





中国农业科学 ›› 2023, Vol. 56 ›› Issue (1): 129-143.doi: 10.3864/j.issn.0578-1752.2023.01.010
张克坤2(
),陈可钦2,李婉平2,乔浩蓉2,张俊霞2,刘凤之1,房玉林2(
),王海波1(
)
收稿日期:2022-03-21
接受日期:2022-04-15
出版日期:2023-01-01
发布日期:2023-01-17
联系方式:
张克坤,Tel:15295573556;E-mail:zhangkekun1990@nwafu.edu.cn。
基金资助:
ZHANG KeKun2(
),CHEN KeQin2,LI WanPing2,QIAO HaoRong2,ZHANG JunXia2,LIU FengZhi1,FANG YuLin2(
),WANG HaiBo1(
)
Received:2022-03-21
Accepted:2022-04-15
Published:2023-01-01
Online:2023-01-17
摘要:
【目的】通过分析不同灌水量处理对葡萄果实品质指标、香气组分积累、香气物质合成相关基因表达影响的差异,确定灌水模式与鲜食葡萄感官品质形成间的关系,为限根栽培葡萄最佳灌水量的确定提供参考。【方法】以鲜食葡萄‘阳光玫瑰’为试材,设置对照组CK、轻度水分亏缺组(DI-1)、重度水分亏缺组(DI-2),系统比较不同灌水量对葡萄果实外观形态指标、色泽指标、香气组分、萜烯合成相关基因表达水平等的影响。【结果】灌水量影响葡萄果粒的形态与质地特征,采收期时葡萄果粒的纵径并未受到灌水量的显著影响,而亏缺灌溉组果粒的横径、单粒重显著降低(P<0.05)。葡萄果肉的硬度也受到亏缺灌溉的影响而下降,特别是DI-2组,葡萄果肉硬度明显低于其他处理组。亏缺灌溉组DI-1、DI-2的葡萄果实中葡萄糖含量显著高于对照处理,重度亏缺组DI-2果糖含量显著高于其他处理,而轻度的亏缺灌溉(DI-1)并未对葡萄果实的可溶性固形物、可滴定酸含量产生显著影响。亏缺灌溉处理下葡萄果皮中叶绿素、类胡萝卜素含量均出现降低,DI-2组果皮中叶绿素与类胡萝卜素含量的比值最低。灌水量影响到葡萄果实中香气组分的积累,对于萜烯类物质,轻度亏缺灌溉DI-1处理的果实中柠檬烯、水芹烯、α-蒎烯、γ-松油烯、(E)-β-罗勒烯、萜品油烯、(E)-呋喃氧化芳樟醇、芳樟醇、二氢芳樟醇、α-萜品醇、香茅醇、橙花醇、香叶醇等组分的含量最高,DI-1处理的果实中萜烯类物质总量也最高,DI-2组中萜烯类物质含量次之,而对照组最低。由酯类物质总量来看,DI-1组中酯类物质含量最高,对照组次之,而DI-2组含量最低;由醛类物质总量来看,轻度亏缺灌溉组DI-1中醛类物质明显低于照组与DI-2组;由高级醇类物质总量来看,DI-1组含量最高,DI-2组含量次之,对照组含量最低。不同灌水量条件下萜烯合成相关基因的响应程度与表达趋势存在差异,VvDXS1、VvDXS2、VvDXR、VvDHR、VvPNLinNer1、VvCSLinNer、VvGwbOci、VvCSbOci、VvGwGer等基因均能响应水分亏缺而上调。【结论】综合果实中香气组分的积累量与感官品质,轻度水分亏缺(60%—70%田间最大持水量)更能促进‘阳光玫瑰’葡萄果实香气品质的形成,有助于提高果实的商品价值。
张克坤,陈可钦,李婉平,乔浩蓉,张俊霞,刘凤之,房玉林,王海波. 灌水量对限根栽培‘阳光玫瑰’葡萄果实发育与香气物质积累的影响[J]. 中国农业科学, 2023, 56(1): 129-143.
ZHANG KeKun,CHEN KeQin,LI WanPing,QIAO HaoRong,ZHANG JunXia,LIU FengZhi,FANG YuLin,WANG HaiBo. Effects of Irrigation Amount on Berry Development and Aroma Components Accumulation of Shine Muscat Grape in Root-Restricted Cultivation[J]. Scientia Agricultura Sinica, 2023, 56(1): 129-143.
表1
实时荧光定量PCR引物序列"
| 基因名称 Gene name | 基因ID Gene ID | 引物序列Primes sequence (5′-3′) | |
|---|---|---|---|
| VvActin | VIT_04s0044g00580 | F: CTTGCATCCCTCAGCACCTT | R: TCCTGTGGACAATGGATGGA |
| VvDXS1 | VIT_05s0020g02130 | F: GTGCATCACTTTCGGATAGGGA | R: TTGTTTCAGCTCCTTGACAGACAG |
| VvDXS2 | VIT_11s0052g01780 | F: CTGCTGCCCAGGACAACAAT | R: CAGCCAACGTCTCAAGCTCC |
| VvDXS3 | VIT_04s0008g04970 | F: TTGAAAGGGAAACGGGAAC | R: TGGGTGTAAAGAATGACGACTG |
| VvDXR | VIT_17s0000g08390 | F: TGCTGGGGGTCCTTTTGTCCTTCC | R: TCAACGGGCCAATCCCTGAATGC |
| VvDHR | VIT_03s0063g02030 | F: CGTTATGTTAGTAGTTGGTGGGTG | R: CTTATTCTGTTTCCTGGACCTATTC |
| VvGPPS | VIT_15s0024g00850 | F: ATGGTGGTTGCTGAGGTCC | R: CAACAATAGGACTGTGGGACG |
| VvPNLinNer1 | VIT_00s0385g00010 | F: AGATGGGATTTGTCTGCTTTCA | R: CTTATGCTCCTTGTGGACCTTG |
| VvCSLinNer | VIT_00s0271g00060 | F: ATGGCTATGATGTGCCTGAAGA | R: CGTACAAGCAGAGCAGTCCCT |
| VvGwbOci | VIT_12s0134g00020 | F: CTACACGAGGCTATGGCTTTCTT | R: CAAGTAGAACATCATCCGCACCTT |
| VvCSbOci | VIT_12s0134g00030 | F: GGGAAGGCAGAGATGATGTGTTA | R: TTTCCACCACTTGAACATGTCTTT |
| VvCSbOciM | VIT_13s0067g00370 | F: GGTCCTGTAGTACTAGTCCACGCTT | R: ACTCATCCAGTGATGTTCCCAGA |
| VvGwGer | VIT_12s0134g00140 | F: TCAAGTCTCATCGTCTCCTTGTTCA | R: CGCATGTGGAGATAGAGTTAAGGA |
表2
不同灌水处理下‘阳光玫瑰’果实中香气组分的差异"
| 化合物 Compound | CAS 编号 | 保留指数 RI | CK | DI1 | DI2 | 感官描述 Odor description |
|---|---|---|---|---|---|---|
| 酯类 Esters | ||||||
| 乙酸乙酯 Ethyl acetate | 141-78-6 | 612 | 467.81±8.29b | 643.31±10.07a | 128.48±7.86c | 果味、甜、菠萝、香脂 Fruity, sweet, pineapple, balsamic |
| 苯甲酸乙酯 Benzoic acid, ethyl ester | 93-89-0 | 1171 | 20.58±0.58 | 18.24±1.04 | 19.99±1.43 | 甜的、水果、药香香气和味道 Sweet, fruity, medicinal aroma and taste |
| 水杨酸甲酯 Methyl salicylate | 119-36-8 | 1192 | 23.26±0.65b | 41.22±0.91a | 24.03±3.28b | 冬青油 Wintergreen oil |
| 合计 Total | 511.65±8.28b | 702.77±11.6a | 172.5±12.49c | |||
| 醛类 Aldehydes | ||||||
| 正己醛 Hexanal | 66-25-1 | 800 | 85.96±1.63c | 304.3±16.16a | 212.87±11.8b | 苹果、青草香 Apple, grass |
| 庚醛 Heptanal | 111-71-7 | 910 | 7.56±0.27b | 11.96±1.64a | 10.25±0.4a | —— |
| 2-己烯醛 2-Hexenal | 505-57-7 | 854 | 1.73±0.24b | 5.17±0.2a | 0.77±0.058c | 青香、辛香、苹果、脂肪、青草 Green, spicy, apple, fatty, grass |
| (E)-2-己烯醛 2-Hexenal, (E)- | 6728-26-3 | 851 | 2722.06±121.58a | 2034.05±59.3c | 2486±38.53b | 青苹果、青草 Green apple, grassy |
| 辛醛 Octanal | 124-13-0 | 1003 | 2.18±0.16a | 1.64±0.34b | 1.7±0.31b | 甜橙、脂肪、蜂蜜、杏子 Sweet orange, fatty, honey, apricots |
| (E)-2-庚烯醛 2-Heptenal, (E)- | 18829-55-5 | 958 | 0.62±0.04a | 0.3±0.075b | 0.65±0.098a | 青香、果香、脂肪、肉香 Green, fruity, fat, meaty |
| 壬醛 Nonanal | 124-19-6 | 1104 | 7.44±0.25a | 2.78±0.12c | 3.94±0.11b | 绿色,略带刺鼻 green, slightly pungent |
| 2,4-己二烯醛 2,4-Hexadienal, (E,E)- | 142-83-6 | 911 | 2.37±0.21 | 2.50±0.17 | 2.24±0.085 | 甜、青香、果香、柑橘、蜡香、甜瓜味 Sweet, green, fruity, citrus, waxy, melon |
| 癸醛Decanal | 112-31-2 | 1206 | 2.65±0.29 | 2.63±0.18 | 2.43±0.078 | 青草Grassy |
| 苯甲醛 Benzaldehyde | 100-52-7 | 962 | 1.60±0.086 | 1.53±0.18 | 1.46±0.075 | 杏仁、香 Almond, fragrant |
| 2-甲基苯甲醛 2-Methylbenzaldehyde | 529-20-4 | 1064 | 2.14±0.11b | 3.09±0.2a | 2.29±0.19b | —— |
| 2,4-二甲基苯甲醛 Benzaldehyde, 2,4-dimethyl- | 15764-16-6 | 1181 | 7.30±0.12a | 3.42±0.49c | 5.14±0.097b | —— |
| 合计 Total | 2843.6±122.64a | 2373.37±69.61b | 2729.75±38.83a | —— | ||
| 萜烯类 Terpernes | ||||||
| 柠檬烯 D-Limonene | 5989-27-5 | 1018 | 113.76±6.16c | 154.11±5.63a | 129.52±9.44b | 花香、绿色、柑橘 Flowery, green, citrus |
| 水芹烯 alpha.-Phellandrene | 99-83-2 | 1005 | 23.13±3.43b | 28.29±0.72a | 20.1±1.38b | 柑橘香、青香、黑胡椒香 Citrus, green, black pepper |
| α-蒎烯 alpha.-Pinene | 80-56-8 | 948 | 47.93±1.5b | 61.94±3.8a | 52.87±2.81b | —— |
| γ-松油烯 gamma.-Terpinene | 99-85-4 | 1169 | 35.35±1.05c | 52.87±3.71a | 42.68±2.81b | 芳香的松木气味,并略带甜的柑橘风味 Pine wood scent with a slightly sweet citrus flavor |
| (E)-β-罗勒烯 trans-.beta.-Ocimene | 13877-91-3 | 1037 | 4.68±0.37b | 5.74±0.69a | 5.58±0.45a | 青香、热带果香、萜香、木香 Green, tropical fruity, terpene, woody |
| 萜品油烯 Cyclohexene, 1-methyl-4- (1-methylethylidene)- | 586-62-9 | 1088 | 140.84±8.32c | 209.65±4.25a | 181.8±4.04b | 柑橘、木香 Citrusy, wood |
| (E)-呋喃氧化芳樟醇 trans-Linalool oxide (furanoid) | 1000121-97-4 | 1066 | 32.53±0.82c | 51.38±2.83a | 41.7±1.81b | 木香、花香、凉香、萜香、青香 Woody, floral, cool, terpene, green |
| 芳樟醇 Linalool | 78-70-6 | 1099 | 240.62±9.31c | 310.05±10.25a | 276.74±11.09b | 花香、果香、麝香、柠檬酸 Flowery, fruity,muscat,citric |
| 二氢芳樟醇 1,5,7-Octatrien-3-ol, 3,7- dimethyl- | 29957-43-5 | 1107 | 41.35±3.2c | 79.31±2.51a | 58.4±1.45b | —— |
| 化合物 Compound | CAS 编号 | 保留指数 RI | CK | DI1 | DI2 | 感官描述 Odor description |
| α-萜品醇.alpha.-Terpineol | 7785-53-7 | 1143 | 121.16±2.36b | 212.95±11.06a | 110.47±4.42b | 绿色、花香、油性 Green, floral, oily |
| (E)-吡喃氧化芳樟醇 (3R,6S)-2,2,6-Trimethyl-6- vinyltetrahydro-2H-pyran-3-ol | 39028-58-5 | 1173 | 26.04±1.91a | 16.42±2.13b | 26.43±5.1a | 木香、花香、凉香、萜香、青香 Woody, floral, cool, terpene, green |
| 香茅醇 Citronellol | 106-22-9 | 750 | 10.32±0.56b | 16.01±0.71a | 11.13±1.75b | 玫瑰色果香、绿色柠檬 Fruity rosy, green lemon |
| 橙花醇 2,6-Octadien-1-ol, 3,7- dimethyl-, (Z)- | 106-25-2 | 1228 | 12.95±1.49b | 21.61±1.75a | 13.14±2.14b | 甜美的果香、花香;柑橘 Sweet fruity, floral, citrus |
| 香叶醇 Geraniol | 106-24-1 | 1255 | 34.65±2.34c | 61.18±2.65a | 41.8±3.13b | 柠檬酸 citric |
| 氧化玫瑰 (2S,4R)-4-Methyl-2-(2-methylprop-1-en-1-yl) tetrahydro- 2H-pyran | 876-18-6 | 1121 | 2.51±0.33 | 2.14±0.22 | 2.39±0.48 | 花香、青香、香叶、药草、樟脑、辛香香气,青香、蔬菜、柑橘、玫瑰味道 Floral, green, bay leaf, herb, camphor, spice, green, vegetable, citrus, rose |
| 橙花醚 2H-Pyran, 3,6-dihydro-4-methyl- 2-(2-methyl-1-propenyl)- | 1786-08-9 | 1153 | 115.21±4.56b | 114.17±7.63b | 132.13±3.72a | 强烈的花香香气,橙花油似的香韵,以及新鲜的青香气息 Intense floral aroma, neroli-like aroma, and fresh green notes |
| p-伞花烃 p-Cymene | 527-84-4 | 975 | 7.80±0.19c | 10.40±1.62a | 9.26±0.3b | 胡萝卜、柑橘味道 Carrot, citrus |
| 合计 Total | 1010.85±47.89c | 1408.22±62.18a | 1156.15±56.30b | |||
| 高级醇类 Higher alcohols | ||||||
| 正己醇 1-Hexanol | 111-27-3 | 868 | 21.03±1.46b | 32.32±2.42a | 17.57±0.6c | 绿色、草本、油性、花香、草本、木质 Green, grass,oily, floral, herbaceous, woody |
| (Z)-3-己烯-1-醇 3-Hexen-1-ol, (Z)- | 544-12-7 | 856 | 25.48±4.08c | 71.45±2.32a | 33.92±1.97b | 绿色、苦、脂肪、草 Green, bitter, fatty, grass |
| (Z)-2-已烯-1-醇 2-Hexen-1-ol, (Z)- | 928-94-9 | 868 | 7.13±0.22b | 14.3±0.57a | 5.37±0.67c | 绿草、草本 Green grass, herb |
| 辛醇 1-Octanol | 111-87-5 | 1071 | 0.20±0.032 | 0.19±0.025 | 0.17±0.021 | 浓郁的柑橘、玫瑰 Intense citrus, roses |
| 1-己烯-3-醇1-Hexen-3-ol | 4798-44-1 | 769 | 30.20±0.3b | 19.15±0.24c | 52.6±3.47a | —— |
| 苯甲醇Benzyl alcohol | 100-51-6 | 1036 | 11.76±0.88c | 40.18±1.38a | 19.52±0.97b | 柑橘味、甜味、花香 Citrusy, sweet, floral |
| 合计 Total | 95.8±4.99c | 177.57±5.82a | 129.15±5.07b | |||
| 酮类 Ketones | ||||||
| 1-辛烯-3-酮1-Octen-3-one | 4312-99-6 | 979 | 0.55±0.045 | 0.44±0.09 | 0.66±0.085 | 蘑菇香 Mushroom |
| 6-甲基-5-庚烯-2-酮 5-Hepten-2-one, 6-methyl- | 110-93-0 | 986 | 1.79±0.17a | 1.35±0.085b | 1.81±0.047a | 果香、霉香、酮香,并有苹果、香蕉、奶油的味道Fruity, musty, keto, with notes of apple, banana, cream |
| 大马士酮 2-Buten-1-one, 1-(2,6,6-trimethyl- 1,3-cyclohexadien-1-yl)-, (E)- | 23726-93-4 | 1386 | 5.12±0.18b | 6.88±0.37a | 3.41±0.4c | 蜂蜜, 甜, 花香, 苹果 Honey, sweet, floral, apple |
| 香叶基丙酮 5,9-Undecadien-2-one, 6,10-dimethyl-, (E)- | 3796-70-1 | 1453 | 0.13±0.015b | 0.23±0.04a | 0.11±0.024b | 青香、果香、蜡香、木香,并有生梨、番石榴、苹果、香蕉、热带水果的香韵 Green, fruity, waxy, woody, with notes of raw pear, guava, apple, banana, tropical fruit |
| 合计 Total | 7.59±0.29b | 8.90±0.37a | 5.99±0.53c | |||
| 其他组分 Other compounds | ||||||
| 乙酸 Acetic acid | 64-19-7 | 610 | 62.46±4.65c | 208.03±2.61a | 99.11±4.29b | 酸、脂肪、酸、醋、辣 Acid, fatty,sour, vinegar,spicy |
| 2,4-二叔丁基苯酚 2,4-Di-tert-butylphenol | 96-76-4 | 1519 | 13.55±2.11c | 17.56±3.09b | 23.12±2.66a | —— |
| 苯乙烯 Styrene | 100-42-5 | 1741 | 1.46±0.089 | 1.36±0.09 | 1.31±0.22 | 树脂、花香香气 Resin, floral |
| 合计 Total | 77.48±6.38c | 226.94±4.41a | 123.54±4.97b |
| [1] | 张明霞, 吴玉文, 段长青. 葡萄与葡萄酒香气物质研究进展. 中国农业科学, 2008, 41(7): 2098-2104. |
| ZHANG M X, WU Y W, DUAN C Q. Progress in study of aromatic compounds in grape and wine. Scientia Agricultura Sinica, 2008, 41(7): 2098-2104. (in Chinese) | |
| [2] |
ROBINSON A L, BOSS P K, SOLOMON P S, TRENGOVE R D, HEYMANN H, EBELER S E. Origins of grape and wine aroma. Part 1. Chemical components and viticultural impacts. American Journal of Enology and Viticulture, 2014, 65(1): 1-24.
doi: 10.5344/ajev.2013.12070 |
| [3] | 张克坤, 王海波, 王孝娣, 史祥宾, 王宝亮, 郑晓翠, 刘凤之. ‘瑞都香玉’ 葡萄果实挥发性成分在果实发育过程中的变化. 中国农业科学, 2015, 48(19): 3965-3978. |
| ZHANG K K, WANG H B, WANG X D, SHI X B, WANG B L, ZHENG X C, LIU F Z. Evolution of volatile compounds during the berry development of ‘Ruidu Xiangyu’ grape. Scientia Agricultura Sinica, 2015, 48(19): 3965-3978. (in Chinese) | |
| [4] |
LUND S T, BOHLMANN J. The molecular basis for wine grape quality: A volatile subject. Science, 2006, 311(5762): 804-805. doi: 10.1126/science.1118962.
doi: 10.1126/science.1118962 |
| [5] | 王晓玥, 张国军, 孙磊, 赵印, 闫爱玲, 王慧玲, 任建成, 徐海英. 2种架式对3个鲜食葡萄品种栽培性状及果实品质的影响. 中国农业科学, 2019, 52(7): 1150-1163. |
| WANG X Y, ZHANG G J, SUN L, ZHAO Y, YAN A L, WANG H L, REN J C, XU H Y. Effects of two trellis systems on viticultural characteristics and fruit quality of three table grape cultivars. Scientia Agricultura Sinica, 2019, 52(7): 1150-1163. (in Chinese) | |
| [6] | 孙磊, 王晓玥, 王慧玲, 闫爱玲, 张国军, 任建成, 徐海英. 不同砧木对鲜食葡萄生长和香气品质的影响. 中国农业科学, 2021, 54(20): 4405-4420. |
| SUN L, WANG X Y, WANG H L, YAN A L, ZHANG G J, REN J C, XU H Y. The influence of rootstocks on the growth and aromatic quality of two table grape varieties. Scientia Agricultura Sinica, 2021, 54(20): 4405-4420. (in Chinese) | |
| [7] |
HE L, XU X Q, WANG Y, VANDERWEIDE J, SUN R Z, CHENG G, CHEN W, LI S D, LI S P, DUAN C Q, WANG J, PAN Q H. Differential influence of timing and duration of bunch bagging on volatile organic compounds in Cabernet Sauvignon berries (Vitis vinifera L.). Australian Journal of Grape and Wine Research, 2022, 28: 75-85.
doi: 10.1111/ajgw.12518 |
| [8] |
YUE X F, SHI P B, TANG Y L, ZHANG H X, MA X, JU Y L, ZHANG Z W. Effects of methyl jasmonate on the monoterpenes of Muscat Hamburg grapes and wine. Journal of the Science of Food and Agriculture, 2021, 101(9): 3665-3675.
doi: 10.1002/jsfa.10996 pmid: 33280112 |
| [9] |
KOUNDOURAS S, HATZIDIMITRIOU E, KARAMOLEGKOU M, DIMOPOULOU E, KALLITHRAKA S, TSIALTAS J T, KOTSERIDIS Y. Irrigation and rootstock effects on the phenolic concentration and aroma potential of Vitis vinifera L. cv. Cabernet Sauvignon grapes. Journal of Agricultural and Food Chemistry, 2009, 57(17): 7805-7813.
doi: 10.1021/jf901063a |
| [10] |
SONG J, SHELLIE K C, WANG H, QIAN M C. Influence of deficit irrigation and Kaolin particle film on grape composition and volatile compounds in Merlot grape (Vitis vinifera L.). Food Chemistry, 2012, 134(2): 841-850.
doi: 10.1016/j.foodchem.2012.02.193 |
| [11] |
SAVOI S, WONG D C, ARAPITSAS P, MICULAN M, BUCCHETTI B, PETERLUNGER E, FAIT A, MATTIVI F, CASTELLARIN S D. Transcriptome and metabolite profiling reveals that prolonged drought modulates the phenylpropanoid and terpenoid pathway in white grapes (Vitis vinifera L.). BMC Plant Biology, 2016, 16(1): 67.
doi: 10.1186/s12870-016-0760-1 |
| [12] |
MIRÁS-AVALOS J M, BOUZAS-CID Y, TRIGO-CÓRDOBA E, ORRIOLS I, FALQUÉ E. Effects of two different irrigation systems on the amino acid concentrations, volatile composition and sensory profiles of godello musts and wines. Foods, 2019, 8(4): E135. doi:10.3390/foods8040135.
doi: 10.3390/foods8040135 |
| [13] |
WANG J, ABBEY T, KOZAK B, MADILAO L L, TINDJAU R, DEL NIN J, CASTELLARIN S D. Evolution over the growing season of volatile organic compounds in Viognier (Vitis vinifera L.) grapes under three irrigation regimes. Food Research International, 2019, 125: 108512. doi: 10.1016/j.foodres.2019.108512.
doi: 10.1016/j.foodres.2019.108512 |
| [14] | 房玉林, 孙伟, 万力, 惠竹梅, 刘旭, 张振文. 调亏灌溉对酿酒葡萄生长及果实品质的影响. 中国农业科学, 2013, 46(13): 2730-2738. |
| FANG Y L, SUN W, WAN L, XI Z M, LIU X, ZHANG Z W. Effects of regulated deficit irrigation (RDI) on wine grape growth and fruit quality. Acta Horticulturae Sinica, 2013, 46(13): 2730-2738. (in Chinese) | |
| [15] | 庞国成, 刘凤之, 王海波, 史祥宾, 王宝亮. 不同灌水条件对设施葡萄果实品质的影响. 中国果树, 2019(3): 57-61. |
| PANG G C, LIU F Z, WANG H B, SHI X B, WANG B L. Effects of different irrigation conditions on fruit quality of cultivated grapes. China Fruits, 2019(3): 57-61. (in Chinese) | |
| [16] |
CHEN K Q, SUN J H, LI Z H, ZHANG J X, LI Z Y, CHEN L, LI W P, FANG Y L, ZHANG K K. Postharvest dehydration temperature modulates the transcriptomic programme and flavonoid profile of grape berries. Foods, 2021, 10(3): 687. doi: 10.3390/foods10030687.
doi: 10.3390/foods10030687 |
| [17] | LI W P, YAO H, CHEN K Q, JU Y L, MIN Z, SUN X Y, CHENG Z L, LIAO Z S, ZHANG K K, FANG Y L. Effect of foliar application of fulvic acid antitranspirant on sugar accumulation, phenolic profiles and aroma qualities of Cabernet Sauvignon and Riesling grapes and wines. Food Chemistry, 2021, 351: 129308. |
| [18] |
ZHANG E P, CHAI F M, ZHANG H H, LI S H, LIANG Z C, FAN P G. Effects of sunlight exclusion on the profiles of monoterpene biosynthesis and accumulation in grape exocarp and mesocarp. Food Chemistry, 2017, 237: 379-389.
doi: S0308-8146(17)30941-X pmid: 28764010 |
| [19] | 陈祖民, 校诺娅, 张艳霞, 史晓敏, 郭帅奇, 高虎, 王振平. 水分胁迫对'玫瑰香'葡萄果实挥发性化合物及相关基因表达的影响. 园艺学报, 2021, 48(5): 883-896. |
| CHEN Z M, XIAO N Y, ZHANG Y X, SHI X M, GUO Q S, GAO H, WANG Z P. Effects of water stress on the volatile compounds and related biosynthetic genes expression in‘Muscat Hamburg’ grape berries. Acta Horticulturae Sinica, 2021, 48(5): 883-896. (in Chinese) | |
| [20] | 赵阳, 刘怀锋, 牛媛, 马富裕. 设施条件下灌水方案对弗雷无核葡萄产量及品质的影响. 江苏农业科学, 2019, 47(13): 167-170. |
| ZHAO Y, LIU H F, NIU Y, MA F Y. Effects of irrigation scheme on the yield and quality of Frey seedless grapes under facility conditions. Jiangsu Agricultural Sciences, 2019, 47(13): 167-170. (in Chinese) | |
| [21] |
CÁCERES-MELLA A, TALAVERANO M I, VILLALOBOS- GONZÁLEZ L, RIBALTA-PIZARRO C, PASTENES C. Controlled water deficit during ripening affects proanthocyanidin synthesis, concentration and composition in Cabernet Sauvignon grape skins. Plant Physiology and Biochemistry, 2017, 117: 34-41. doi: 10.1016/j.plaphy.2017.05.015.
doi: 10.1016/j.plaphy.2017.05.015 |
| [22] |
WANG W, FENG J, WEI L L, KHALIL-UR-REHMAN M, NIEUWENHUIZEN N J, YANG L N, ZHENG H, TAO J M. Transcriptomics integrated with free and bound terpenoid aroma profiling during “Shine Muscat” (Vitis labrusca × V. vinifera) grape berry development reveals coordinate regulation of MEP pathway and terpene synthase gene expression. Journal of Agricultural and Food Chemistry, 2021, 69: 1413-1429.
doi: 10.1021/acs.jafc.0c06591 |
| [23] |
MARTIN D M, CHIANG A, LUND S T, BOHLMANN J. Biosynthesis of wine aroma: transcript profiles of hydroxymethylbutenyl diphosphate reductase, geranyl diphosphate synthase, and linalool/ nerolidol synthase parallel monoterpenol glycoside accumulation in Gewürztraminer grapes. Planta, 2012, 236(3): 919-929.
doi: 10.1007/s00425-012-1704-0 |
| [24] |
BATTILANA J, COSTANTINI L, EMANUELLI F, SEVINI F, SEGALA C, MOSER S, VELASCO R, VERSINI G, GRANDO M S. The 1-deoxy-d-xylulose 5-phosphate synthase gene co-localizes with a major QTL affecting monoterpene content in grapevine. Theoretical and Applied Genetics, 2009, 118(4): 653-669. doi: 10.1007/s00122-008-0927-8.
doi: 10.1007/s00122-008-0927-8 |
| [25] |
BATTILANA J, EMANUELLI F, GAMBINO G, GRIBAUDO I, GASPERI F, BOSS P K, GRANDO M S. Functional effect of grapevine 1-deoxy-D-xylulose 5-phosphate synthase substitution K284N on Muscat flavour formation. Journal of Experimental Botany, 2011, 62(15): 5497-5508.
doi: 10.1093/jxb/err231 pmid: 21868399 |
| [26] | 王慧玲, 闫爱玲, 孙磊, 张国军, 王晓玥, 任建成, 徐海英. 鲜食葡萄果实单萜合成关键基因的eQTL分析. 中国农业科学, 2022, 55(5): 977-990. |
| WANG H L, YAN A L, SUN L, ZHANG G J, WANG X Y, REN J C, XU H Y. eQTL analysis of key monoterpene biosynthesis genes in table grape. Scientia Agricultura Sinica, 2022, 55(5): 977-990. (in Chinese) | |
| [27] |
WEN Y Q, ZHONG G Y, GAO Y, LAN Y B, DUAN C Q, PAN Q H. Using the combined analysis of transcripts and metabolites to propose key genes for differential terpene accumulation across two regions. BMC Plant Biology, 2015, 15: 240. doi: 10.1186/s12870-015-0631-1.
doi: 10.1186/s12870-015-0631-1 |
| [28] |
MARTIN D M, AUBOURG S, SCHOUWEY M B, DAVIET L, SCHALK M, TOUB O, LUND S T, BOHLMANN J. Functional annotation, genome organization and phylogeny of the grapevine (Vitis vinifera) terpene synthase gene family based on genome assembly, FLcDNA cloning, and enzyme assays. BMC Plant Biology, 2010, 10(1): 226.
doi: 10.1186/1471-2229-10-226 |
| [29] |
SMIT S J, VIVIER M A, YOUNG P R. Linking terpene synthases to sesquiterpene metabolism in grapevine flowers. Frontiers in Plant Science, 2019, 10: 177.
doi: 10.3389/fpls.2019.00177 pmid: 30846994 |
| [30] |
TORRES N, YU R, MARTINEZ-LUSCHER J, GIRARDELLO R C, KOSTAKI E, OBERHOLSTER A, KAAN KURTURAL S. Shifts in the phenolic composition and aromatic profiles of Cabernet Sauvignon (Vitis vinifera L.) wines are driven by different irrigation amounts in a hot climate. Food Chemistry, 2022, 371: 131163. doi: 10.1016/j.foodchem.2021.131163.
doi: 10.1016/j.foodchem.2021.131163 |
| [1] | 李元晶, 袁瑞祥, 李永泰, 孙天歌, 刘峰, 李艳军, 张新宇. 棉花黄萎病菌β-葡萄糖苷酶基因的鉴定及其在致病中的功能[J]. 中国农业科学, 2026, 59(7): 1380-1399. |
| [2] | 张东梅, 周鑫鑫, 肖桂林, 曾祥国, 王春燕, 王泽先, 韩永超. 草莓花器应答灰霉病菌侵染的表现特征及抗病性评价方法[J]. 中国农业科学, 2026, 59(7): 1456-1466. |
| [3] | 钟荣阳, 魏守辉, 王晓珊, 史对宏, 闵磊国, 王文华, 王江波, 肖雪梅. GC-MS和E-Nose联合解析芫荽不同生长阶段芳香物质变化规律[J]. 中国农业科学, 2026, 59(7): 1552-1563. |
| [4] | 朱嘉伟, 关璇, 饶博涵, 刘秀海, 范国元, 武运, 陶永胜. 短乳杆菌LB-21介导的酒精-苹乳三菌共发酵对干红葡萄酒色泽的影响[J]. 中国农业科学, 2026, 59(5): 1101-1110. |
| [5] | 马桂兰, 张旭阳, 李武. 鸟苷酸结合蛋白2在金黄色葡萄球菌诱导巨噬细胞凋亡中的调控作用[J]. 中国农业科学, 2026, 59(4): 912-926. |
| [6] | 崔士友, 陈澎军, 缪源卿, 韩继军, 沈俊明. EMS诱变抗草甘膦小麦新种质的创制与大田评价[J]. 中国农业科学, 2026, 59(4): 723-733. |
| [7] | 廖婷璐, 石亚飞, 肖东浩, 舍杨梦斐, 郭富城, 杨九菊, 唐海江, 罗成科. 外源硝普钠对碱胁迫下水稻幼苗糖代谢的影响[J]. 中国农业科学, 2026, 59(2): 265-277. |
| [8] | 张梦博, 谭鸿冰, 沈甜, 徐美隆, 周新明, 房玉林, 鞠延仑. 不同灌溉量与抗蒸腾剂处理对葡萄酒品质的影响[J]. 中国农业科学, 2026, 59(2): 413-426. |
| [9] | 冯伟晴, 倪媛蒨, 费腾, 李有梅, 谢兆森. 不同果形葡萄果实维管束形态结构、分布特征及其水分运输功能差异[J]. 中国农业科学, 2026, 59(1): 161-178. |
| [10] | 王思琪, 邹利人, 白瑞雯, 闫可, 王思洋, 齐晓光, 申海林, 温景辉. 赤霉素调控‘蜜汁’葡萄穗轴硬化关键基因的挖掘[J]. 中国农业科学, 2026, 59(1): 179-189. |
| [11] | 谭西北, 兰徐颖, 刘崇怀, 樊秀彩, 姜建福, 孙磊, 李鹏, 余书鑫, 张颖. 不同抗性葡萄响应白腐病侵染的次生代谢物变化[J]. 中国农业科学, 2025, 58(9): 1767-1778. |
| [12] | 陈龙云, 胡俊强, 何灿, 史建荣, 徐剑宏, 王刚. 利用大孔吸附树脂与高速逆流色谱纯化脱氧雪腐镰刀菌烯醇-3-葡萄糖苷[J]. 中国农业科学, 2025, 58(8): 1627-1637. |
| [13] | 汤学燊, 党仕卓, 周娟, 李佳豪, 李梅花, 胡豪, 张亚红. 基于红蓝光调控分析VvBES1-1参与‘红地球’葡萄花芽的分化[J]. 中国农业科学, 2025, 58(8): 1650-1662. |
| [14] | 杨彩丽, 李永洲, 贺亮亮, 宋银花, 章鹏, 刘肇先, 李鹏慧, 刘三军. 葡萄TPS基因家族全基因组鉴定及VvTPS4在单萜形成中的功能验证[J]. 中国农业科学, 2025, 58(7): 1397-1417. |
| [15] | 张天雨, 李白, 藏金萍, 曹宏哲, 董金皋, 邢继红, 张康. 灰葡萄孢HMG家族基因的全基因组鉴定与表达规律分析[J]. 中国农业科学, 2025, 58(4): 704-718. |
|
||