Effects of Paper Pouches of Different Light-transmittance on Fruit Color and Carotenoids Composition of Bagged Red-flesh Peaches
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摘要:
目的 研究不同透光纸袋处理后对红肉桃果肉色泽及类胡萝卜素成分及其含量的变化。 方法 以红肉桃品种半斤桃为试材,于盛花后40 d分别进行50%透光的黄色单层袋、0透光的外黄内黑双层袋处理,以不处理(100%透光)为对照。分别于盛花后71、82、90、95 d测定半斤桃果肉的色差及类胡萝卜素含量的变化情况。 结果 50%透光处理对果肉B值的影响呈先升后降的趋势,对色差C、H值没有影响,且仅在盛花后82 d时降低了色差A值;0透光处理对果肉色差A、C值没有影响,且仅在果实成熟时降低了色差B、H值;不同透光强度在果实成熟时均显著提高了果肉色差L值。不同透光强度处理对果肉类胡萝卜素5个成分总含量、β-隐黄质、α-胡萝卜素均没有影响;果实成熟时,不同透光强度处理均降低了果肉β-胡萝卜素含量,但50%透光处理显著提高了玉米黄素含量,0透光处理显著提高了叶黄素含量。 结论 在田间栽培生产过程中,可在盛花后40 d对半斤桃进行50%透光套袋处理,提高果肉玉米黄素含量,或用0透光套袋处理,提高果肉叶黄素含量。 Abstract:Objective Effects of bagging with paper pouches of different light-transmitting property on fruit color and carotenoids composition of red-flesh Banjintao peaches were investigated. Method Pouches made of yellow-colored, monolayer paper providing 50% light-transmittance and those laminated with a black interior layer to block the sunlight transmission were used to bag the fruits on the peach trees starting 40 d after full bloom. For control, no bagging was applied on the fruits (CK). Chromatic aberration and carotenoid compositions of the peach sarcocarp were measured at 71, 82, 90, and 95 d after full bloom. Result The bagging with 50% light-transmitting pouches on the peaches increased Chromatism B of the sarcocarp initially and followed by a decline, did not affect Chromatism C or H, and decreased Chromatism A 82 d after full bloom. The 2-layer pouches, which allowed no light exposure for the fruits, induced no effect on Chromatism A and C, while reduced Chromatism B and H on the ripened peaches. On the other hand, Chromatism L of the sarcocarp rose upon ripening with or without the bagging. The treatments exerted no significant effect on the bagged peaches on the total carotenoids, β-cryptoxanthin or α-carotene in the sarcocarp either. But, as the fruit was ripening, the bagging caused a reduction in the sarcocarp on β-carotene and significantly increased zeaxanthins under 50% light-transmission, as well as, on xanthophylls when the fruits were not exposed to sunlight. Conclusion In field practice, it was possible to use 50% light-transmitting pouches 40d after full bloom to bag the fruits on Banjintao peach trees to encourage the production of zeaxanthins, or to apply the 2-layer, no-light-transmission pouches to boost the content of xanthophylls in the sarcocarp. -
Key words:
- Peach /
- bagging /
- carotenoids /
- chromatic aberration
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图 1 不同透光率纸袋对半斤桃果实发育后期果肉类胡萝卜素组分的影响
注:表中CK代表对照,Ⅰ代表50%透光处理、Ⅱ代表0透光处理。不同字母表示同一个品种在同一发育阶段中不同处理条件下在0.05水平差异显著。
Figure 1. Effect of paper pouches differed in light-transmittance on carotenoids in sarcocarps of bagged Banjintao peaches at late stage of fruit development
Notes: CK mean a comparison with no bagged, Ⅰ mean 50%light transmission treatment, Ⅱ mean 0light transmission treatment. The different letters in the same row represent significant difference of the same varieties and the same developmental stages among different treatments at 0.05 level.
表 1 不同透光率纸袋对半斤桃果实发育后期果肉色差的影响
Table 1. Effect of paper pouches differed in light-transmittance on chromatic aberration of sarcocarps of bagged Banjintao peaches at late stage of fruit development
盛花后天数
Days after full bloom/d处理
Treatment色差A值
Chromatism A value色差B值
Chromatism B value色差C值
Chromatism C value色差L值
Chromatism L value色差H值
Chromatism H value71 CK −1.25±1.31 a 16.33±3.96 a 16.42±3.97 a 56.05±2.61 a 86.33±0.95 a I −0.91±0.85 a 16.44±3.22 a 16.49±3.17 a 49.23±4.46 b 86.42±0.69 a Ⅱ −0.78±1.27 a 16.96±2.26 a 17.01±2.27 a 55.97±4.56 a 86.59±0.41 a 82 CK 9.69±9.68 a 7.53±3.02 b 14.23±6.37 a 48.07±7.56 b 85.37±1.72 a I −0.93±1.35 b 14.94±1.91 a 15.02±1.95 a 58.66±6.27 a 86.14±0.50 a Ⅱ 5.02±6.41 ab 8.22±3.49 b 11.18±3.84 a 55.88±7.86 ab 84.46±1.54 a 90 CK 27.72±2.24 a 7.46±1.05 a 28.72±2.39 a 35.19±6.41 ab 88.00±0.17 a I 27.55±2.76 a 7.77±1.17 a 28.63±2.95 a 30.03±3.91 b 87.98±0.21 a Ⅱ 31.52±4.88 a 8.25±1.44 a 32.58±5.08 a 39.84±2.42 a 88.19±0.37 a 95 CK 33.00±2.24 a 9.16±1.53 a 34.26±2.54 a 35.40±1.61 c 88.32±0.13 a I 31.17±2.32 a 5.48±0.43 b 31.65±2.35 a 43.73±5.86 b 88.18±0.14 ab Ⅱ 30.86±2.93 a 5.33±0.69 b 31.32±2.98 a 48.47±3.66 a 88.16±0.17 b 注:表中CK代表对照,Ⅰ代表50%透光处理、Ⅱ代表0透光处理。数字为平均值±标准差;不同字母表示同一个品种在同一发育阶段中不同处理条件下在0.05水平差异显著。
Notes: CK mean a comparison with no bagged, Ⅰmean 50% light transmission treatment, Ⅱ mean 0 light transmissiontreatment. Data in the table is mean ±SD. The different letters in the same row represent significant difference of the same varieties and the same developmental stages among different treatments at 0.05 level.表 2 类胡萝卜素成分与色差指标的相关系数
Table 2. Correlation coefficient between carotenoids composition and color differences of peach sarcocarps
参数
Color parameters色差A值
Chromatism A value色差B值
Chromatism B value色差C值
Chromatism C value色差L值
Chromatism L value色差H值
Chromatism H value叶黄素 xanthophylls −0.872** 0.847** −0.731** 0.623** −0.523** 玉米黄素 zeaxanthins 0.911** −0.674** 0.898** −0.596** 0.795** β-隐黄质 β-cryptoxanthin − − − − − α-胡萝卜素 α-carotene −0.639** 0.799** −0.429** 0.414* −0.241 β-胡萝卜素 β-carotene −0.886** 0.820** −0.761** 0.685** −0.609** 注:*为0.05%显著水平差异;**为0.01%显著水平差异;−为无法计算。
Note: * stands for P<0.05; ** stands for P<0.01;−can’t be counted. -
[1] 王力荣, 朱更瑞. 桃种质资源描述规范和数据标准[M]. 北京: 中国农业出版社, 2005. [2] 许建兰, 马瑞娟, 俞明亮, 等. 红肉桃果实发育过程中果肉色素含量的变化 [J]. 江苏农业学报, 2010, 26(6):1347−1351. doi: 10.3969/j.issn.1000-4440.2010.06.041XU J L, MA R J, YU M L, et al. Changes of flesh pigment contents of blood-flesh peach during fruit de-velopment [J]. Jiangsu Journal of Agricultural Sciences, 2010, 26(6): 1347−1351.(in Chinese) doi: 10.3969/j.issn.1000-4440.2010.06.041 [3] CEVALLOS-CASALS B A, BYRNE D, OKIE W R, et al. Selecting new peach and plum genotypes rich in phenolic compounds and enhanced functional properties [J]. Food Chemistry, 2006, 96(2): 273−280. doi: 10.1016/j.foodchem.2005.02.032 [4] VIZZOTTO M, CISNEROS-ZEVALLOS L, BYRNE D H, et al. Large variation found in the phytochemical and antioxidant activity of peach and plum germplasm [J]. Journal of the American Society for Horticultural Science, 2007, 132(3): 334−340. doi: 10.21273/JASHS.132.3.334 [5] 沈志军, 马瑞娟, 俞明亮, 等. 桃三种肉色类型果实抗氧化因子的比较评价 [J]. 中国农业科学, 2012, 45(11):2232−2241. doi: 10.3864/j.issn.0578-1752.2012.11.012SHEN Z J, MA R J, YU M L, et al. Evaluation of antioxidant factors in peach with three types of flesh color [J]. Scientia Agricultura Sinica, 2012, 45(11): 2232−2241.(in Chinese) doi: 10.3864/j.issn.0578-1752.2012.11.012 [6] MIKI W. Biological functions and activities of animal carotenoids [J]. Pure and Applied Chemistry, 1991, 63(1): 141−146. doi: 10.1351/pac199163010141 [7] NAGAO A. Absorption and function of dietary carotenoids[M]//Forum of Nutrition. Basel: KARGER, 2009: 55−63. [8] FRASER P. The biosynthesis and nutritional uses of carotenoids [J]. Progress in Lipid Research, 2004, 43(3): 228−265. doi: 10.1016/j.plipres.2003.10.002 [9] NISHINO H, MURAKOSHI M, TOKUDA H, et al. Cancer prevention by carotenoids [J]. Archives of Biochemistry and Biophysics, 2009, 483(2): 165−168. doi: 10.1016/j.abb.2008.09.011 [10] 龚林忠, 王富荣, 何华平, 等. 桃生长发育过程中果肉、果皮及叶片色素含量的变化研究 [J]. 江西农业大学学报, 2015, 37(6):982−987.GONG L Z, WANG F R, HE H P, et al. The changes in contents of pigments in flesh, peel and leaf of peach during fruit development [J]. Acta Agriculturae Universitatis Jiangxiensis (Natural Sciences Edition), 2015, 37(6): 982−987.(in Chinese) [11] 章秋平, 李疆, 王力荣, 等. 红肉桃果实发育过程中色素和糖酸含量的变化 [J]. 果树学报, 2008, 25(3):312−3315.ZHANG Q P, LI J, WANG L R, et al. Study on the changes of contents of pigments, sugar and acid of blood -flesh peach cultivar during fruit development [J]. Journal of Fruit Science, 2008, 25(3): 312−3315.(in Chinese) [12] 王少敏, 高华君, 张骁兵. 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. doi: 10.3321/j.issn:0513-353X.2002.03.016WANG S M, GAO H J, ZHANG Q B, et al. Effects of bagging on pigment, sugar and acid development in ‘Red Fuji’ apple fruits [J]. Acta Horticulturae Sinica, 2002, 29(3): 263−265.(in Chinese) doi: 10.3321/j.issn:0513-353X.2002.03.016 [13] 柳蕴芬, 刘莉, 段艳欣, 等. 光对红肉桃果肉红色形成的影响 [J]. 中国农学通报, 2010, 26(13):308−311.LIU Y F, LIU L, DUAN Y X, et al. Effects of sunlight on red color formation in the flesh of red-fleshed peach(Prunus persica L.) [J]. Chinese Agricultural Science Bulletin, 2010, 26(13): 308−311.(in Chinese) [14] 王安柱, 韩明玉, 丁勤, 等. 不同类型果袋对秦光2号油桃品质的影响 [J]. 果树学报, 2006, 23(4):602−604.WANG A Z, HAN M Y, DING Q, et al. Effect of different bags on the quality of Qinguang 2 nectarine [J]. Journal of Fruit Science, 2006, 23(4): 602−604.(in Chinese) [15] 陈栋, 谢红江, 李靖, 等. 套袋对桃果实品质形成和果皮色素变化规律的影响 [J]. 西南农业学报, 2011, 24(6):2132−2136. doi: 10.3969/j.issn.1001-4829.2011.06.022CHEN D, XIE H J, LI J, et al. Effects of bagging on fruit quality and variation of skin pigment of peach [J]. Southwest China Journal of Agricultural Sciences, 2011, 24(6): 2132−2136.(in Chinese) doi: 10.3969/j.issn.1001-4829.2011.06.022 [16] 颜少宾, 蔡志翔, 俞明亮, 等. 桃果实发育阶段肉色形成与类胡萝卜素的变化分析 [J]. 西北植物学报, 2013, 33(3):613−619. doi: 10.3969/j.issn.1000-4025.2013.03.027YAN S B, CAI Z X, YU M L, et al. Incarnadine formation and carotenoids changes in peach fruit at different development stages [J]. Acta Botanica Boreali-Occidentalia Sinica, 2013, 33(3): 613−619.(in Chinese) doi: 10.3969/j.issn.1000-4025.2013.03.027 [17] 颜少宾, 张妤艳, 马瑞娟, 等. 桃果实类胡萝卜素测定方法的研究 [J]. 果树学报, 2012, 29(6):1127−1133.YAN S B, ZHANG Y Y, MA R J, et al. Study the measurement of carotenoids from the peach fruit [J]. Journal of Fruit Science, 2012, 29(6): 1127−1133.(in Chinese) [18] 李玉阔, 齐秀娟, 林苗苗, 等. 套袋对2种类型红肉猕猴桃果实着色的影响 [J]. 果树学报, 2016, 33(12):1492−1501.LI Y K, QI X J, LIN M M, et al. Effect of bagging on fruit pigmentation in two types of red-fleshed kiwifruit [J]. Journal of Fruit Science, 2016, 33(12): 1492−1501.(in Chinese) [19] 廖振军. 采前套袋对桃果实品质影响的研究 [J]. 广西农业科学, 2004, 35(4):296−297.LIAO Z J. Effect of covering fruit with bag before harvest on the qualities of peach fruit [J]. Guangxi Agricultural Sciences, 2004, 35(4): 296−297.(in Chinese) [20] BRANDI F, BAR E, MOURGUES F, et al. Study of ‘Redhaven’ peach and its white-fleshed mutant suggests a key role of CCD4 carotenoid dioxygenase in carotenoid and norisoprenoid volatile metabolism [J]. BMC Plant Biology, 2011, 11: 24. doi: 10.1186/1471-2229-11-24 [21] HOWITT C A, POGSON B J. Carotenoid accumulation and function in seeds and non-green tissues [J]. Plant, Cell & Environment, 2006, 29(3): 435−445. [22] EGEA I, BARSAN C, BIAN W, et al. Chromoplast differentiation: Current status and perspectives [J]. Plant and Cell Physiology, 2010, 51(10): 1601−1611. doi: 10.1093/pcp/pcq136 [23] WISUTIAMONKUL A, AMPOMAH-DWAMENA C, ALLAN A C, et al. Carotenoid accumulation and gene expression during durian (Durio zibethinus) fruit growth and ripening [J]. Scientia Horticulturae, 2017, 220: 233−242. doi: 10.1016/j.scienta.2017.03.048 [24] ALQUÉZAR B, ZACARÍAS L, RODRIGO M J. Molecular and functional characterization of a novel chromoplast-specific lycopene beta-cyclase from Citrus and its relation to lycopene accumulation [J]. Journal of Experimental Botany, 2009, 60(6): 1783−1797. doi: 10.1093/jxb/erp048 [25] WANG Y, LI J, YANG J, et al. Expression of lycopene cyclase genes and their regulation on downstream carotenoids during fruit maturation of Guoqing No. 1 Satsuma mandarin and Cara Cara navel orange [J]. Scientia Horticulturae, 2011, 127(3): 267−274. doi: 10.1016/j.scienta.2010.10.007 [26] ZHANG J C, ZHOU W J, XU Q, et al. Two lycopene β-cyclases genes from sweet orange (Citrus sinensis L. osbeck) encode enzymes with different functional efficiency during the conversion of lycopene-to-provitamin A [J]. Journal of Integrative Agriculture, 2013, 12(10): 1731−1747. doi: 10.1016/S2095-3119(13)60366-4 [27] BOTELLA-PAVÍA P, BESUMBES Ó, PHILLIPS M A, et al. Regulation of carotenoid biosynthesis in plants: Evidence for a key role of hydroxymethylbutenyl diphosphate reductase in controlling the supply of plastidial isoprenoid precursors [J]. The Plant Journal, 2004, 40(2): 188−199. doi: 10.1111/j.1365-313X.2004.02198.x [28] 董新甜, 曹洪波, 张飞燕, 等. 遮光性套袋对黄肉桃类胡萝卜素合成及相关基因表达的影响 [J]. 园艺学报, 2015, 42(4):633−642.DONG X T, CAO H B, ZHANG F Y, et al. Effects of shading fruit with opaque paper bag on carotenogenesis and related gene expression in yellow-flesh peach [J]. Acta Horticulturae Sinica, 2015, 42(4): 633−642.(in Chinese) [29] 徐秀红, 卢华兵, 吕桂华, 等. 玉米黄质的研究进展及展望 [J]. 中国农学通报, 2011, 27(2):333−339.XU X H, LU H B, LV GH, etal. Research Progress and Prospects of Zeaxanthin [J]. Chinese Agricultural Science Bulletin, 2011, 27(2): 333−339.(in Chinese) [30] 陈城, 程曦, 黄丛林, 等. 叶黄素的提取方法和功能研究进展 [J]. 河北林业科技, 2016(3):71−75. doi: 10.3969/j.issn.1002-3356.2016.03.026CHEN C, CHENG X, HUANG C L, et al. Research progresses on extraction methods and functions of lutein [J]. The Journal of Hebei Forestry Science and Technology, 2016(3): 71−75.(in Chinese) doi: 10.3969/j.issn.1002-3356.2016.03.026