Scientia Agricultura Sinica ›› 2014, Vol. 47 ›› Issue (3): 605-612.doi: 10.3864/j.issn.0578-1752.2014.03.020

• RESEARCH NOTES • Previous Articles    

Comprehensive Evaluation of Relationship Between Rootstocks and Yield and Quality in Grafting Tomato

 GAO  Fang-Sheng-1, 2 , WANG  Lei-2, 3 , XU  Kun-2   

  1. 1、College of Ecology and Garden Architecture, Dezhou University, Dezhou 253023, Shandong;
    2、College of Horticulture Science and Engineering, Shandong Agricultural University, Tai’an 271018, Shandong;
    3、Academy of Agriculture Science of Dezhou City,  Dezhou 253015, Shandong
  • Received:2013-07-10 Online:2014-02-01 Published:2013-11-18

Abstract: 【Objective】Grafting has been used in protected tomato to limit successive obstacle, a lot of studies have been done on resistance against environmental stress, disease and yield increase by grafting, however, the effects of grafting on vegetable quality were yet not systematical and far from being completed. Therefore, in order to further make clear biological effect of tomato grafting, comprehensive evaluation of the effects of grafting on yield and quality in greenhouse tomato was studied to provide a theoretical basis for application of grafting.【Method】The change characteristics of the seedling quality, plant growth vigor, yield and fruit quality were measured by the same scion grafted on ten different rootstocks and the self-root grafting scion ‘Jinpeng No.1’ as control, and effects of grafting on seedling quality and fruit quality were evaluated on the basis of membership values of seedling quality and fruit quality calculated by the method of membership function.【Result】There was a significant difference in seedling growth of grafting plants among different rootstocks, whose coefficient of variation of leaf area and dry matter of root were 18.24% and 15.21% respectively. These grafting seedlings with rootstock of ‘MIKADO’ and ‘Kagemusha’ had higher seedlings quality with method of membership function, but the grafting survival rates on all rootstocks were higher than 90%. Plant growth vigor and yield of grafting tomato were significantly different among different rootstocks. Although the average rate of increasing yield was 34.87%, the coefficient of variation of yield was 17.16%. Except for yield on ‘Vespa’, other grafted plant yields were significantly higher than that of CK, which the increasing yield rate of grafting on ‘MIKADO’ and ‘Magnet’ were 66.82% and 57.56%, respectively. Fruit rigidity was significantly improved and fruit index was changed with grafting, and fresh mass of single fruit of grafting tomatoes were higher than that of CK except for those on ‘Vespa’, ‘Anka-T’ and ‘Support’. Grafting has a significant effect on fruit nutrient quality of tomato, higher effect on Vitamine C, lower effect on soluble solid, whose coefficients of variation were 69.16% and 8.87%, respectively. Fruit dry matter and the contents of soluble solid, soluble protein and titratable acid in all grafting treatments were improved, whereas the change value and direction of other indexes, such as fruit index, Vc, lycopene, soluble sugar and ratio of sugar to acid were dissimilar. The fruit quality was evaluated synthetically by calculating membership values of fruit nutrient quality indexes with membership function, which showed that the membership values of all grafting fruits were higher than the values of CK, and thus confirmed that fruit quality was improved by grafting.【Conclusion】The grafting seedling quality, plant growth vigor, fruit characteristics, yield and quality were significantly different with different rootstocks. Among the ten rootstocks determined, grafted plant yields were significantly higher than that of CK except for that of ‘Vespa’, higher increasing yield rate of ‘MIKADO’ and ‘Magnet’ rootstocks. Although the effects of grafting on fruit quality indexes showed differences in connect with different rootstocks, fruit quality of all grafting unions was improved synthetically, especially higher fruit quality was observed on rootstocks of ‘Anka-T’, ‘Vespa’ and ‘Rootstock 001’.

Key words: tomato , rootstocks , grafting , yield , quality

[1]Martínez-Ballesta M C, Alcaraz-López C, Muries B, Mota-Cadenas C, Carvajal M. Physiological aspects of rootstock-scion interactions. Scientia Horticulturae, 2010, 127(2): 112-118.

[2]Rouphael Y, Schwarz D, Krumbein A, Colla G. Impact of grafting on product quality of fruit vegetables. Scientia Horticulturae, 2010, 127(2): 172-179.

[3]Estan M T, Martinez M M, Francisco P A, Flowers T J, Bolarin M C. Grafting raises the salt tolerance of tomato through limiting the transport of sodium and chloride to the shoot. Journal of Experimental Botany, 2005, 56(412): 703-712.

[4]Garibaldi A, Baudino M, Minuto A, Gullino M. Effectiveness of fumigants and grafting against tomato brown root rot caused by Colletotrichum coccodes. Phytoparasitica, 2008, 36(5): 483-488.

[5]徐小军, 别之龙, 孙德玺, 邓云, 李卫华, 安国林, 刘君璞. 不同嫁接组合对西瓜植株生长及果实品质的影响. 中国瓜菜, 2011, 24(4): 10-14.

Xu X J, Bie Z L, Sun D X, Deng Y, Li W H, An G L, Liu J P. Effects of grafting combinations on the plant growth and fruit quality in watermelon. China Cucurbits and Vegetables, 2011, 24(4): 10-14. (in Chinese)

[6]朱进, 别之龙, 徐容, 汤谧, 裴芸. 不同砧木嫁接对黄瓜生长、产量和品质的影响. 华中农业大学学报, 2006, 25(6): 668-671.

Zhu J, Bie Z L, Xu R, Tang M, Pei Y. Effects of different rootstocks on the growth, yield and quality of cucumber fruits. Journal of Huazhong Agricultural University, 2006, 25(6): 668-671. (in Chinese)

[7]李红丽, 于贤昌, 王华森, 于超, 李静援. 嫁接和嫁接砧木对黄瓜果实品质的影响. 西北农业学报, 2005, 14(1): 129-132.

Li H L, Yu X C, Wang H S, Yu C, Li J Y. Study on quality of grafted cucumber fruit with different rootstock. Acta Agriculturae Boreali-occidentalis Sinica, 2005, 14(1): 129-132. (in Chinese)

[8]李静, 别之龙, 曾维寅, 蔡炎. 不同砧木嫁接对西瓜植株生长和果实品质的影响初报. 长江蔬菜, 2009(2b): 32-34.

Li J, Bie Z L, Zeng W Y, Cai Y. Effects of differents rootstocks on plant growth and fruit quality of watermelon. Journal of Changjiang Vegetables, 2009(2b): 32-34. (in Chinese)

[9]韩志平, 郭世荣, 朱国荣, 欧阳以勇. 砧木对嫁接西瓜生长发育、产量和品质的影响. 中国蔬菜, 2006(2): 22-23.

Han Z P, Guo S R, Zhu G R, Ouyang Y Y. Effect of rootstocks on growth, yield and quality in grafting watermelon. China Vegetables, 2006(2): 22-23. (in Chinese)

[10]董道峰, 曹志平, 王秀徽, 胡菊. 抗根结线虫砧木对番茄生长及产量的影响. 园艺学报, 2007, 34(5): 1305-1308.

Dong D F, Cao Z P, Wang X H, Hu J. Effect of nematode resistant rootstocks on growth characteristics and yield of tomato. Acta Horticulturae Sinica, 2007, 34(5): 1305-1308. (in Chinese)

[11]Chung H D, Youn S J, Choi Y J. Effect of rootstocks on yield, quality and components of tomato fruits. RDA Journal of Horticulture Science, 1997, 39(2): 15-20.

[12]寿伟林, 董文其, 陈杰, 徐志豪, 周胜军, 戴丹丽, 雷娟利. 砧木品种和嫁接方法对番茄生长发育及光合特性的影响. 浙江农业学报, 2004, 16(3): 136-138.

Shou W L, Dong W Q, Chen J, Xu Z H, Zhou S J, Dai D L, Lei J L. Effects of rootstock varieties and grafting methods on growth and photosynthesis of tomato. Acta Agriculturae Zhejiangensis, 2004, 16(3): 136-138. (in Chinese)

[13]Turhan A, Ozmen N, Serbeci M S. Effects of grafting on different rootstocks on tomato fruit yield and quality. HortScience, 2011, 38(4): 142-149.

[14]马庆华, 李永红, 梁丽松, 李琴, 王海, 许元峰, 孙玉波, 王贵禧. 冬枣优良单株果实品质的因子分析与综合评价. 中国农业科学, 2010, 43(12): 2491-2499.

Ma Q H, Li Y H, Liang L S, Li Q, Wang H, Xu Y F, Sun Y B, Wang G X. Factor analysis and synthetical evaluation of the fruit quality of Dongzao (Ziziphus jujuba Mill. 'Dongzao') advanced selections. Scientia Agricultura Sinica, 2010, 43(12): 2491-2499. (in Chinese)

[15]宋洪元, 雷建军, 李成琼. 植物热胁迫反应及抗热性鉴定与评价. 中国蔬菜, 1998(1): 48-50.

Song H Y, Lei J J, Li C Q. Plant response on heat stress and identification and evaluation of heat resistance. China Vegetables, 1998(1): 48-50. (in Chinese)

[16]王贵元, 夏仁学. 红肉脐橙果肉中番茄红素和β-胡萝卜素含量的变化及外源ABA和GA3对其的影响. 园艺学报, 2005, 32(2): 207-211.

Wang G Y, Xia R X. Lycopene and beta-carotene content in flesh of Cara Cara organge and effects of exogenous ABA and GA3 on their content changes. Acta Horticulturae Sinica, 2005, 32(2): 207-211. (in Chinese)

[17]李合生. 植物生理生化实验原理和技术. 北京: 高等教育出版社, 2003.

Li H S. Experiment Theory and Technology of Plant Physiology and Biology Chemistry. Beijing: Higher Education Press, 2003. (in Chinese)

[18]韩雅珊. 食品化学试验指导. 北京: 中国农业大学出版社, 1996.

Han Y S. Experiment Guide of Food Chemistry. Beijing: China Agricultural University Press, 1996. (in Chinese)

[19]赵卫星, 徐小利, 常高正, 李晓慧, 杨帆, 梁慎. 嫁接对西瓜生长及抗逆性影响的研究进展. 江西农业学报, 2011, 23(5): 63-65.

Zhao W X, Xu X L, Chang G Z, Li X H, Yang F, Liang S. Research advance in effect of grafting on growth and stress resistance of watermelon. Acta Agriculturae Jiangxi, 2011, 23(5): 63-65. (in Chinese)

[20]孙艳, 黄炜, 田霄鸿, 吴瑛, 丁勤, 周存田. 黄瓜嫁接苗生长状况、光合特性及养分吸收特性的研究. 植物营养与肥料学报, 2002, 8(2): 181-185.

Sun Y, Huang W, Tian X H, Wu Y, Ding Q, Zhou C T. Study on growth situation, photosynthetic characteristics and nutrient absorption characteristics of grafted cucumber seedlings. Plant Nutrition and Fertilizer Science, 2002, 8(2): 181-185. (in Chinese)

[21]李欣, 申书兴, 高彦魁, 陈学平, 李晓峰. 不同基因型砧木嫁接黄瓜结瓜盛期光合特性的比较. 植物遗传资源学报, 2007, 8(2): 200-204.

Li X, Shen S X, Gao Y K, Chen X P, Li X F. Photosynthetic characteristics in fruiting period of grafted cucumber on different genotype stocks. Journal of Plant Genetic Resources, 2007, 8(2): 200-204. (in Chinese)

[22]张衍鹏, 于贤昌, 张振贤, 赵雪丽, 李衍素. 日光温室嫁接黄瓜的光合特性和保护酶活性. 园艺学报, 2004, 31(1): 94-96

Zhang Y P, Yu X C, Zhang Z X, Zhao X L, Li Y S. Studies on the photosynthetic characteristic and protective enzyme of grafted cucumber leaves in solar greenhouse. Acta Horticulturae Sinica, 2004, 31(1): 94-96. (in Chinese)

[23]乜兰春, 陈贵林. 西瓜嫁接苗生长动态及生理特性研究. 西北农业学报, 2000, 9(1): 100-103.

Nie L C, Chen G L. Study on growth trends and physiological characteristics of grafted watermelon seedlings. Acta Agriculturae Boreali-occidentalis Sinica, 2000, 9(1): 100-103. (in Chinese)

[24]Ruiz J M, Belakbir A, Lpez C I, Romero L. Leaf-macronutrient content and yield in grafted melon plants: A model to evaluate the influence of rootstock genotype. Scientia Horticulturae, 1997, 71(3): 227-234.

[25]袁亭亭, 宋小艺, 王忠宾, 杨建平, 徐坤. 嫁接与施肥对番茄产量及氮、磷、钾吸收利用效率的影响. 植物营养与肥料学报, 2011, 17(1): 131-136.

Yuan T T, Song X Y, Wang Z B, Yang J P, Xu K. Effect of grafting cultivation and fertilization on the yield, NPK uptake and utilization of tomatoes. Plant Nutrition and Fertilizer Science, 2011, 17(1): 131-136. (in Chinese)

[26]齐红岩, 李天来, 刘轶飞, 李丹. 嫁接对薄皮甜瓜光合特性、产量与含糖量的影响. 沈阳农业大学学报, 2006, 37(2): 155-158.

Qi H Y, Li T L, Liu Y F, Li D. Effects of grafting on photosynthesis characteristics, yield and sugar content in melon. Journal of Shenyang Agricultural University, 2006, 37(2): 155-158. (in Chinese)

[27]Moore R. A Model for graft compatibility-incompatibility in higher plants. American Journal of Botany, 1984, 71(5): 752-758.

[28]Masayuki O, Masaya M Y, Genjiro M. Water transfer at graft union of tomato plants grafted onto Solanum rootstocks. Journal of the Japanese Society for Horticultural Science, 2005, 74(6): 458-463.

[29]Francisco F B. and Paloma S B. The effectiveness of grafting to improve tomato fruit quality. Scientia Horticulturae, 2000, 125(3): 211-217.

[30]Pogonyi Á, Pék Z, Helyes L, Lugasi A. Effect of grafting on the tomato's yield, quality and main fruit components in spring forcing. Acta Alimentaria, 2005, 34(4): 453-462.

[31]Rouphael Y, Cardarelli M, Colla G, Rea E. Yield, mineral composition, water relations, and water use efficiency of grafted mini-watermelon plants under deficit irrigation. HortScience, 2008, 43(3): 730-736.

[32]Lopez-Galarza S, Bautista A S, Perez D M, Miguel A, Baixauli C, Pascual B, Maroto J V, Guardiola J L. Effect of grafting and cytokinin-induced fruit setting on colour and sugar-content traits in glasshouse-grown triploid watermelon. Journal of Horticultural Science & Biotechnology, 2004, 79(6): 971-976.

[33]魏敏, 齐红岩, 里程辉. 嫁接对薄皮甜瓜养分吸收和果实品质的影响. 沈阳农业大学学报, 2006, 37(3): 437-441.

Wei M, Qi H Y, Li C H. Effects of grafting on nutrient absorption and fruit quality of melon. Journal of Shenyang Agricultural University, 2006, 37(3): 437-441. (in Chinese)

[34]徐胜利, 陈青云, 李绍华, 张利莉, 高疆生, 王合理. 糖代谢相关酶和GA3、ABA在嫁接伽师瓜果实糖分积累中的作用. 果树学报, 2005, 22(5): 514-518.

Xu S L, Chen Q Y, Li S H, Zhang L L, Gao J S, Wang H L. Roles of sugar-metabolizing enzymes and GA3, ABA in sugars accumulation in grafted muskmelon fruit. Journal of Fruit Science, 2005, 22(5): 514-518. (in Chinese)
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