中国农业科学 ›› 2019, Vol. 52 ›› Issue (23): 4262-4273.doi: 10.3864/j.issn.0578-1752.2019.23.007
收稿日期:
2019-05-30
接受日期:
2019-08-01
出版日期:
2019-12-01
发布日期:
2019-12-01
通讯作者:
张亚玲,靳学慧
作者简介:
孟峰,E-mail:xmfengf@126.com
基金资助:
MENG Feng,ZHANG YaLing(),JIN XueHui(
),ZHANG XiaoYu,JIANG Jun
Received:
2019-05-30
Accepted:
2019-08-01
Online:
2019-12-01
Published:
2019-12-01
Contact:
YaLing ZHANG,XueHui JIN
摘要:
【目的】检测黑龙江省稻瘟病菌(Magnaporthe oryzae)无毒基因AVR-Pib、AVR-Pik和AvrPiz-t在不同地区、年份间流行菌株的分布情况与变异机制,了解其等位基因的致病表型,为黑龙江省抗瘟品种布局提供参考依据。【方法】利用NCBI中公布的无毒基因序列对3个无毒基因AVR-Pib、AVR-Pik和AvrPiz-t的基因全长和编码序列(coding sequence,CDS)分别设计特异性引物,将2016年和2017年采自黑龙江省不同地区335个稻瘟病菌单孢分离菌株的DNA进行PCR扩增,通过琼脂糖凝胶电泳检测分析,并挑选不同带型和不同地区代表菌株的PCR产物进行测序。测序结果与相应无毒基因序列进行碱基与氨基酸序列的比较分析,并利用水稻抗性单基因系,对不同变异类型的稻瘟病菌菌株进行致病型测定。【结果】在PCR电泳检测中AVR-Pib、AVR-Pik和AvrPiz-t均出现特异性条带,说明这3个无毒基因在黑龙江省均有分布,并以不同分布频率与突变类型出现。3个无毒基因平均扩增频率分别为75.52%、87.16%和85.67%。其中AVR-Pib通过电泳检测与PCR产物测序检测出4种带型(无带、高带、中高带与低带)和5种变异类型AVR-Pib(1-1、1-2、2、3、3-1),基因型AVR-Pib-1-1、AVR-Pib-1-2、AVR-Pib-2和AVR-Pib-3-1为新发现的变异类型,其中基因型AVR-Pib-1-1和AVR-Pib-1-2均为转座子Pot2的插入,但插入位点不同;基因型AVR-Pib-2在阅读框上游存在小片段的插入;基因型AVR-Pib-3-1碱基序列与原序列比对有4处差异,即32(C/G)35(T/A)36(T/A)38(T/A),导致氨基酸翻译提前终止。对检测到的5种等位基因型进行致病型测定,分析发现除正常基因型AVR-Pib-3外,其他变异基因型无毒功能均已丧失。而AVR-Pik经PCR产物测序检测出7种等位基因型,AVR-Pik(D、A、B、C、E、F、F2),碱基序列的变化均导致氨基酸错义突变,7种等位基因型均已见报道。无毒基因AvrPiz-t通过电泳检测和PCR产物测序分析,发现2种带型(高带和正常带型)与4种基因型AvrPiz-t(A、B、C、D),其中AvrPiz-t-A为正常基因型;基因型AvrPiz-t-B在191位处有碱基A的插入,导致氨基酸翻译提前终止;基因型AvrPiz-t-C为新发现的等位基因型,其特点在于与A类型存在17(T/C)和19位处碱基C的插入,发生移码突变翻译提前终止;高带型对应的无毒基因型AvrPiz-t-D经测序验证为Pot3转座子的插入。4种基因型菌株分别接种水稻单基因系发现,AvrPiz-t-A可以被Piz-t识别表现无毒,AvrPiz-t(B、C、D)均不能被Piz-t所识别而表现为有毒性。【结论】黑龙江省稻瘟病菌无毒基因AVR-Pib、AVR-Pik和AvrPiz-t分布较为广泛,且变异类型丰富,研究结果可为选育和推广携带相应抗病基因的水稻品种提供参考。
孟峰,张亚玲,靳学慧,张晓玉,姜军. 黑龙江省稻瘟病菌无毒基因AVR-Pib、AVR-Pik和AvrPiz-t的检测与分析[J]. 中国农业科学, 2019, 52(23): 4262-4273.
MENG Feng,ZHANG YaLing,JIN XueHui,ZHANG XiaoYu,JIANG Jun. Detection and Analysis of Magnaporthe oryzae Avirulence Genes AVR-Pib, AVR-Pik and AvrPiz-t in Heilongjiang Province[J]. Scientia Agricultura Sinica, 2019, 52(23): 4262-4273.
表1
用于扩增稻瘟病菌无毒基因的引物"
无毒基因 Avirulence gene | 引物序列 Primer sequence (5′-3′) | 目的片段长度 Length of targeted fragments (bp) | 目的 Purpose |
---|---|---|---|
AVR-Pib | F1: AAGTCCTTCCCATTACCCTA R1: GCAATAACCATCCAGCCATA | 484 | 检测AVR-Pib CDS Detection of AVR-Pib CDS |
F2: GAAGTACCCACCCATAACCC R2: CAAGGGAGGCAAATCTAACC | 1147 | 检测AVR-Pib基因全长 Detection of AVR-Pib gene full length | |
AVR-Pik | F1: AATTTATTCAACTGCCACTCTG R1: AACCTCGTCAAACCTCCCTA | 526 | 检测AVR-Pik CDS Detection of AVR-Pik CDS |
F2: GACAAACAGGATGGGATT R2: AGGTCGTAGGTCGGAAAC | 1929 | 检测AVR-Pik基因全长 Detection of AVR-Pik gene full length | |
AvrPiz-t | F1: ATCAAATGAACACCAGGAA R1: CCAGCCGAAGATACAAAA | 450 | 检测AvrPiz-t CDS Detection of AvrPiz-t CDS |
F2: AATCTCCCAATGGTTCGC R2: AAAGTGGCTCGTTCCTAA | 1965 | 检测AvrPiz-t基因全长 Detection of AvrPiz-t gene full length |
表2
2016年和2017年黑龙江省稻瘟病菌无毒基因的扩增频率"
无毒基因 Avirulence gene | 2016(127 a) | 2017(208 b) | 总计Total(335 c) | |||
---|---|---|---|---|---|---|
出现个数 Number of occurrences | 出现频率 Frequency of occurrence (%) | 出现个数 Number of occurrences | 出现频率 Frequency of occurrence (%) | 出现个数 Number of occurrences | 出现频率 Frequency of occurrence (%) | |
AVR-Pib | 104 | 81.89 | 149 | 71.63 | 253 | 75.52 |
AVR-Pik | 105 | 82.68 | 187 | 89.90 | 292 | 87.16 |
AvrPiz-t | 111 | 87.40 | 176 | 84.62 | 287 | 85.67 |
[1] |
COUCH B C, KOHN L M . A multilocus gene genealogy concordant with host preference indicates segregation of a new species, Magnaporthe oryzae, from M. grisea. Mycologia, 2002,94(4):683-693.
doi: 10.1080/15572536.2003.11833196 pmid: 21156541 |
[2] | OU S H . Rice Diseases. 2nd ed. Kew, UK: Commonwealth Mycological Institute, 1985. |
[3] |
FLOR H H . Current status of the gene-for-gene concept. Annual Review of Phytopathology, 1971,9:275-296.
doi: 10.1146/annurev-phyto-072910-095339 pmid: 21599495 |
[4] |
MARCEL S, SAWERS R, OAKELEY E, ANGLIKER H, PASZKOWSKI U . Tissue-adapted invasion strategies of the rice blast fungus Magnaporthe oryzae. The Plant Cell, 2010,22(9):3177-3187.
doi: 10.1105/tpc.110.078048 pmid: 20858844 |
[5] |
LIU W, ZHOU X, LI G, LI L, KONG L, WANG C, ZHANG H, XU J R . Multiple plant surface signals are sensed by different mechanisms in the rice blast fungus for appressorium formation. PLoS Pathogens, 2011,7(1):e1001261.
doi: 10.1371/journal.ppat.1001261 pmid: 21283781 |
[6] |
MA J H, WANG L, FENG S J, LIN F, XIAO Y, PAN Q H . Identification and fine mapping of AvrPi15, a novel avirulence gene of Magnaporthe grisea. Theoretical and Applied Genetics, 2006,113(5):875-883.
doi: 10.1007/s00122-006-0347-6 |
[7] |
SWEIGARD J A, CARROLL A M, KANG S, FARRALL L, CHUMLEY F G, VALENT B . Identification, cloning, and characterization of PWL2, a gene for host species specificity in the rice blast fungus. The Plant Cell, 1995,7(8):1221-1233.
doi: 10.1105/tpc.7.8.1221 pmid: 7549480 |
[8] |
KANG S, SWEIGARD J A, VALENT B . The PWL host specificity gene family in the blast fungus Magnaporthe grisea. Molecular Plant-Microbe Interactions, 1995,8(6):939-948.
doi: 10.1094/mpmi-8-0939 pmid: 8664503 |
[9] |
ORBACH M J, FARRALL L, SWEIGARD J A, CHUMLEY F G, VALENT B . A telomeric avirulence gene determines efficacy for the rice blast resistance gene Pi-ta. The Plant Cell, 2000,12(11):2019-2032.
doi: 10.1105/tpc.12.11.2019 pmid: 11090206 |
[10] |
COLLEMARE J, PIANFETTI M, HOULLE A E, MORIN D, CAMBORDE L, GAGEY M J, BARBISAN C, FUDAL I, LEBRUN M H, BŐHNERT H U . Magnaporthe grisea avirulence gene ACE1 belongs to an infection-specific gene cluster involved in secondary metabolism. New Phytologist, 2008,179(1):196-208.
doi: 10.1111/j.1469-8137.2008.02459.x pmid: 18433432 |
[11] |
FARMAN M L, LEONG S A . Chromosome walking to the AVR1-CO39 avirulence gene of Magnaporthe grisea: discrepancy between the physical and genetic maps. Genetics, 1998,150(3):1049-1058.
pmid: 9799257 |
[12] |
LI W, WANG B, WU J, LU G, HU Y, ZHANG X, ZHANG Z G, ZHAO Q, ZHANG H Y, WANG Z Y, WANG G L, HAN B, WANG Z H, ZHOU B . The Magnaporthe oryzae avirulence gene AvrPiz-t encodes a predicted secreted protein that triggers the immunity in rice mediated by the blast resistance gene Piz-t. Molecular Plant-Microbe Interactions, 2009,22(4):411-420.
doi: 10.1094/MPMI-22-4-0411 pmid: 19271956 |
[13] |
YOSHIDA K, SAITOH H, FUJISAWA S, KANZAKI H, MATSUMURA H, YOSHIDA K, TOSA Y, CHUMA I, TAKANO Y, WIN J, KAMOUN S, TERAUCHI R . Association genetics reveals three novel avirulence genes from the rice blast fungal pathogen Magnaporthe oryzae. The Plant Cell, 2009,21(5):1573-1591.
doi: 10.1105/tpc.109.066324 pmid: 19454732 |
[14] |
WU J, KOU Y, BAO J, LI Y, TANG M, ZHU X, PONAYA A, XIAO G, LI J, LI C, SONG M Y, CUMAGUN C J, DENG Q, LU G, JEON J S, NAQVI N I, ZHOU B . Comparative genomics identifies the Magnaporthe oryzae avirulence effector Avr-Pi9 that triggers Pi9-mediated blast resistance in rice. New Phytologist, 2015,206(4):1463-1475.
doi: 10.1111/nph.13310 pmid: 25659573 |
[15] |
SCHNEIDER D R, SARAIVA A M, AZZONI A R, MIRANDA H R, DE TOLEDO M A, PELLOSO A C, SOUZA A P . Overexpression and purification of PWL2D, a mutant of the effector protein PWL2 from Magnaporthe grisea. Protein Expression and Purification, 2010,74(1):24-31.
doi: 10.1016/j.pep.2010.04.020 |
[16] |
ZHANG S, WANG L, WU W, HE L, YANG X, PAN Q . Function and evolution of Magnaporthe oryzae avirulence gene Avr-Pib responding to the rice blast resistance gene Pib. Scientific Reports, 2015,5:11642.
doi: 10.1038/srep11642 pmid: 26109439 |
[17] |
李祥晓, 王倩, 罗生香, 何云霞, 朱苓华, 周永力, 黎志康 . 黑龙江省稻瘟病菌无毒基因分析及抗病种质资源筛选. 作物学报, 2012,38(12):2192-2197.
doi: 10.3724/SP.J.1006.2012.02192 |
LI X X, WANG Q, LUO S X, HE Y X, ZHU L H, ZHOU Y L, LI Z K . Analyzing avirulence genes of Magnaporthe oryzae from Heilongjiang province and screening rice germplasm with resistance to blast fungus. Acta Agronomica Sinica, 2012,38(12):2192-2197. (in Chinese)
doi: 10.3724/SP.J.1006.2012.02192 |
|
[18] |
王世维, 郑文静, 赵家铭, 魏松红, 王妍, 赵宝海, 刘志恒 . 辽宁省稻瘟病菌无毒基因型鉴定及分析. 中国农业科学, 2014,47(3):462-472.
doi: 10.3864/j.issn.0578-1752.2014.03.006 |
WANG S W, ZHENG W J, ZHAO J M, WEI S H, WANG Y, ZHAO B H, LIU Z H . Identification and analysis of Magnaporthe oryzae avirulence genes in Liaoning Province. Scientia Agricultura Sinica, 2014,47(3):462-472. (in Chinese)
doi: 10.3864/j.issn.0578-1752.2014.03.006 |
|
[19] |
汪文娟, 苏菁, 杨健源, 韦小燕, 陈凯玲, 陈珍, 陈深, 朱小源 . 源于广8 A杂交稻组合的稻瘟病菌无毒基因型分析. 中国农业科学, 2018,51(24):4633-4646.
doi: 10.3864/j.issn.0578-1752.2018.24.005 |
WANG W J, SU J, YANG J Y, WEI X Y, CHEN K L, CHEN Z, CHEN S, ZHU X Y . Analysis of Magnaporthe oryzae avirulent genes in the infected hybrid rice combinations derived from a sterile line of Guang 8 A. Scientia Agricultura Sinica, 2018,51(24):4633-4646. (in Chinese)
doi: 10.3864/j.issn.0578-1752.2018.24.005 |
|
[20] | 刘华招, 刘延, 刘化龙, 徐正进, 陈温福 . 黑龙江省种植品种中稻瘟病抗性基因Pib和Pita的分布. 东北农业大学学报, 2011,42(4):27-31. |
LIU H Z, LIU Y, LIU H L, XU Z J, CHEN W F . Distribution of two rice blast resistance genes Pib and Pita in major rice cultivars in Heilongjiang Province in China. Journal of Northeast Agricultural University, 2011,42(4):27-31. (in Chinese) | |
[21] | 于连鹏 . 黑龙江省主栽水稻品种Pita、Pia和Piz-t抗瘟基因检测和抗性评价[D]. 大庆: 黑龙江八一农垦大学, 2017. |
YU L P . Pita, Pia and Piz-t genes detection and blast resistance evaluation of main rice varieties in Heilongjiang Province[D]. Daqing: Heilongjiang Bayi Agricultural University, 2017. (in Chinese) | |
[22] |
蒋金芬, 韩红萍, 梁友方 . 滤纸片法低温冷冻保存菌种的实验室应用. 中国公共卫生, 2006,22(3):310.
doi: 10.11847/zgggws2006-22-03-30 pmid: 19443872 |
JIANG J F, HAN H P, LIANG Y F . Laboratory application of filter paper method for cryopreservation. Chinese Journal of Public Health, 2006,22(3):310. (in Chinese)
doi: 10.11847/zgggws2006-22-03-30 pmid: 19443872 |
|
[23] | 连兆煌 . 无土栽培原理与技术. 北京: 农业出版社, 1994. |
LIAN Z H. Principles and Techniques of Soilless Cultivation. Beijing: Agriculture Press, 1994. (in Chinese) | |
[24] | 靳学慧, 马汇泉 . 农业植物病理学. 赤峰: 内蒙古科学技术出版社, 1999. |
JIN X H, MA H Q . Agricultural Plant Pathology. Chifeng: Inner Mongolia Science and Technology Press, 1999. (in Chinese) | |
[25] |
LONGYA A, CHAIPANYA C, FRANCESCHETTI M, MAIDMENT J H.R, BANFIELD M J, JANTASURIYARAT C, . Gene duplication and mutation in the emergence of a novel aggressive allele of the AVR-Pik effector in the rice blast fungus. Molecular Plant-Microbe Interactions, 2019,32(6):740-749.
doi: 10.1094/MPMI-09-18-0245-R pmid: 30601714 |
[26] | 孙强, 张三元, 张俊国, 杨春刚 . 东北水稻生产现状及对策. 北方水稻, 2010,40(2):72-74. |
SUN Q, ZHANG S Y, ZHANG J G, YANG C G . Current situation of rice production in northeast of China and countermeasures. North Rice, 2010,40(2):72-74. (in Chinese) | |
[27] | 时克, 雷财林, 程治军, 许兴涛, 王久林, 万建民 . 稻瘟病抗性基因Pita和Pib在我国水稻主栽品种中的分布. 植物遗传资源学报, 2009,10(1):21-26. |
SHI K, LEI C L, CHENG Z J, XU X T, WANG J L, WAN J M . Distribution of two blast resistance genes Pita and Pib in major rice cultivars in China. Journal of Plant Genetic Resources, 2009,10(1):21-26. (in Chinese) | |
[28] |
KANZAKI H, YOSHIDA K, SAITOH H, FUJISAKI H, HIRABUCHI A, ALAUX L, FOURNIER E, THARREAU D, TERAUCHI R . Arms race co-evolution of Magnaporthe oryzae Avr-Pik and rice Pik genes driven by their physical interactions. The Plant Journal, 2012,72(6):894-907.
doi: 10.1111/j.1365-313X.2012.05110.x pmid: 22805093 |
[29] | 姜华, 余欢, 王艳丽, 孙国昌 . 稻瘟病菌无毒基因序列变异研究进展. 浙江农业学报, 2015,27(3):512-520. |
JIANG H, YU H, WANG Y L, SUN G C . Progress on sequence variation of avirulence gene in the rice blast fungus Magnaporthe grisea. Acta Agriculturae Zhejiangensis, 2015,27(3):512-520. (in Chinese) | |
[30] |
ZHANG S, WANG L, WU W, HE L, YANG X, PAN Q . Function and evolution of Magnaporthe oryzae avirulence gene Avr-Pib responding to the rice blast resistance gene Pib. Scientific Reports, 2015,5:11642.
doi: 10.1038/srep11642 pmid: 26109439 |
[31] |
WU W H, WANG L, ZHANG S, LIANG Y Q, ZHENG X L, YI K X, HE C P . Assessment of sensitivity and virulence fitness costs of the AvrPik alleles from Magnaporthe oryzae to isoprothiolane. Genetics and Molecular Research, 2014,13(4):9701-9709.
doi: 10.4238/2014.November.24.1 |
[32] | 陈美莲 . 稻瘟病菌无毒基因AvrPiz-t的遗传变异分析[D]. 福州: 福建农林大学, 2014. |
CHEN M L . Genetic variation of avirulence gene AvrPiz-t in Magnaporthe oryzae[D]. Fuzhou: Fujian Agriculture and Forestry University, 2014. (in Chinese) | |
[33] | 刘殿宇 . 黑龙江省稻瘟病菌致病性与无毒基因检测及遗传多样性分析[D]. 大庆: 黑龙江八一农垦大学, 2017. |
LIU D Y . Pathogenicity avirulent gene detection and genetic diversity analysis of Magnaporthe oryzae in Heilongjiang Province[D]. Daqing: Heilongjiang Bayi Agricultural University, 2017. (in Chinese) |
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