作物学报 ›› 2015, Vol. 41 ›› Issue (05): 806-812.doi: 10.3724/SP.J.1006.2015.00806
李文凤,王晓燕,黄应昆*,张荣跃,单红丽,尹炯,罗志明
LI Wen-Feng,WANG Xiao-Yan,HUANG Ying-Kun*,ZHANG Rong-Yue,SHAN Hong-Li,YIN Jiong,dLUO Zhi-Ming
摘要:
为明确甘蔗野生资源对黑顶柄锈菌的抗性水平,了解Bru1基因在甘蔗野生资源中的分布状况,于2013年对中国国家甘蔗种质资源圃保存的31份野生核心种质资源进行苗期抗褐锈病鉴定和抗褐锈病基因Bru1的分子检测。结果表明,31份供试材料中,高抗(1级)至中抗(3级)的有28份,占90.3%。其中19份材料表现高抗(1级),占61.3%,3份材料表现抗病(2级),占9.7%,6份材料表现中抗(3级),占19.4%。31份供试材料中只有Guizhou 78-2-12、Yunnan 97-4、E. rockii 95-19、E. rockii 95-20、Yunnan 83-224、Guangxi 79-8、Yunnan 95-35和Guangxi 89-13含抗褐锈病基因Bru1,占参试材料的25.8%;其余20份抗病材料和3份感病材料均不含抗褐锈病基因Bru1,表明除Bru1外,可能还有其他抗褐锈病基因存在。结果暗示中国国家甘蔗种质资源圃保存的野生核心种质资源中蕴藏着优良的抗褐锈病基因,是选育抗褐锈病甘蔗品种很有利用前景的抗源种质。
| [1]Rott P, Bailey R A, Comstock J C, Croft B J, Saumtally A S. A guide to sugarcane diseases. Montpellier: CIRAD and ISSCT, 2000. pp 85–89[2]Hoy J W, Hollier C A. Effect of brown rust on yield of sugarcane in Louisiana. Plant Dis,2009, 93: 1171–1174[3]陈庆龙译. 世界甘蔗病害. 北京: 农业出版社, 1982. pp 34–40Chen Q L . Sugarcane Diseases in the Dorld. Beijing: Agriculture Press, 1982. pp 34–40 (in Chinese)[4]CSIRO. Unlocking success through change and innovation: Options to improve the profitability and environmental performance of the Australian sugar industry. Submission to Sugarcane Industry Assessment, 2005. p 4[5]Raid R H. Florida Sugarcane Handbook. Florida: University of Florida, 2006. p 1–3[6]Comstook J C. Effect of rust on sugarcane growth and biomass. Plant Disease, 1992, 76: 172–177[7]Comstook J C, Shine J M, Raid R N. Effect of early rust infection on subsequent sugarcane growth. Sugar Cane, 1992, 4: 7–9[8]马利. 泰国甘蔗生产及科研现状. 世界农业, 1995, 9: 23Ma L.The production and research actuality of sugarcane in Thailand. World Agric, 1995, 9: 23 (in Chinese)[9]阮兴业, 杨雾, 孙楚坚. 云南省发现甘蔗茅柄锈菌. 真菌学报, 1983, 2: 260–261Ruan X Y, Yan F, Sun C J. Occurrence of Puccinia erianthi on sugarcane in Yunnan province. Acta Mycol Sin. 1983, 2: 260–261 (in Chinese)[10]全国甘蔗重要病害研究协作组. 我国大陆植蔗省(区)(部分)甘蔗病害种类调查初报. 甘蔗糖业, 1991, (1): 1–8The important sugarcane diseases research cooperation group. The preliminary report of sugarcane diseases investigation in the sugarcane planting provinces (partly), Mainland China. Sugarcane Canesugar, 1991, (1): 1–8 (in Chinese with English abstract)[11]刘晓妹, 刘文波, 施焕焕. 海南儋州甘蔗锈病病原菌的鉴定及其生物学特性的测定. 中国糖料, 2008, 2: 30–32Liu X M, Liu W B, Shi H H. Pathogen identification and biological characteristics of sugarcane rust in Danzhou. Sugar Crops China, 2008, 2: 30–32 (in Chinese with English abstract)[12]韦金菊, 邓展云, 黄伟华, 潘雪红, 王伯辉, 刘晓静. 广西北海甘蔗锈病生物学特性研究及防治对策. 安徽农业科学, 2010, 38: 14997–14999Wei J J, Deng Z Y, Huang W H, Pan X H, Wang B H, Liu X J. Control methods and pathogen biological characteristics of sugarcane rust in Beihai. J Anhui Agric Sci, 2010, 38: 14997–14999 (in Chinese with English abstract)[13]黄应昆, 李文凤. 现代甘蔗病虫草害原色图谱. 北京: 中国农业出版社, 2011. pp 104–106Huang Y K , Li W F. Colored Atlas of Main Diseases, Insect Pests and Weeds of Modern Sugarcane. Beijing: China Agriculture Press, 2011. pp 104–106 (in Chinese)[14]黄应昆, 李文凤. 云南蔗区甘蔗锈病流行原因及防治对策. 植保技术与推广, 1998, 18: 22–23Huang Y K, Li W F. Epidemic and control strategies of sugarcane rust disease in Yunnan sugarcane field. Plant Prot Technol Extens, 1998, 18: 22–23 (in Chinese)[15]李文凤, 蔡青, 黄应昆, 范源洪, 王丽萍. 甘蔗优良亲本及创新种质对蔗茅柄锈菌的抗性鉴定. 中国糖料, 2007, (4): 10–12Li W F, Cai Q, Huang Y K, Fan Y H, Wang L P.Identification of fine sugarcane parent and innovative gerplasma to resistant Puccinia erianthi. Sugar Crops China, 2007, (4): 10–12(in Chinese with English abstract)[16]李文凤, 蔡青, 黄应昆, 范源洪, 马丽.甘蔗栽培原种对蔗茅柄锈菌的抗性鉴定. 云南农业大学学报, 2008, 22: 25–28Li W F, Cai Q, Huang Y K, Fan Y H, Ma L. Identification of sugarcane cultivated original species resistance to Puccinia erianthi. J Yunnan Agric Univ, 2008, 22: 25–28 (in Chinese with English abstract)[17]Daugrois J H, Grivet L, Roques D. A putative major gene for rust resistance linked with a RFLP marker in sugarcane cultivar‘R570’. Theor Appl Genet, 1996, 92: 1059–1064[18]Asnaghi C, Roques D, Ruffel S, Kaye C, Hoarau J Y, Télismart H, Girard J C, Roboin L M, Risterucci A M, Grivet L, D’Hont A. Targeted mapping of a sugarcane rust resistance gene (Bru1) using bulked segregant analysis and AFLP markers.Theor Appl Genet, 2004, 108: 759–764[19]Asnaghi C, D’hont A, Glaszmann J, Rott P. Resistance of sugarcane cultivar R 570 to Puccinia melanocephala isolates from different geographic locations. Plant Dis, 2001, 85: 282–286[20]Costet L, Toubi L, Le Cunff L. Haplotype structure around Bru1 reveals a narrow genetic basis for brown rust resistance in modern sugarcane cultivars. Theor Appl Genet, 2012, 125: 825–836[21]齐永文, 樊丽娜,罗青文, 王勤南, 陈勇生,黄忠兴, 刘睿, 刘少谋, 邓海华, 李奇伟. 甘蔗细茎野生种核心种质构建. 作物学报, 20013, 39: 649–6526Qi Y W, Fan L N, Luo Q W, Wang Q N, Chen Y S, Huang Z X, Liu R, Liu S M, Deng H H, Li Q W. Establishment of Saccharum spontaneum L. core collections. Acta Agron Sin, 20013, 39: 649–6526 (in Chinese with English abstract)[22]李文凤, 黄应昆.现代甘蔗病害诊断检测与防控技术. 北京: 中国农业出版社, 2012. p 94Li W F, Huang Y K. DiagnosisDetection and Control Technique of Modern Sugarcane Diseases. Beijing: China Agriculture Press, 2012. p 94 (in Chinese)[23]Le Cunff L, Garsmeur O, Raboin L M, Pauquet J, Telismart H, Selvi A, Grivet L, Philippe R, Begum D, Deu M, Costet L, Wing R, Glaszmann J C, D’Hont A. Diploid/polyploid syntenic shuttle mapping and haplotypespecific chromosome walking toward a rust resistance gene(Bru1) in highly polyploid sugarcane (2n-12x-115). Genetics, 2008, 180: 649–660[24]Glynn N C, Laborde C, Davidson R W, Irey M S, Glaz B, D'Hont A, Comstock J C. Utilization of a major brown rust resistance gene in sugarcane breeding. Mol Breed, 2013, 31: 323–331[25]Racedo J, Perera M F, Bertani R, Funes C, González V, Cuenya M I, D’Hont A, Welin B, Castagnaro A P. Bru1 gene and potential alternative sources of résistance to sugarcane brown rust disease. Euphytica, 2013, 191: 429–436[26]陈辉, 范源洪, 史宪伟, 蔡青, 张明, 张亚平. 甘蔗细茎野生种的的遗传多样性与系统演化研究. 作物学报, 2001, 27: 645–652Chen H, Fan Y H,Shi X W, Cai Q, Zhang M, Zhang Y P.Research on genetic diversity and systemic evolution in Saccharum spontaneum L. Acta Agron Sin, 2001, 27: 645–652 (in Chinese with English abstract)[27?范源洪, 陈辉, 史宪伟, 蔡青, 张明, 张亚平. 甘蔗细茎野生种云南不同生态类型的RAPD分析. 云南植物研究, 2001, 23: 298–308Fan Y H, Chen H, Shi X W, Cai Q, Zhang M, Zhang Y P. RAPD analysis of Saccharum spontaneum from different ecospecific colonies in Yunnan. Acta Bot Yunnanica, 2001, 23: 298–308 (in Chinese with English abstract) |
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