Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (24): 5130-5136.doi: 10.3864/j.issn.0578-1752.2011.24.020

• RESEARCH NOTES • Previous Articles    

Study on Cotton Resistance to Verticillium Wilt by Grafting

 WEN  Ting, LI  Peng-Bo, JIANG  Shu-Qin, PU  Jian-Feng, WANG  Yu-Mei, LIU  Wen-Xin, HUA  Jin-Ping   

  1. 1.中国农业大学农学与生物技术学院,北京100193
    2.山西省农业科学院棉花研究所,山西运城044000
    3.湖北省农业科学院经济作物研究所,武汉 430064
  • Received:2011-03-17 Online:2011-12-15 Published:2011-05-25

Abstract: 【Objective】The objective of this study is to investigate the influence of grafting on cotton resistance to Verticillium wilt and to clarify the resistance mechanism of cultivated cotton species, which should be benefit to further understand the disease resistant mechanism and to breed new cotton resistant varieties. 【Method】 Six cotton varieties with different resistances to Verticillium wilt were selected based on previous research. Each variety was self and mutual grafted, and the direct sowing cotton was used as control. The disease occurrence and severity of direct sowing cotton varieties, self-grafted cotton lines and mutual grafting cotton lines were identified and compared in field trials. 【Result】 The disease index and incidence of direct sowing cotton varieties and their self-grafted cotton lines were not significantly different. The average disease index of materials with resistant island cotton varieties as scions were significantly lower than that of materials with resistant upland cotton varieties as scions, however, the average disease index of materials with upland cotton resistant varieties as rootstocks were significantly lower than that of materials with island cotton resistant varieties as rootstocks. And the tendency of disease incidence was the same as disease index.【Conclusion】The grafting operation doesn’t make any significant influence on cotton resistance to Verticillium wilt. The resistance mechanism of the island cotton species is different to that of upland cotton species. The critical organism resistant to Verticillium wilt should be stem in the case of resistant island cotton varieties, but in the case of resistant upland cotton varieties the critical organism resistant to Verticillium wilt should be root.

Key words: cotton, Verticillium wilt, graft, resistance mechanism

[1]喻树迅, 范术丽. 我国棉花遗传育种进展与展望. 棉花学报, 2003, 15(2): 120-124.

Yu S X, Fan S L. The evolutions and prospect of cotton genetics and breeding in China. Acta Gossypii Sinica, 2003, 15(2): 120-124. (in Chinese)

[2]Cai Y, He X, Mo J, Sun Q, Yang J, Liu J. Molecular research and genetic engineering of resistance to Verticillium wilt in cotton: A review. African Journal of Biotechnology, 2009, 8(25): 7363-7372.

[3]Agrios G N. Plant Pathology, 5th eds. San Diego: Academic Press, 2004.

[4]Fradin E F, Thomma B P H J. Physiology and molecular aspects of Verticillium wilt diseases caused by V. dahliae and V. albo-atrum. Molecular Plant Pathology, 2006, 7(2): 71-86.

[5]Haffner E, Karlovsky P, Diederichsen E. Genetic and environmental control of the Verticillium syndrome in Arabidopsis thaliana. BMC Plant Biology, 2010, 10: 235.

[6]马  存. 棉花枯萎病和黄萎病的研究. 北京: 中国农业出版社, 2007.

Ma C. Research on Cotton Fusarium and Verticillium Wilt. Beijing: China Agriculture Press, 2007. (in Chinese)

[7]Bletsos F, Thanassoulopoulos C, Roupakias D. Effect of grafting on growth, yield, and Verticillium wilt of eggplant. HortScience, 2003, 38(2): 183-186.

[8]Paroussi G, Bletsos F, Bardas G A, Kouvelos J A, Klonari A. Control of Fusarium and Verticillium wilt of watermelon by grafting and its effect on fruit yield and quality. Acta Horticulturae, 2007, 729: 281-285.

[9]Ricárdez M, Rodríguez N, Diaz M, Camacho F. Influence of rootstock, cultivar and environment on tomato yield under greenhouse. Acta Horticulturae, 2008, 797: 443-448.

[10]Porras Soriano A, Soriano Martín M L, Porras Piedra A. Grafting olive cv. Cornicabra on rootstocks tolerant to Verticillium dahliae reduces their susceptibility. Crop Protection, 2003, 22(2): 369-374.

[11]Epstein L, Beede R, Kaur S, Ferguson L. Rootstock effects on pistachio trees grown in Verticillium dahliae-infested soil. Phytopathology, 2004, 94(4): 388-395.

[12]郝俊杰, 马奇祥, 刘焕民, 贾新合, 董中东, 刘书梅, 崔小伟, 张志新. 嫁接棉花对棉花黄萎病抗性、产量和纤维品质的影响. 中国农业科学, 2010, 43(19): 3974-3980.

Hao J J, Ma Q X, Liu H M, Jia X H, Dong Z D, Liu S M, Cui X W, Zhang Z X . Effects of grafting cotton on Verticillium wilt resistance, yield and fiber quality of cotton. Scientia Agricultura Sinica, 2010, 43(19): 3974-3980. (in Chinese)

[13]周瑞阳. 棉花嫁接防治土传病害的方法. 2009: CN101491192A.

Zhou R Y. Cotton grafting methods of control soil-borne diseases. 2009: CN101491192A. (in Chinese)

[14]黄双领, 于霁雯, 翟红红, 张小伟, 封新民, 李兴丽, 张红卫. 海陆棉花嫁接超高产研究简报. 中国棉花学会2010年年会论文汇编, 2010: 217.

Huang S L, Yu J W, Zhai H H, Zhang X W, Feng X M, Li X L, Zhang H W. High yield research report of grafting sea island cotton and upland cotton. China Cotton Association 2010 Annual Meeting Paper Series, 2010: 217. (in Chinese)

[15]郭长生. 棉花嫁接的优势及其嫁接关键技术. 现代农业科技, 2010(24): 101.

Guo C S. The advantage and the key technologies of grafting cotton. Modern Agricultural Sciences and Technology, 2010(24): 101. (in Chinese)

[16]李  博, 王春霞, 张志勇, 段留生, 李召虎, 田晓莉. 适用于低钾条件下棉花苗期根冠通讯研究的三种嫁接方法. 作物学报, 2009, 35(2): 363-369.

Li B, Wang C X, Zhang Z Y, Duan L S, Li Z H, Tian X L. Three types of grafting techniques available for research of root-shoot communication in cotton (Gossypium hirsutum) seedlings under low-potassium condition. Acta Agronomica Sinica, 2009, 35(2): 363-369. (in Chinese)

[17]简桂良, 卢美光, 齐放军. 我国转基因抗虫棉抗黄萎病育种新进 展. 中国植物保护学会2008年学术年会, 2008: 44.

Jian G L, Lu M G, Qi F J. The progress on Verticillium resistance breeding of insect-resistant transgenic cotton. China Society of Plant Protection 2008 Annual Conference, 2008: 44. (in Chinese)

[18]蒲剑锋. 棉花黄萎病抗性资源的遗传多样性及关联作图[D]. 北京: 中国农业大学, 2010.

Pu J F. Genetic diversity and association mapping analysis for Verticillium wilt resistance genes germ-plasm in cotton[D]. Beijing: China Agricultural University, 2010. (in Chinese)

[19]张  亮, 鹿秀云, 李社增, 李宝庆, 郭庆港, 马  平, 董金皋. 抗•感棉花品种体内棉花黄萎菌的动态分布研究. 安徽农业科学, 2010(17): 9054-9056.

Zhang L, Lu X Y, Li S Z, Li B Q, Guo Q G, Ma P, Dong J G. Study on dynamic distribution of Verticillium wilt in plants of resistant and susceptible cotton varieties by using DAS-ELISA technique. Journal of Anhui Agricultural Sciences, 2010(17): 9054-9056. (in Chinese)

[20]King S R, Davis A R, Liu W, Levi A. Grafting for disease resistance. HortScience, 2008, 43(6): 1673-1676.

[21]Gour H N, Dube H C. Effects of ouabain and phytotoxic metabolites from Verticillium dahliae on the cell membranes of cotton plants. Physiological Plant Pathology, 1985, 27(1): 109-118.

[22]Buchner V, Burstein Y, Nachmias A. Comparison of Verticillium dahliae-produced phytotoxic peptides purified from culture fluids and infected potato stems. Physiological and Molecular Plant Pathology, 1989, 35(3): 253-269.
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