及其应用[J]. 莱阳农学院学,1996,13(3).
     208~210
    [11] 张宗坤 ,阎炳茂. 红富士苹果套袋栽培技术[J]. 烟台果树,.2001(2). 42~43
    [12] 孙建设,马宝琨,章文才.富士苹果果皮色素形成的需光特性研究[J],园艺学报,2000,27
     (3):213~215
    [13] 池方,李树人,田红星.光照对套袋苹果花青苷含量的影响[J]. 河南农业大学学报,1997,31
     (2):174~177
    [14] 程存刚,刘凤之,巍长存,等.套袋对红富士苹果果皮叶绿素和花青苷含量的影响[J]。果树科
     学,2000,17(3):181~184
    [15] 王少敏,高华君,张晓兵.套袋对红富士苹果色素及糖酸含量的影响[J]. 园艺学报,2002,29
     (3):263~265
    [16] 王文江,孙建设,高仪,等. 红富士苹果套袋技术研究. 河北农业大学学报,1996,(4):28~
     32
    [17] 李秀菊,刘用生,束怀瑞. 红富士苹果套袋果实色泽与激素含量的变化 .园艺学报,1998,25
     (3):209~213
    [18] 鞠志国 , 刘连成, 原永兵. 莱阳仕梨酚类物质合成的调节及其对果实品质的影响[J]. 中国
     农业科学, 1993, 2(4): 44~48.
    [19] 原永兵 ,鞠志国,刘成连.急降温对活性氧和梨果心褐变的影响[J].中国农业科学, 1994, 27:
     77~81
    [20] 李秀菊,刘用生,束怀瑞.套袋对红富士苹果果实细胞超微结构的影响[J]. 园艺学报,
    
    
    36 套袋红富士苹果的除袋和采收时期及贮藏期生理特性的研究
     2000,27(3):202~204
    [21] 赵红钰.套袋苹果果皮色素含量的变化. 中国农学通报,1998,14(4):9~11
    [22] 花蕾, 王永熙, 张正茂.西北旱区无公害果品病虫防治技术[M]. 旱地农业技术系列丛书, 西
     安:世界图书出版公司,1998
    [23] 马惠青,陈宏,吴志勇. 惠民短枝红富士苹果不同果袋套袋效果的调查[J]. 中国果树,1998
     (4):46~48
    [24] 张建军,马希满,等.不同果袋对苹果果实的影响[J].中国果树,1996(2):12~14
    [25] 李昌怀. 果实套袋研究[J]. 落叶果树,1993,3:56~57
    [26] 万惠民. 刘月英. 张金海. 金矮生苹果套袋技术试验. 北方园艺,1998(1):23~24
    [27] 荣瑞信,刘升贵. 红富士,新红星苹果套塑料微膜袋实验初报. 烟台果树. 1997,(4): 13~
     15
    [28 李振刚,贾中雄,等. 不同袋种对红富士苹果的套袋效果试验[J]. 山西果树,2000(1):15
    [29] 潘增光, 王国宾, 新红星苹果果实着色期几种色素含量变化及其相关性(简报). 植物生理学
     通讯, 1996 32 5 347~349
    [30] 辛贺明,张喜焕.套袋对鸭梨果实内含物变化及内源激素水平的影响[J].果树学
     报,2003,20(3):233~235.003
    [31] 王少敏 ,高华君,张骁兵,等.套袋对红富士苹果色素及糖、酸含量的影响[J].园艺学
     报,2002,29(3):263~265
    [32] 王少敏,赵红军,刘密明.纸袋种类及采收期对新红星苹果质量的影响[J]. 北方果树,1998
     (6):10
    [33] 王少敏,白佃林,高华君,等.套袋苹果果皮色素含量对苹果色泽的影响[J].中国果树,2001,
     (3):20~22
    [34] 王少敏,王忠友,赵红军. 短枝型红富士苹果果实套袋技术比较试验[J]. 山东农业科学,
     1998,(3):28~30
    [35] 孙忠庆,陈宏,吴建军.套袋对提高惠民短枝红富士苹果品质的效应.中国果树,1995,(2):
     36~38
    [36] 湛有光,再谈果实套袋[J].西北园艺,2001(2):2
    [37] 赵红军,,王少敏,高华君,等. 果实套袋机理研究进展:中国园艺学会编. 中国园艺学会成立
     70 周年纪念优秀论文选编. 北京:中国科学技术出版社,1999.17~20
    [38] 胡念来,刘新法. 苹果利用塑料薄膜袋进行果实套袋试验报告. 烟台果树,1997(2). 15~17
    [39] 陈敬宜,辛贺明,王彦敏.梨果实袋光温特性及鸭梨套袋研究[J]. 中国果树,2000(3):6~9
    [40] 牛自勉,卜万锁,杨家洪,等.套袋对苹果果皮色素及芳香物质含量的影响[J]. 山西果树,1995,
     (3):1~4
    [41] 李雪红,牛自勉. 不同时期除袋对红富士苹果质量的影响[J]. 山西果树,2000(3). 4~5
    [42] 董文成. 富士苹果套袋与解袋的适宜时间. 河北果树,1998(2):85~87
    
    
    参 考 文 献37
    [43] 陈昆松,张上隆.采后果实成熟衰老的分子生理学机理及其调控.植物分子生理学进展[J],浙
     江大学出版社,2000
    [44] 李宗霆. 植物激素及其免疫检测技术. 江苏:科学技术出版社. 1996
    [45] 高经成,袁明耀,徐荣江.柿子采后成熟过程中生理代谢和品质变化及乙烯的崔熟效果[J]. 食
     品科学,1993,(4):14~16
    [46] 屈慧鸽,孙宪忠,赵淑兰,等. 软枣猕猴桃贮藏过程中软化因素研究.特产研究,1999,3:25~
     28
    [47] 宫明波,郑学勤,位绍文,等. 寒露蜜桃采后呼吸变化规律,北方园艺,2000,1:29~30
    [48] 黄森,张继澍. 低乙烯减压处理对柿果实乙烯生物合成的影响[J]. 西北植物学报,2001,21
     (2):318~322
    [49] 钱永华. 柿子采后主要生理变化及 AOA 处理对其的影响[学位论文]. 陕西杨凌:西北农业大学
     基础科学系,1993
    [50] 彭永宏,成文. 果实采后操作技术研究概述[J]. 果树科学,1999,16(4):293~300
    [51] 敬兰花,种康,杨成德,等苹果的抗氧呼吸与果实呼吸越跃变的关系. 西北植物学报,1994,
     14(2):117~122
    [52] 梁厚果,吕忠恕.植物学报,1964,12:261
    [53] 梁铮. 植物线粒体抗氧电子传递链[J].植物生理学通讯,1985,(5):1~9
    [54] 吕忠恕. 抗氧呼吸及果实呼吸跃变的关系[J]. 植物学报,1985,27(5):496~503
    [55] 张国树. 柿子后熟过程中呼吸动态和内源乙烯浓度变化的研究. 莱阳农学院学报,1991,9(4):
     284~288
    [56] 申曙光.红富士苹果果实发育期间生理生化变化的研究[J]. 园艺学报,1991,18(1):1~3
    [57] 夏春森,王兰英. 红星苹果在贮藏过程中果肉发绵生理过程研究[J]. 园艺学报,1981,8(2):
     29~31
    [58] 周培根,罗祖友,戚晓玉等. 桃成熟期间果实软化与果胶及有关酶的关系[J].南京农业大学学
     报,1991,14(2):33~37
    [59] 叶钢,缪颖,毛节琦橘果实采后钙处理对纤维素酶和果胶酶的影响[J].浙江农业大学学报,
     1993,19(4):450~454
    [60] 徐荣江. 香蕉的后熟及其催熟[J]. 中国果品研究,1983,22:7~9
    [61] 周宏伟,吴耕西. 长把梨贮藏中多聚半乳糖醛酸酶与果胶甲酯酶的作用[J]. 山东农业大学学
     报,1992,23(1):67~69
    [62] 陆春贵,徐鹤林,周立新.PG、ACC、乙烯对番茄果实成熟的影响[J]. 园艺学报,1995,22(1):
     57~60
    [63] 丁长奎. 果实完熟过程中的激素调控[J]. 植物生理学通讯,1990,(5):5~9
    [64] 朱广廉. 果实成熟及调控[J].生物学通报,1994,29(9):11~12
    [65] 叶志彪,李汉霞,周国林. 番茄多聚半乳糖醛酸酶反义 cDNA 克隆的遗传转化和转基因植株再
    
    
    38 套袋红富士苹果的除袋和采收时期及贮藏期生理特性的研究
     生[J].园艺学报,1994,21(3):305~306
    [66] 鞠志国,朱广廉. 水果贮藏期间的组织褐变问题[J].植物生理学通讯,1988,(4):46~48
    [67] 牟其芸,张华,孙凤兰. 果蔬中多酚氧化酶特性研究[J]. 天津农业科学,1997,42,12~15
    [68]鞠志国. 多酚氧化酶及其底物对梨组织褐变的影响[J]. 莱阳农学院学报,1987,(2):42~47
    [69] 王庆国,李萍,仇洪伟. 青州蜜桃贮藏技术的初步研究[ M].果树科学,1992,4,12~13
    [70] 鞠志国. 采收对莱阳花梨酚类物质代谢和组织褐变的影响[J].中国农业科学,1991,24(2):
     63~68
    [71] 蒋跃明,陈绵达,林植芳等. 香蕉低温酶促褐变[J]. 植物生理学报,1991,17(2):157~163
    [72] 刘曼西. 有机酸对马铃薯多酚氧化酶活性的研究[J]. 植物生理学通讯,1991,27(5):350~
     353
    [73] 林哲书,张维钦. 香蕉果肉组织的多酚氧化酶. 植物生理学报,1995,(2):94
    [74] 王慧,阿地力. 葡萄贮藏中有机酸代谢与果实褐变的关系. 干旱区研究,1992,9(4):68~
     71
    [75] 彭世清,李华,葡萄贮藏过程中的褐变初探. 食品科学,1995,16(7):54~56
    [76] 曹尚银,倪勇. 套微膜袋对苹果品质的影响. 北方果树,1999,(3):10~11
    [77] 王少敏,高华君,刘嘉芬等. 套袋短枝红富士果实内含物及果皮色素的变化. 果树科学,17
     (1):76~77
    [78] 柴全喜 .不同果袋对鸭梨套袋的效果.河北果树,2001(1):7~8
    [79] 仝月澳、周厚基著. 果树营养诊断法(第一版)[ M].高等教育出版社,2000.1
    [80] 高俊凤主编. 植物生理学实验技术(第一版)[M].高等教育出版社,2000,1,1
    [81] 黄森,张纪澍. 低乙烯减压处理对柿果实乙烯生物合成的影响[J]. 西北植物学报,2001,21
     (2):318~322
    [82] 王振镒:植物生理大实验[M](西北农林科技大学校内使用教材),1991,39~40
    [83] 陈建勋. 植物生理学实验指导[M](华南理工大学出版社). 2002,2
    [84] 现代植物生理学实验指导. 中国科学院上海植物生理研究所,上海市植物生理学会编, 科学出
     版社. 1999
    [85] 高华君,王少敏. 红色苹果套袋与除袋机理研究概要[J]. 中国果树,2000(2):46~48
    [86] 纪永强. 套袋着色机理初探. 西北园艺,2000,(4):12~12
    [87] 陈彦同. 苹果有袋栽培的发展前景. 河北林果研究,1997,12(3). 263~266
    [88] 骆蒙,方天祺,张治中等. 甜瓜成熟期多聚半乳糖醛酸酶与乙烯的变化和果实软化的关系.植
     物生理学通讯,1996,32(5):338~341
    [89] 生吉苹,罗云波,申琳. PG 和 LOX 对采后番茄果实软化及细胞壁超微结构的影响. 园艺学报,
     2000,27(4):276~281
    [90] 杨德兴,戴京晶,庞向宇,等. 猕猴桃衰老过程中 PG﹑果胶质和细胞壁超微结构的变化[J]. 园
     艺学报,1993,20(4):341~345
    
    
    参 考 文 献 39
    [92] 彭丽桃. 油桃后熟软化机理及 GA3 处理效应研究[学位论文]. 陕西杨凌:西北农林科技大学园
     艺学院,2000
    [92] 王连起,刘玉鹏等. 红富士苹果套袋综合配套栽培技术的应用[J]. 中国果树,1996,(2):31~
     32
    [93] 赵宗方,赵勇. 果实花青苷含量与 PAL 活性关系的研究[J]. 园艺学报,1994,21(2). 199~200
    [94] 周爱琴,祝军. 苹果花青苷形成与 PAL 活性及蛋白质含量的关系[J]. 园艺学报, 1997,2(3).
     97~99
    [95] 原永兵,刘连成,鞠志国,等. 苹果果皮红色形成的机制[M ].园艺学年评,1995,1:121~
     132
    [96] 关军峰,束怀瑞等. 苹果果实衰老与活性氧代谢的关系. 园艺学报,1996,23(4): 326~328
    [97] 北京农业大学主编. 果品贮藏加工学. 北京: 农业出版社, 1990. 38~47
    [98] 席妤芳,郑永华,应铁进. 杨梅果实采后的衰老生理.园艺学报,1994,21(3):213~216
    [99] 高敏,张继澍. 钙处理对红富士苹果酶促褐变的影响[J]. 西北植物学报,2002,22(4): 961~
     964
    [100] Noro S, kudo N,kitsunaT.Difference in sugar and organic and between red and yellow apple
     cultivars at times of coloring and effect of citrimalic acid on development of anthocyamin.J JPn Soc
     Hortic sci ,1988,57:381~389
    [101] Saure MC . External control of anthocyanin formation in apple. Sci Hort, 1990,42:181~218
    [102] Creasy L. The significance of carbohydrate metabolism in flavonoid synthesis in strawberry leaf
     disks. phytochemistry, 1968, 7:1743~1749
    [103] Arakava O. photoregulation of anthocyanin synthesis in apple fruits under UVB and red light. Plant
     cell physiology,1988,29:1385~1390
    [104] Siegelman HW, Hendricks SB. Photo control of anthocyanin synthesis in apple skin. Plant physiology,
     1985,33:185~190
    [105] Looney etal, [1]Looney N E,McKellar J E.Thinning Spartan apple with carbonyl and
     1-naphthaleneacetic acid:Influence of spray volume and combinations of chemicals.Can.J.Plant
     sci.,1984,64:161~166
    [106] Cynthia L B. etal. Accumulation of antioxidants in apple peel as related to pre-harvest factors and
     superficial Scald susceptibility of the fruit. J Amer Soc Hort Sci. 1994,119(2):264~269
    [107] Procter JTA, Loughead EC. The effect of covering apples during development. HortSci ,
     1976,11:108~109
    [108] Magness,J.R. 1929. Proc.Amer.Soc.Hort.Sci.,26:160~162
    [109] Uota ,M,Temperature studies on the development of anthocyanin in ‘Mclntosh’apples.proc.Am,Soc
     Hortic,Sci, 1952,59:231~237
    [110] Hillman W S. The physiology of photo-chrome. Annu Rev plant physiol, 1967,18: 301~324
    
    
    40 套袋红富士苹果的除袋和采收时期及贮藏期生理特性的研究
    [111] Jose A M, Schafer E. Distorted photo-chrome action spectra in green plants. Planta. 1978,138:25~
     28
    [112] LiggeRL,Thompson JE, Baker JE.Freeradical-mediated formation of ethylene from
     1-amino-eyclopropare-1-carboxylic acid A Spin tray[J]. Study plant cell physiol,1982,23:171~177
    [113] Mcrae DG, Thompson JE. Evidence for the involvement of these peroxide radical in the conversion
     of ACC to ethylene by pea microtonal memo-brines[J]. Plant Cell physiol,1982,23:375~383
    [114] Hinton DJ.The role of cell wall hydrolyses in fruit softening[J].Horticultural Review,1983,5:169~
     219
    [115] Hinton DM,Pressey.cellulase activity in peaches during ripening[J].J.Food Sci,1974,39:783~785
    [116] Buescher RW, Furmanski RJ.Role of pectin esterase and polyvalence turners in the formation of
     woolliness in peaches[J].J Food Sci,1978,43:264~256
    [117] Pressey R,Avants JK. Separation and characterization of endopolygalacturonase and exopoly
     galacturonase from peaches[J]. plant physiol,1973,52:252~256
    [118] Pogson BJ, Seymour GB. Immunolocalisation of peptidase in tomato fruit[J].New Zealand Journal of
     Crop and Horticultural science,1992,20(2):137~146
    [119] Strand LL,RechtorsC,Mussell H. polygalacturonase release cell wall bound proteins[J]. Plant
     physiol,1976,58:722~725
    [120] Chan HT. Partial separation and characterization of papaya endopoly galacturonase and
     exopolygalacturonase[J]. J Food Sci, 1979,47:1478~1483
    [121] Hobson GE. The firmness of tomato fruit in relation to polygalacturonase activity[J].Biochem,
     1963,86:365~385
    [122] Mollendorff. L.J. The effect of storage temperature and fruit size on firmness, extractable
     juice,woollinese and browning in two nectarine cultivars[J]. Journal of Horticultural science
     1992,67(5):647~654
    [123] Lee, CY kagan V, Jaworsri AW. Enzymatic browning in relation to phonetic compounds[J]. Agric,
     Food Chem.1990, 38:99~101
    [124] FlefcherLA.A Preliminary study of the factors affecting red color of apple. Proc Amer Sci.
     Hort.Sci.1929,26: 191~196
    [125] Kokuchi T. Influence of ?fruit bag. practice on coloration process in apples of differ emit varieties.
     Bull Fac Agric, Hirosakiunia,1964.10:89~99
    [126] Blankenship SM, Unrath CR.PALand ethylene content during maturation of Red and Golden
     Delicious apple. Phytochemistry. 1988,27:1001~1003
    [127] Brodnfeldt R, Mohr H. Time courses for phytochrome-induced enzyme levels in phenypropanoid
     metabolism (phenyl amiammomia-lyase,naringeninchalcon syntheses) compared with time course
    
    
    参 考 文 献 41
     for phytochrome-mediated end-product accumulation (anthocyanin,quercetion). planta, 1988, 176:
     383~390
    [128] Knogge W, schemlzer, Weissenbock G. The role of chaconne syntheses in the regulation of falconoid
     biosynthesis in developing oat primary leaves. Arch Biochem Biophysics, 1986,250:364~372
    [129] JuZ, liuC,Yuan Y. Relationships among phenylalamine ammonia-lays activity, simple phenol
     concentrations and anthocyanin accumulation in apple. Scio Hort,1995,61:215~226
    [130] Piretti MV, Galleranin G, patellar GC. Polyphonic fate and superficial scald in apple. Post harvest
     Boil Tech, 1994,4:213~224
    [131] Dong YH,Mitra D,kootra A etal. Post harvest stimulation of skin color in Royal Gala apple. Jamey
     Soc Hort Sci ,1995,120:95~100
    [132] Sun Y, Hrazidina G. Isolation and characterization of a UDPG:flavonol-3-o-glucosyltransferase from
     illuminated red cabbage seedling. plant physiology, 1991,95:570~576
    [133] Murrary JR , Hackett WP. Dihydroflavonol reductase activity in relation to deffer entail-anthocyanin
     accumulation in juvenile and mature phase Hedera helixL. Plant physiol,1991,97:343~351
    [134] Yang S F, Hoffman N E. Ethylene biosynthesis and its regulation in higher plants. Ann Rev Plant
     Physical, 1984, 35: 155~189
    [135] McDonald B. Controlled atmosphere storage of kiwifruit. Scientia Horticulture, 1982, 17: 113~114
    [136] Coseteng M Y. Lee C Y. Changes in apple polyphenoloxidase and polyphenol concentrations in
     relation to degree of browning [J]. J Food Sci. ,1987,52(4): 985
    [137] Siniphanich J, Kader AA. Effects of CO2 on total phenolics phenlalanine ammonialyase and
     polyphenol oxidase in lettuce tissue. J Amer Soc Hort Sci, 1985,110(2): 249~435

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