OALib Journal期刊
ISSN: 2333-9721
费用:99美元
水稻抗纹枯病遗传育种研究进展
, PP. 1014-1023
Keywords: 水稻 ,抗纹枯病QTL ,物理图谱 ,育种价值 ,鉴定方法 ,抗性资源
Abstract:
纹枯病是世界性水稻病害,在中国南方部分水稻种植区已成为水稻第一大病害.但对水稻抗纹枯病遗传育种研究却进展缓慢.抗性鉴定方法、抗病基因定位和抗性资源发掘是抗病遗传育种研究中的最重要内容,亦是抗病品种选育的基础.本文综述了近年提出的水稻纹枯病抗性鉴定方法,对抗病基因QTL进行物理图谱整合,分析了抗病QTL的定位概况,同时对抗源发掘和抗病育种方面的新进展进行了归纳与讨论,最后提出下一步研究方向,以期为加速水稻抗纹枯病遗传育种进程提供帮助.
References
[1] 20 Pinson S R M, Capdevielle F M, Oard J H. Confirming QTLs and finding additional loci conditioning sheath blight resistance in rice using
[2] recombinant inbred lines. Crop Sci, 2005, 45: 503—510
[3] 21 Che K P, Zhan Q C, Xing Q H, et al. Tagging and mapping of rice sheath blight resistant gene. Theor Appl Genet, 2003, 106: 293—297
[4] 22 Sharma A, McClung A M, Pinson S R M, et al. Genetic mapping of sheath blight resistance QTLs within tropical japonica rice cultivars.
[5] Crop Sci, 2009, 49: 256—264
[6] 32 Eizenga G C, Prasad B. http: //www.ricecap.uark.edu/annual_reports.htm/2009
[7] 33 Channamallikarjuna V, Sonah H, Prasad M, et al. Identification of major quantitative trait loci qSBR11-1 for sheath blight resistance in rice.
[8] Mol Breeding, 2010, 25: 155—166
[9] 34 谭彩霞, 纪雪梅, 杨勇, 等. 水稻回交世代中两个抗纹枯病主效数量基因的鉴定与标记辅助选择, 遗传学报, 2005, 32: 400—405
[10] 35 Yin Y J, Zuo S M, Wang H, et al. Evaluation of the effect of qSB-9(Tq) involved in quantitative resistance to rice sheath blight using
[11] near-isogenic lines. Can J Plant Sci, 2009, 89: 731—737
[12] 36 向珣朝, 王世全, 何立斌, 等. 一个抗水稻纹枯病突变体的发现及其遗传特性的初步分析. 作物学报, 2005, 31: 1236—1238
[13] 37 向珣朝, 李季航, 张楷正, 等. 高水平抗纹枯病突变体Rsb 在不同致病菌株、高N 肥和密度下的抗性表现. 种子, 2008, 27: 1—5
[14] 38 潘学彪, Rush M C. 美国的水稻纹枯病抗病遗传育种研究. 江苏农学院学报, 1997a, 18: 57—64
[15] 39 Glazebrook J. Contrasting mechenisms of defense against biotrophic and necrotrophic pathogens. Annu Rev Phytopathol, 2005, 43: 205—
[16] 227
[17] 40 殷跃军, 左示敏, 王辉, 等. 利用近等基因系研究抗水稻纹枯病QTL 的聚合效应. 中国水稻科学, 2008, 22: 340—346
[18] 41 韩飞, 候立恒. 中国普通野生稻优异基因的研究与利用. 安徽农业科学, 2007, 35: 7794—7796
[19] 42 Eizenga G C, Lee F N, Rutger J N. Screening Oryza species plants for rice sheath blight resistance. Plant Dis, 2002, 86: 808—812
[20] 43 Prasad B, Eizenga G C. Rice Sheath blight disease resistance identified in oryza spp accessions. Plant Dis, 2008, 92: 1503—1509
[21] 44 陈志谊, 殷尚智, 陆凡, 等. 稻种资源对水稻纹枯病抗性鉴定初报. 植物保护, 1994, 6: 23
[22] 45 张楷正, 李平, 李娜, 等. 水稻抗纹枯病种质资源、抗性遗传和育种研究进展. 分子植物育种, 2006, 4: 713—720
[23] 59 Bernier J, Kumar A, Venuprasad R, et al. Characterization of the effect of a QTL for drought resistance in rice, qtl12.1, over a range of
[24] environments in the Philippines and eastern India. Euphytica, 2009, 166: 207—217
[25] 60 Han Y P, Xing Y Z, Gu S L, et al. Effect of morphological traits on sheath blight resistance in rice. Acta Botanica Sinica, 2003, 45: 825—
[26] 831
[27] 61 Jia Y L, Liu G J, Costanzo S, et al. Current progress on genetic interactions of rice with rice blast and sheath blight fungi. Front Agric China,
[28] 2009, 3: 231—239
[29] 62 Zuo S M, Yin Y J, Zhang L, et al. Effect and breeding potential of qSB-11LE, a sheath blight resistance QTL from a susceptible rice cultivar.
[30] Can J Plant Sci, 2011, in press
[31] 63 Chern M S, Fitzgerald H A, Yadav R C, et al. Evidence for a disease-resistance pathway in rice similar to the NPR-1-mediated signaling
[32] pathway in Arabidopsis. Plant J, 2001, 27: 101—113
[33] 64 Abiola O, Angel J M, Avner P, et al. The nature and identification of quantitative trait loci: a community’s view. Nature reviews (genetics),
[34] 2003, 4: 911—915
[35] 65 左示敏, 殷跃军, 张亚芳, 等. 植物数量抗病基因克隆及其抗性机理的研究进展. 分子植物育种, 2006, 4: 603—613
[36] 66 Wisser K J, Sun Q, Hulbert S H, et al. Identification and characterization of regions of the rice genome associated with broad-spectrum,
[37] quantitative disease resistance. Genetics, 2005, 169: 2277—2293
[38] 67 Venu R C, Jia Y L, Gowda M, et al. RL-SAGE and microarray analysis of the rice transcriptome after Rhizoctonia solani infection. Mol
[39] Genet Genomics, 2007, 278: 421—431
[40] 68 Zhao C J, Wang A R, Shi Y J, et al. Identification of defense-related genes in rice responding to challenge by Rhizoctonia solani. Theor Appl Genet, 2008, 116: 501—516
[41] 69 Sriram S, Raguchander T, Babu S, et al. Inactivation of phytotoxin produced by the rice sheath blight pathogen Rhizoctonia solani. Can J
[42] Microbiol, 2000, 46: 520—524
[43] 70 陈夕军, 张红, 徐敬友, 等. 水稻纹枯病菌胞壁降解酶的产生及致病作用. 江苏农业学报, 2006, 22: 24—28
[44] 71 Brooks S A. Sensitivity to a phytotoxin from Rhizoctonia solani correlates with sheath blight susceptibility in rice. Phytopathology, 2007,
[45] 97: 1207—1212
[46] 72 Janni M, Sella L, Favaron F, et al. The expression of a bean PGIP in transgenic wheat confers increased resistance to fungal pathogen
[47] Bipolaris sorokiniana. Am Phytopathol Soc, 2008, 21: 171—177
[48] 1 Lee F N, Rush M C. Rice sheath blight: a major rice disease. Plant Dis, 1983, 67: 829—832
[49] 2 Rush M C, Lindberg G D. Rice disease research. Rice J, 1996, 77: 49—52
[50] 3 廖皓年, 肖陵生, 王华生. 水稻纹枯病发生历史及演变原因简析. 广西植保, 1997, 3: 35—38
[51] 4 黄世文, 王玲, 黄雯雯, 等. 水稻主要病虫害“傻瓜”式防控技术理论与实践. 中国稻米, 2009, 5: 48—51
[52] 5 过崇俭, 陈志谊. 水稻纹枯病致病力分化及品种抗性鉴定技术的研究. 中国农业科学, 1985, 5: 50—57
[53] 6 陈夕军, 王玲, 左示敏, 等. 水稻纹枯病寄主–病原物互作鉴别品种与菌株的筛选. 植物病理学报, 2009, 39: 514—520
[54] 7 Rush M C, Hoff J J, Mcllrath W O. A uniform disease rating system for rice disease in the United States//Proc 16th Rice Tech Working
[55] Group. Lake Charles, Louisana, USA, 1976, 64
[56] 8 潘学彪, 陈宗祥, 徐敬友, 等. 不同接种调查方法对抗水稻纹枯病遗传研究的影响. 江苏农学院学报, 1997b, 18: 27—32
[57] 9 左示敏, 张亚芳, 殷跃军, 等. 田间水稻纹枯病抗性鉴定体系的确立与完善. 扬州大学学报(农业与生命科学版), 2006, 27: 57—61
[58] 10 王子斌, 左示敏, 李刚, 等. 水稻纹枯病几种田间病级调查标准的比较研究. 扬州大学学报(农业与生命科学版), 2009, 30: 57—62
[59] 11 Wasano K, Oro S, Kido Y. The syringe inoculation method for selecting rice plants resistant to sheath blight, Rhizoctonia solani. Japan J
[60] Trop Agr, 1983, 27: 131—139
[61] 12 Park D S, Sayler R J, Hong Y G, et al. A method for inoculation and evaluation of rice sheath blight disease. Plant Dis, 2008, 92: 25—29
[62] 13 Sayler R J, Yang Y. Detection and quantification of Rhizoctonia soloani AG-1 IA, the rice sheath blight pathogen, in rice using real-time
[63] PCR. Plant Dis, 2007, 91: 1663—1668
[64] 14 Jia Y, Correa-Victoria F, McClung A, et al. Rapid determination of rice cultivar responses to the sheath blight pathogen Rhizoctonia solani
[65] using a micro-chamber screening method. Plant Dis, 2007, 91: 485—489
[66] 15 王子斌, 左示敏, 李刚, 等. 水稻抗纹枯病苗期快速鉴定技术研究. 植物病理学报, 2008, 39: 174—182
[67] 16 Singh A, Rohilla R, Singh U S, et al. An improved inoculation technique for sheath blight of rice caused by Rhizotonia solani. Can J Plant
[68] Pathol, 2002, 24: 65—68
[69] 17 Li Z K, Pinson S R M, Marshetti M A, et al. Characterization of quantitative trait loci (QTLs) in cultivated rice contributing to field
[70] resistance to sheath blight (Rhizoctonia solani). Theor Appl Genet, 1995, 91: 374—381
[71] 18 Zou J H, Pan X B, Chen Z X, et al. Mapping quantitative trait loci controlling sheath blight resistance in two rice cultivars (Oryza sativa L.).
[72] Theor Appl Genet, 2000, 101: 569—575
[73] 19 韩月澎, 邢永忠, 陈宗祥, 等. 杂交水稻亲本明恢63 对纹枯病水平抗性的QTL 定位. 遗传学报, 2002, 29: 565—570
[74] 23 谢学文, 许美容, 藏金萍, 等. 水稻抗纹枯病QTL 表达的遗传背景及环境效应. 作物学报, 2008, 34: 1885—1893
[75] 24 国广泰史, 钱前, 佐藤宏之, 等. 水稻纹枯病抗性QTL 分析. 遗传学报, 2002, 29: 50—55
[76] 25 李芳, 程立锐, 许美容, 等. 利用品质性状的回交选择导入系挖掘水稻抗纹枯病QTL. 作物学报, 2009, 35: 1729—1737
[77] 26 Liu G, Jia Y, Correa-Victoria F J, et al. Mapping quantitative trait loci responsible for resistance to sheath blight in rice. Phytopathology,
[78] 2009, 99: 1078—1084
[79] 27 潘学彪, 张亚芳, 左示敏, 等. 试论作物重要数量性状基因的鉴定和应用. 扬州大学学报(农业与生命科学版), 2005, 26: 50—55
[80] 28 向珣朝, 李季航, 张楷正, 等. 一个水稻抗纹枯病突变体的遗传分析及其基因的初步定位. 西南科技大学学报, 2007, 22: 76—81
[81] 29 郑天清, 徐建龙, 傅彬英, 等. 回交高代选择导入系的纹枯病抗性与抗旱性的遗传重叠研究. 作物学报, 2007, 33: 1380—1384
[82] 30 左示敏, 殷跃军, 张丽, 等. 水稻抗纹枯病QTLqSB-11 的育种价值及其进一步定位. 中国水稻科学, 2007, 21: 136—142
[83] 31 Sato H, Ideta O, Audo I, et al. Mapping QTLs for sheath blight resistance in the rice line WSS2. Breeding Sci, 2004, 54: 265—271
[84] 46 Xie Q J, Linscombe S D, Rush M C, et al. Registration of LSBR-33 and LSBR-5 sheath blight-resistant germplasm lines of rice. Crop Sci,
[85] 1992, 32: 507
[86] 47 陆岗, 梁耀懋, 黎坤爱, 等. 深水稻种质资源耐淹性及抗稻纹枯病特性研究. 西南农业学报, 2004, 17: 701—704
[87] 48 刘永峰, 陈志谊, 吉健安, 等. 江苏省水稻主栽及区试品种对水稻纹枯病的抗性分析. 江苏农业科学, 2006, 1: 27—28
[88] 49 张舒, 陈其志, 吕亮, 等. 自然诱发条件下湖北省水稻主栽品种对稻瘟病、纹枯病的抗性鉴定. 华中农业大学学报, 2006, 25: 236—240
[89] 50 黄世文, 王玲, 王全永, 等. 一份抗纹枯病水稻品种ZH5 的抗病虫特性和生物学性状. 中国水稻科学, 2007, 21: 657—663
[90] 51 张楷正, 明红梅, 李平. 中国南方稻区水稻骨干亲本纹枯病抗性鉴定与分析. 植物保护, 2008, 34: 45—48
[91] 52 左示敏, 王子斌, 陈夕军, 等. 水稻纹枯病改良新抗源YSBR1 的抗性评价. 作物学报, 2009, 35: 608—614
[92] 53 袁筱萍, 魏兴华, 余汉勇, 等. 不同品种及有关外因对水稻纹枯病抗性的影响. 作物学报, 2004, 30: 768—773
[93] 54 Zuo S M, Zhang L, Wang H, et al. Prospect of the QTL-qSB-9Tq utilized in molecular breeding program of japonica rice against sheath
[94] blight. J Genet Genomics, 2008, 35: 499—505
[95] 55 陈志谊, 过崇俭, 杨金生. 水稻品种间纹枯病的严重度与产量损失的关系. 植物保护学报, 1989, 16: 49—54
[96] 56 陈宗祥, 邹军煌, 徐敬友, 等. 对水稻纹枯病抗源的初步研究. 中国水稻科学, 2000, 14: 15—18
[97] 57 潘学彪, 陈宗祥, 张亚芳, 等. 水稻抗纹枯病育种成效的初步评价. 中国水稻科学, 2001, 15: 218—220
[98] 58 黎志康. 中国水稻分子育种计划的策略. 分子植物育种, 2005, 3: 603—608
Full-Text
Contact Us
service@oalib.com
QQ:3279437679
WhatsApp +8615387084133