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Acta Agron Sin ›› 2017, Vol. 43 ›› Issue (12): 1864-1869.doi: 10.3724/SP.J.1006.2017.01864

• RESEARCH NOTES • Previous Articles    

Resistance Evaluation of Potato Cultivars and Germplasms to Meloidogyne hapla in Heilongjiang Province

MAO Yan-Zhi1,LI Chun-Jie2,HU Yan-Feng2,HUA Cui2,YOU Jia2,WANG Xin-Peng2,LIU Xi-Cai1,YANG Geng-Bin1,WANG Cong-Li2,*   

  1. 1 Keshan branch of Heilongjiang Academy of Agricultural Sciences, Keshan 161606, China; 2 Key Laboratory of Mollisols Agroecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Harbin 150081, China?
  • Received:2016-02-28 Revised:2017-07-23 Online:2017-12-12 Published:2017-08-02
  • Contact: 王从丽, E-mail: wangcongli@iga.ac.cn, Tel: 0451-86602749 E-mail:kshpotato@163.com
  • Supported by:

    The work was supported by the Agricultural Science and Technology Innovation Program of Heilongjiang (Q001) and the One Hundred Talent Program of Chinese Academy of Sciences.

Abstract:

Root-knot nematode (Meloidogyne spp., RKN) is one of the most economically important plant parasitic nematodes with wide host including potato (Solanum tuberosum). In order to investigate resistance of potato to the northern RKN, M. hapla, twenty-eight main potato cultivars and breeding materials in Heilongjiang Province with a pot experiment was conducted in greenhouse by randomized block design with five replications. M. hapla could be propagated on all materials with a reproduction factor ranging from 1.53 to 37.9. The reproduction factors of cultivars Baitouweng (2.41), Hui-2 (2.02), and Hongshen (1.53) were significantly different (P < 0.05) from those of Qingshu 3 (36.93) and 608Kennebec (37.9). The egg mass number per gram fresh root ranged from 26.6 (Baitouweng) to 217.4 (Kexin13). Cultivar Baitouweng was resistant one according to egg mass scale. The galling index ranged from 1.5 to 6.8. Three cultivars including Baitouweng (1.8), Hui-2 (1.5), andHongshen (2.2) were identified as resistance resources basedon galling index (GI). Overall, Baitouweng was confirmed as resistant cultivar, Hui-2 and Hongshen as tolerant ones to root-knot nematode, and the cultivars Qingshu3 and 608Kennebec as susceptible control.

Key words: Potato, Main cultivars and breeding materials, Meloidogyne hapla, Resistance evaluation

[1]周银丽, 杨伟, 余光海, 王鸿, 胡先奇. 中国云南省石榴根结线虫的种类初报. 华中农业大学学报, 2005, 24: 351–354
Zhou Y L, Yang W, Yu G H, Wang H, Hu X Q. A preliminary report on the species of pomegranate root knot nematodes in Yunnan Province, China. J Huazhong Agric Univ, 2005, 24: 351–354 (in Chinese with English abstract)
[2]赵洪海, 袁辉, 武侠, 刘维志. 山东省根结线虫的种类与分布. 莱阳农学院学报, 2003, 20: 243–247
Zhao H H, Yuan H, Wu X, Liu W Z. Identification and distribution of root knot nematodes in Shandong province. J Laiyang Agric Coll, 2003, 20: 243–247 (in Chinese with English abstract)
[3]陈书龙, 李秀花, 马娟. 河北省根结线虫发生种类与分布. 华北农学报, 2006, 21(4): 91–94
Chen S L, Li X H, Ma J. Identification and distribution of root knot nematode in Hebei Province. Acta Agric Boreali-Sin, 2006, 21(4): 91–94 (in Chinese with English abstract)
[4]赵磊, 段玉玺, 白春明, 陈立杰, 朱晓峰, 孙晓铭. 辽宁省根结线虫发生种类与分布. 湖北农业科学, 2010, 49: 865–868
Zhao L, Duan Y X, Bai C M, Chen L J, Zhu X F, Sun X M. Identification and distribution of root knot nematode in Liaoning Province. Hubei Agric Sci, 2010, 49: 865–868 (in Chinese with English abstract)
[5]Taylor A L, Sasser J N. Biology, identification and control of root-knot nematodes (Meloidogyne species). Raleigh, North Carolina, USA: Department of Plant Pathology, North Carolina State University, United States Agency for International Development, 1978
[6]Hadisoeganda W W, Sasser J N. Resistance of tomato, bean, southern pea, and garden pea cultivars to root-knot nematodes based on host suitability. Plant Dis, 1982, 66: 145–150
[7]Di Vito M, Greco N, Carputo D, Frusciante L. Response of wild and cultivated potato clones to Italian populations of root knot nematodes Meloidogyne spp. Nematropica, 2003, 33: 65–72
[8]Garcia L E, Segura D M, Masuelli R W, Sanchezpuerta M V. Evaluating root-knot nematode infection in wild potatoes. Nematropica, 2014, 44: 31–36
[9]Bridge J, Page S L J. Estimation of root-knot nematode infection levels on roots using a rating chart. Tropical Pest Manag, 1980, 26: 296–298
[10]李春杰, 胡岩峰, 王从丽. 黑龙江省大庆市大棚蔬菜根结线虫种类和小种的鉴定. 土壤与作物, 2016, (5): 105–109
Li C J, Hu Y F, Wang C L. Identification of species and race the root-knot nematode in the greenhouse from Daqing City in Heilongjiang province. Soils Crops, 2016, (5): 105–109
[11]Hussey R S, Barker K R. A comparison of methods of collecting inocula of Meloidogyne spp., including a new technique. Plant Dis Rep, 1973, 57: 1025–1028
[12]Omega C O, Thomason I J, Robert P A. A nondestructive technique for screening bean germplasm for resistance to Meloidogyne incognita. Plant Dis, 1988, 72: 970–972
[13]Nyczepir A P, O'Bannon J H, Santo G S. Incidence and distinguishing characteristics of Meloidogyne chitwoodi and M. hapla in potato from the northwestern United States. J Nematol, 1982, 14: 347
[14]Wang C, Ulloa M, Roberts P A. Identification and mapping of microsatellite markers linked to a root-knot nematode resistance gene (rkn1) in Acala NemX cotton (Gossypium hirsutum L.). Theor Appl Genet, 2006, 112: 770–777
[15]Mwaura P, Niere B, Vidal S. Resistance and tolerance of potato varieties to potato rot nematode (Ditylenchus destructor) and stem nematode (Ditylenchus dipsaci). Ann Appl Biol, 2015, 166: 257–270
[16]Bybd D W, Kirkpatrick T, Barker K R. An improved technique for clearing and staining plant tissues for detection of nematodes. J Nematol, 1983, 15: 142
[17]王云龙. 黑龙江省马铃薯产业现状与展望. 中国马铃薯, 2014, 10: 185–188
Wang Y L. Status and prospect of potato industry in Heilongjiang province. China Potato, 2014, 10: 185–188
[18]桑月秋, 杨琼芬, 刘彦和, 卢丽丽,李文娟, 周俊, 谢开云, 隋启军. 云南省马铃薯种植区域分布和周年生产. 西南农业学报, 2014, 27: 1003–1008
Sang Y Q, Yang Q F, Liu Y H, Lu L L, Li W J, Zhou J, Xie K Y, Sui Q J. Yunnan province potato planting area distribution and annual production. Southwest China J Agric Sci, 2014, 27: 1003–1008
[19]李树超, 吴龙华, 李亚俊, 丁慧媛. 山东省马铃薯产业发展现状及推进对策研究. 中国农学通报, 2015, 31(8): 280–285
Li S C, Wu L H, Li Y J, Ding H Y. Research on development status and counter measures of potato industry in Shandong province. China Agric Bull, 2015, 31 (8): 280–285
[20]秦军红, 李文娟, 周俊, 谢开云. 河北省马铃薯替代小麦生产的可能性分析. 华中农业大学学报(社会科学版), 2016, (3): 47–52
Qin J H, Li W J, Zhou J, Xie K Y. Possibility Analysis of potato instead of wheat production in Hebei province. J Huazhong Agric Univ (Social Sci Edn), 2016, (3): 47–52
[21]徐兴阳, 罗华元, 饶智, 杨明, 端永明, 杨应明, 孙胜, 周绍松. 昆明植烟土壤根结线虫种群动态研究. 昆明学院学报, 2013, (6): 11–14
Xu X Y, Luo H Y, Rao Z, Yang M, Yang Y M, Sun S, Zhou S S. Kunming tobacco soil root knot nematode population dynamics on. J Kunming Coll, 2013, (6): 11–14
[22]刘长臣, 刘喜才, 张丽娟, 孙邦升, 宋继玲. 马铃薯国外引种的探讨和建议. 中国马铃薯, 2010, 24(2): 73–76 (in Chinese with English abstract)
Liu C C, Liu X C, Zhang L J, Sun B S, Song J L. Discussion and suggestion on the introduction of potato abroad. China Potato, 2010, 24(2): 73–76
[23]王仁贵, 刘丽华. 中国马铃薯种质资源研究现状. 作物品种资源, 1995, (3): 20–22
Wang R G, Liu L H. Research status of potato germplasm resources in China. Crop Germplasm Resources, 1995, (3): 20–22

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