研究报告

广谱抗稻瘟病水稻保持系赣香B的抗性遗传解析

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  • 1江西省农业科学院 水稻研究所, 南昌 330200
    2水稻国家工程研究中心(南昌)/国家水稻改良中心 南昌分中心,南昌 330200

收稿日期: 2022-11-10

  修回日期: 2022-12-02

  网络出版日期: 2023-09-13

基金资助

江西省重点研发计划项目(20203ABC28W013);江西省现代农业科技协同创新专项重大项目(JXXTCX202201)

Genetic Dissection of Broad Spectrum Resistance of the Rice Maintainer Ganxiang B

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  • 1Rice Research Institute, Jiangxi Academy of Agricultural Sciences, Nanchang 330200, China
    2Rice National Engineering Research Center (Nanchang) / Nanchang Sub-center, National Rice Improvement Center, Nanchang 330200, China

Received date: 2022-11-10

  Revised date: 2022-12-02

  Online published: 2023-09-13

摘要

【目的】 赣香B是江西省农业科学院水稻研究所育成的水稻野败型保持系,在江西、福建、贵州、湖北和浙江等多地都表现较强的稻瘟病广谱抗性。对赣香B的稻瘟病抗性位点的遗传解析,有助于今后稻瘟病抗性育种工作。【方法】 通过抗感株系基因组比较、稻瘟病抗性位点标记检测、抗性位点测序和片段代换系表型鉴定,分析赣香B中的稻瘟病抗性基因位点。【结果】 赣香B中含稻瘟病抗性基因PishPiaPita。在稻瘟病高感株系中导入Pish后,抗性得到显著增强;而导入Pita或者Pia后,抗性略微增强或者没有显著效果。【结论】 赣香B携带多个稻瘟病抗性基因,其中,Pish是主效抗性基因,表现出广谱稻瘟病抗性。

关键词: 稻瘟病; 抗性; 遗传解析

本文引用格式

陈明亮, 熊文涛, 沈雨民, 熊焕金, 罗世友, 吴小燕, 胡兰香, 肖叶青 . 广谱抗稻瘟病水稻保持系赣香B的抗性遗传解析[J]. 中国水稻科学, 2023 , 37(5) : 470 -477 . DOI: 10.16819/j.1001-7216.2023.221105

Abstract

【Objective】 Ganxiang B is a WA type rice maintainer line developed by the Rice Research Institute of Jiangxi Academy of Agricultural Sciences. It shows broad spectrum resistance against rice blast in Jiangxi, Fujian, Guizhou, Hubei, and Zhejiang Provinces. Genetic analysis of blast resistance loci in Ganxiang B will contribute to the future work for blast resistance breeding. 【Method】 The rice blast resistance loci in Ganxiang B were analyzed by genome comparison between resistant and susceptible lines, marker detection of rice blast resistance locus, resistance gene sequencing, and phenotypic identification of segment substitution lines. 【Results】 There were resistance genes Pish, Pia, and Pita in Ganxiang B. After introgressed with Pish, the blast resistance of highly susceptible line was significantly enhanced. However, after introgressed with Pita or Pia, the resistance was slightly enhanced or remained unchanged.【Conclusion】 Ganxiang B carries several blast resistance genes. Among them, Pish is the main resistant gene, showing broad resistance to rice blast.

参考文献

[1] 曹妮, 陈渊, 季芝娟, 曾宇翔, 杨长登, 梁燕. 水稻抗稻瘟病分子机制研究进展[J]. 中国水稻科学, 2019, 33(6): 489-498.
[1] Cao N, Chen Y, Ji Z J, Zeng Y X, Yang C D, Liang Y. Recent progress in molecular mechanism of rice blast resistance[J]. Chinese Journal of Rice Sciences, 2019, 33(6): 489-498. (in Chinese with English abstract)
[2] Li W, Chen M, Yin J, Wang J, Chen X. Recent advances in broad-spectrum resistance to the rice blast disease[J]. Current Opinion in Plant Biology, 2019, 50: 114-120.
[3] Xiao N, Wu Y Y, Li A H. Strategy for use of rice blast resistance genes in rice molecular breeding[J]. Rice Science, 2020, 4(27): 263-277.
[4] Ma J, Lei C, Xu X, Hao K, Wang J, Cheng Z, Ma X, Ma J, Zhou K, Zhang X, Guo X, Wu F, Lin Q, Wang C, Zhai H, Wang H, Wan J. Pi64, encoding a novel CC-NBS-LRR protein, confers resistance to leaf and neck blast in rice[J]. Molecular Plant-Microbe Interactions, 2015, 28(5): 558-568.
[5] Fukuoka S, Yamamoto S, Mizobuchi R, Yamanouchi U, Ono K, Kitazawa N, Yasuda N, Fujita Y, Thi Thanh Nguyen T, Koizumi S, Sugimoto K, Matsumoto T, Yano M. Multiple functional polymorphisms in a single disease resistance gene in rice enhance durable resistance to blast[J]. Scientific Reports, 2014, 4(1): 4550.
[6] Lin F, Chen S, Que Z, Wang L, Liu X, Pan Q. The blast resistance gene Pi37 encodes a nucleotide binding site leucine-rich repeat protein and is a member of a resistance gene cluster on rice chromosome 1[J]. Genetics, 2007, 177(3): 1871-1880.
[7] Wu Y, Xiao N, Yu L, Pan C, Li Y, Zhang X, Liu G, Dai Z, Pan X, Li A. Combination patterns of major R genes determine the level of resistance to the M. oryzae in rice (Oryza sativa L.)[J]. PLoS One, 2015, 10(6): e126130.
[8] Huang H, Huang L, Feng G, Wang S, Wang Y, Liu J, Jiang N, Yan W, Xu L, Sun P, Li Z, Pan S, Liu X, Xiao Y, Liu E, Dai L, Wang G L. Molecular mapping of the new blast resistance genes Pi47 and Pi48 in the durably resistant local rice cultivar Xiangzi 3150[J]. Phytopathology, 2011, 101(5): 620-626.
[9] 梁燕, 季芝娟, 曾宇翔, 张翠真, 吴晗霖, 杨长登. 超级早稻中早39稻瘟病抗性的系谱分析[J]. 中国水稻科学, 2017, 31(4): 441-446.
[9] Liang Y, Ji Z J, Zeng Y X, Zhang C Z, Wu H L, Yang C D. Genealogical analysis on resistance to Magnaporthe oryzae of super early rice Zhongzao 39[J]. Chinese Journal of Rice Sciences, 2017, 31(4): 441-446. (in Chinese with English abstract)
[10] Jeon J S, Chen D, Yi G H, Wang G L, Ronald P C. Genetic and physical mapping of Pi5(t), a locus associated with broad-spectrum resistance to rice blast[J]. Molecular Genetics and Genomics, 2003, 269(2): 280-289.
[11] Bryan G T, Wu K, Farrall L, Jia Y, Hershey H P, Mcadams S A, Faulk K N, Donaldson G K, Tarchini R, Valent B. A single amino acid difference distinguishes resistant and susceptible alleles of the rice blast resistance gene Pi-ta[J]. The Plant Cell, 2000, 12(11): 2033-2045.
[12] Sharma T R, Rai A K, Gupta S K, Singh N K. Broad-spectrum blast resistance gene Pi-kh cloned from rice line Tetep designated as Pi54[J]. Journal of Plant Biochemistry and Biotechnology, 2010, 19(1): 87-89.
[13] Deng Y, Zhai K, Xie Z, Yang D, Zhu X, Liu J, Wang X, Qin P, Yang Y, Zhang G, Li Q, Zhang J, Wu S, Milazzo J, Mao B, Wang E, Xie H, Tharreau D, He Z. Epigenetic regulation of antagonistic receptors confers rice blast resistance with yield balance[J]. Science, 2017, 355(6328): 962-965.
[14] Luo Y, Ma T, Zhang A, Ong K H, Li Z, Yang J, Yin Z. Marker-assisted breeding of the rice restorer line Wanhui 6725 for disease resistance, submergence tolerance and aromatic fragrance[J]. Rice, 2016, 9(1): 66.
[15] Mao T, Zhu M, Ahmad S, Ye G, Sheng Z, Hu S, Jiao G, Xie L, Tang S, Wei X, Hu P, Shao G. Superior japonica rice variety YJ144 with improved rice blast resistance, yield, and quality achieved using molecular design and multiple breeding strategies[J]. Molecular Breeding, 2021, 41(10): 65.
[16] 陈涛, 孙旭超, 张善磊, 梁文化, 周丽慧, 赵庆勇, 姚姝, 赵凌, 赵春芳, 朱镇, 张亚东, 王才林. 稻瘟病广谱抗性基因Pigm特异性分子标记的开发和应用[J]. 中国水稻科学, 2020, 34(1): 28-36.
[16] Chen T, Sun X C, Zhang S L, Liang W H, Zhou L H, Zhao Q Y, Yao S, Zhao L F, Zhao C F, Zhu Z, Zhang Y D, Wang C L. Development and verification of specific molecular markers for Pigm gene associated with broad-spectrum resistance to rice blast[J]. Chinese Journal of Rice Science, 2020, 34(1): 28-36. (in Chinese with English abstract)
[17] 肖叶青, 胡兰香, 吴小燕, 李湘民, 兰波, 邬文昌, 罗世友, 邓伟, 陈大洲. 野败型不育系“赣香A”的稻瘟病抗性研究[J]. 分子植物育种, 2010, 8(6): 1102-1107.
[17] Xiao Y Q, Hu L X, Wu X Y, Li X M, Lan B, Wu W C, Luo S, Deng W, Chen D Z. Study on rice blast resistance in WA type CMS line Ganxiang A[J]. Molecular Plant Breeding, 2010, 8(6): 1102-1107. (in Chinese with English abstract)
[18] 肖叶青, 吴小燕, 胡兰香, 邬文昌, 罗世友, 邓伟, 陈大洲. 赣香B近等基因导入系构建与目标性状筛选[J]. 分子植物育种, 2010, 8(6): 1128-1132.
[18] Xiao Y Q, Wu X Y, Hu L X, Wu W C, Luo S Y, Deng W, Chen D Z. Development of near-isogenic introgression lines on Gangxiang B and evaluation of their traits[J]. Molecular Plant Breeding, 2010, 8(6): 1128-1132. (in Chinese with English abstract)
[19] Jiang H, Li Z, Liu J, Shen Z, Gao G, Zhang Q, He Y. Development and evaluation of improved lines with broad-spectrum resistance to rice blast using nine resistance genes[J]. Rice, 2019, 12(1): 29.
[20] Hu W, Zhou T, Wang P, Wang B, Song J, Han Z, Chen L, Liu K, Xing Y. Development of whole-genome agarose-resolvable InDel markers in rice[J]. Rice, 2020, 13(1): 1.
[21] Costanzo S, Jia Y. Sequence variation at the rice blast resistance gene Pi-km locus: Implications for the development of allele specific markers[J]. Plant Science, 2010, 178(6): 523-530.
[22] 孙立亭, 林添资, 景德道, 余波, 钱华飞, 曾生元, 李闯, 姚维成, 杜灿灿, 胡庆峰, 周义文, 龚红兵. 江苏省多基因聚合对水稻稻瘟病抗性的效应分析及Pb1基因功能标记开发[J]. 南方农业学报, 2019, 50(5): 913-923.
[22] Sun L T, Lin T Z, Jing D D, Yu B, Qian H F, Zeng S Y, Li C, Yao W C, Du C C, Hu Q F, Zhou Y W, Gong H B. Effects of multiple genes polymerization on rice blast resistance in Jiangsu Province and the development of functional markers of Pb1 gene[J]. Journal of Southern Agriculture, 2019, 50(5): 913-923. (in Chinese with English abstract)
[23] Jia Y, Wang Z, Fjellstrom R G, Moldenhauer K A, Azam M A, Correll J, Lee F N, Xia Y, Rutger J N. Rice Pi-ta gene confers resistance to the major pathotypes of the rice blast fungus in the United States[J]. Phytopathology, 2004, 94(3): 296-301.
[24] Chaipanya C, Telebanco-Yanoria M J, Quime B, Longya A, Korinsak S, Korinsak S, Toojinda T, Vanavichit A, Jantasuriyarat C, Zhou B. Dissection of broad-spectrum resistance of the Thai rice variety Jao Hom Nin conferred by two resistance genes against rice blast[J]. Rice, 2017, 10(1): 18.
[25] 马继琼, 杨奕, 孙一丁, 王炎炎, 许明辉. 云南地方水稻品种抗稻瘟病基因Pita功能区段序列变异分析[J]. 中国水稻科学, 2016, 30(3): 265-272.
[25] Ma J Q, Yang Y, Sun Y D, Wang Y Y, Xu M H. Sequence variation of functional fragment in pita gene for rice blast resistance in Yunnan rice landraces[J]. Chinese Journal of Rice Sciences, 2016, 30(3): 265-272. (in Chinese with English abstract)
[26] 张舒, 陈其志, 吕亮, 杨小林, 喻大昭. 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[J]. 华中农业大学学报, 2006, 25(3): 236-240.
[26] Zhang S, Cheng Q Z, Lü L, Yang X L, Yu D Z. Assessment of the variety resistance to Pyricularia grisea and Rhizoctonia solani induced under the natural condition in Hubei Province[J]. Journal of Huazhong Agricultural University, 2006, 25(3): 236-240. (in Chinese with English abstract)
[27] Takahashi A, Hayashi N, Miyao A, Hirochika H. Unique features of the rice blast resistance Pish locus revealed by large scale retrotransposon-tagging[J]. BMC Plant Biology, 2010, 10: 175.
[28] 徐小金, 董波, 陶跃之, 王华. 粳稻品种Oochikara稻瘟病抗性基因挖掘[J]. 江苏农业学报, 2016, 32(5): 961-967.
[28] Xu X J, Dong B, Tao Y Z, Wang H. Rice blast-resistant gene mining in japonica rice cultivar Oochikara[J]. Jiangsu Agricultural Science, 2016, 32(5): 961-967. (in Chinese with English abstract)
[29] Xiao N, Wu Y, Wang Z, Li Y, Pan C, Zhang X, Yu L, Liu G, Zhou C, Ji H, Huang N, Jiang M, Dai Z, Li A. Improvement of seedling and panicle blast resistance in Xian rice varieties following Pish introgression[J]. Molecular Breeding, 2018, 38(7): 142.
[30] Zhong Z, Chen M, Lin L, Han Y, Bao J, Tang W, Lin L, Lin Y, Somai R, Lu L, Zhang W, Chen J, Hong Y, Chen X, Wang B, Shen W C, Lu G, Norvienyeku J, Ebbole D J, Wang Z. Population genomic analysis of the rice blast fungus reveals specific events associated with expansion of three main clades[J]. ISME Journal, 2018, 12(8): 1867-1878.
[31] 王小秋, 杜海波, 陈夕军, 李明友, 王嘉楠, 许志文, 冯志明, 陈宗祥, 左示敏. 江苏近年育成粳稻新品种/系的稻瘟病抗性基因及穗颈瘟抗性分析[J]. 中国水稻科学, 2020, 34(5): 413-424.
[31] Wang X Q, Du H B, Chen X J, Li M Y, Wang J N, Xu Z W, Feng Z M, Chen Z X, Zuo S M. Analysis of blast resistance genes and neck blast resistance of japonica rice varieties/lines recently developed in Jiangsu Province[J]. Chinese Journal of Rice Sciences, 2020, 34(5): 413-424. (in Chinese with English abstract)
[32] 吴小燕, 胡兰香, 熊焕金, 陈明亮, 沈雨民, 肖叶青. 抗稻瘟病不育系赣73A的选育及应用[J]. 杂交水稻, 2019, 34(1): 20-21.
[32] Wu X Y, Hu L X, Xiong H J, Chen M L, Shen Y M, Xiao Y Q. Breeding and application of blast-resistance CMS line Gan 73A in rice[J]. Hybrid Rice, 2019, 34(1): 20-21. (in Chinese with English abstract)
[33] 沈雨民, 陈明亮, 熊焕金, 吴小燕, 邓伟, 胡兰香, 罗世友, 陈红萍, 肖叶青. 优质抗稻瘟病水稻三系不育系“赣莲A”选育[J]. 分子植物育种, 2018, 16(3): 924-930.
[33] Shen Y M, Chen M L, Xiong H J, Wu X Y, Deng W, Hu L X, Luo S Y, Chen H P, Xiao Y Q. Breeding of CMS line “Ganlian A” with good quality and blast resistance in rice[J]. Molecular Plant Breeding, 2018, 16(3): 924-930. (in Chinese with English abstract)
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