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Induction of avirulence by AVR-Pita1 in virulent U.S. field isolates of Magnaporthe oryzae’ 被引量:2
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作者 Yuntao Dai Eugenia Winston +1 位作者 James C.Correll Yulin Jia 《The Crop Journal》 SCIE CAS 2014年第1期1-9,共9页
The AVR-Pita1 gene,from the Chinese isolate O-137 of Magnaporthe oryzae,is an effector that determines the efficacy of the Pi-ta rice blast resistance gene.In the present study,the avirulence function of AVR-Pita1 was... The AVR-Pita1 gene,from the Chinese isolate O-137 of Magnaporthe oryzae,is an effector that determines the efficacy of the Pi-ta rice blast resistance gene.In the present study,the avirulence function of AVR-Pita1 was induced by transformation of field isolates(TM2,ZN19,B2 and B8)that originally were collected from the U.S.and are virulent on Pi-ta-carrying rice cultivars.The presence of AVR-Pita1 from O-137 in independent transformants was detected by PCR using AVR-Pita1 specific primers and verified by DNA sequencing and Southern blot analysis using the AVR-Pita1 coding region as a probe.The results of pathogenicity assays showed that the AVR-Pita1-transformed isolates were not able to infect rice cultivars Katy and Drew carrying Pi-ta.Control isolates that were transformed with inserts lacking the AVR-Pita1gene remained virulent.Our findings demonstrate that AVR-Pita1 can be used to induce novel gene-specific blast resistance in nature. 展开更多
关键词 avirulence gene AVR-Pita1 Pi-ta RICE BLAST resistance
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Association Analysis of SP-SNPs and Avirulence Genes in Puccinia striiformis f. sp. tritici, the Wheat Stripe Rust Pathogen 被引量:2
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作者 Chongjing Xia Meinan Wang +3 位作者 Anmin Wan Derick A. Jiwan Deven R. See Xianming Chen 《American Journal of Plant Sciences》 2016年第1期126-137,共12页
Puccinia striiformis f. sp. tritici (Pst) is one of the pathogenic fungi on wheat, caused stripe rust that is a great threat for wheat production all over the world. Intensive efforts have been made to study genetics ... Puccinia striiformis f. sp. tritici (Pst) is one of the pathogenic fungi on wheat, caused stripe rust that is a great threat for wheat production all over the world. Intensive efforts have been made to study genetics of wheat resistance to this disease, but few on avirulence of the pathogen due mainly to the nature of obligate biotrophism and the lack of systems for studying its genetics and molecular manipulations. To overcome these limitations, a natural Pst population comprising 352 isolates representative of a diverse virulence spectrum was genotyped using 97 secreted protein-single nucleotide polymorphism (SP-SNP) markers to identify candidate avirulence genes using association analysis. Among avirulence genes corresponding to 19 resistance genes, significantly associated SP-SNP markers were detected for avirulence genes AvYr1, AvYr2, AvYr6, AvYr7, AvYr8, AvYr44, AvYrExp2, AvYrSP, and AvYrTye. These results indicate that association analysis can be used to identify markers for avirulence genes. This study has laid the foundation for developing more SP-SNPs for mapping avirulence genes using segregating populations that can be generated through sexual reproduction on alternate hosts of the pathogen. 展开更多
关键词 Puccinia striiformis f. sp. tritici Wheat Stripe Rust avirulence Genes Secreted Proteins Single Nucleotide Polymorphism Association Analysis
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Geographic Distribution of Avirulence Genes in Rice Blast Fungusin Yunnan Province,China 被引量:3
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作者 李进斌 杨静 +4 位作者 刘林 何汉明 何霞红 朱有勇 李成云 《Journal of Resources and Ecology》 CSCD 2011年第2期181-185,共5页
Knowledge of the geographic distribution and frequency of avirulence genes will contribute to the development of strategies to effectively use rice varieties that carry various resistances genes, including combination... Knowledge of the geographic distribution and frequency of avirulence genes will contribute to the development of strategies to effectively use rice varieties that carry various resistances genes, including combinations of varieties in mixture cropping systems. Here, we analyzed the geographic distribution and frequencies of avirulence genes in rice blast fungus using samples collected from 11 prefectures across Yunnan province, China. A total of 467 single spore isolates were assayed for pathotypes based on their reaction to 20 rice blast resistance monogenic lines. The results revealed that frequencies of avirulence genes among 10 prefectures showed insignificant difference, but frequencies of avirulenee genes in Xishuangbanna showed significant differences compared to the remaining 10 prefectures. The avirulence genes Avr-Pi9, Avr-Piz and Avr-Pizt were observed at the highest frequency in blast isolates from the 11 prefectures; their average frequency was greater than 80%. Our results imply that the composition and distribution of rice genetic diversity are more important than climate and other environment conditions for formation and maintenance of rice blast fungus genetic diversity. Using average frequencies, the avirulence genes can be categorized into 4 groups. There were significant differences of frequencies of avirulence genes among different groups, while insignificant differences observed within any group. These results will provide useful information for evaluation of resistance genes and effective management of rice blast disease. 展开更多
关键词 Magnaporthe grisea avirulence gene rice monogenic line FREQUENCY geographic distribution
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Identification of an avirulence gene,avrxa5,from the rice pathogen Xanthomonas oryzae pv.oryzae 被引量:9
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作者 ZOU HuaSong ZHAO WenXiang +3 位作者 ZHANG XiFu HAN YangChun ZOU LiFang CHEN GongYou 《Science China(Life Sciences)》 SCIE CAS 2010年第12期1440-1449,共10页
Xanthomonas oryzae pv.oryzae,the causal agent of bacterial blight in rice,interacts with rice plants in a gene-for-gene manner.The specificity of the interaction is dictated by avirulence(avr) genes in the pathogen an... Xanthomonas oryzae pv.oryzae,the causal agent of bacterial blight in rice,interacts with rice plants in a gene-for-gene manner.The specificity of the interaction is dictated by avirulence(avr) genes in the pathogen and resistance(R) genes in the host.To date,no avr genes that correspond to recessive R genes have been isolated.We isolated an avrBs3/pthA family gene,avrxa5,from our previously isolated clone p58,which was originally from strain JXOIII.The avrxa5 gene converted the PXO99A strain from compatible to incompatible in rice cultivars containing the recessive xa5 gene,but not in those containing the dominant Xa5 gene.Sequencing indicated that avrxa5,which is highly similar to members of the avrBs3/pthA family,encodes a protein of 1238 amino acid residues with a conserved carboxy-terminal region containing three nuclear localization signals and a transcription activation domain.It has 19.5 34-amino-acid direct repeats,but the 13th amino acid is missing in the fifth and ninth repetitive units.Domain swapping of the repetitive regions between avrxa5 and avrXa7 changed the avirulence specificity of the genes in xa5 and Xa7 rice lines,respectively.This indicates that avrxa5 is distinct from previously characterized avrBs3/pthA members.The specificity of avrxa5 toward recessive xa5 in rice could help us better understand the molecular mechanisms of plant-pathogen specific interactions. 展开更多
关键词 rice bacterial blight Xanthomonas oryzae pv.oryzae avrxa5 avirulence recessive resistance
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Comments on “Determination of heterozygosity for avirulence/virulence loci through sexual hybridization of Puccinia striiformis f. sp. tritici”
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作者 Ralf T.Voegele 《Frontiers of Agricultural Science and Engineering》 2017年第1期121-122,共2页
Over the past decades Puccinia striiformis f.sp.tritici(Pst)has developed into one of the most,if not the most important fungal pathogen in wheat production worldwide.In China,Pst has caused numerous epidemics with ... Over the past decades Puccinia striiformis f.sp.tritici(Pst)has developed into one of the most,if not the most important fungal pathogen in wheat production worldwide.In China,Pst has caused numerous epidemics with partially devastating yield losses[1].The occurrence of the'warrior'race in Europe in 2011 also caused significant problems[2].Pst,like other obligate biotrophs,is characterized by a high degree of genetic variability,especially with respect 展开更多
关键词 tritici sp Comments on Determination of heterozygosity for avirulence/virulence loci through sexual hybridization of Puccinia striiformis f
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The arms race between Magnaporthe oryzae and rice: Diversity and interaction of Avr and R genes 被引量:49
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作者 WANG Bao-hua Daniel J.Ebbole WANG Zong-hua 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第12期2746-2760,共15页
Rice blast disease, caused by Magnaporthe oryzae, threatens global food security. The rice blast pathosystem is a longstanding model system for understanding plant-microbe interactions. In order to elucidate the coevo... Rice blast disease, caused by Magnaporthe oryzae, threatens global food security. The rice blast pathosystem is a longstanding model system for understanding plant-microbe interactions. In order to elucidate the coevolution of the host and pathogen, and provide the appropriate methods for preventing or controlling rice blast disease, researchers have focused on the evolution of virulence factors and resistance genes. Thus far, more than 30 rice blast resistance(R) genes and 12 avirulence(Avr) genes have been cloned. This review summarizes the cloned rice blast R genes, cloned Avr genes of M. oryzae and the interaction between them. This discussion also considers some of the major unanswered questions concerning this pathosystem and the opportunities for future investigations. 展开更多
关键词 RICE Maganporthe oryzae resistance gene avirulence gene CO-EVOLUTION genetic diversity
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The Magnaporthe oryzae effector Avr-PikD suppresses rice immunity by inhibiting an LSD1-like transcriptional activator 被引量:3
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作者 Jiayuan Guo Yiling Wu +8 位作者 Jianqiang Huang Kaihui Yu Meilian Chen Yijuan Han Zhenhui Zhong Guodong Lu Yonghe Hong Zonghua Wang Xiaofeng Chen 《The Crop Journal》 SCIE CSCD 2024年第2期482-492,共11页
Avirulence effectors(Avrs),encoded by plant pathogens,can be recognized by plants harboring the corresponding resistance proteins,thereby initiating effector-triggered immunity(ETI).In susceptible plants,however,Avrs ... Avirulence effectors(Avrs),encoded by plant pathogens,can be recognized by plants harboring the corresponding resistance proteins,thereby initiating effector-triggered immunity(ETI).In susceptible plants,however,Avrs can function as effectors,facilitating infection via effector-triggered susceptibility(ETS).Mechanisms of Avr-mediated ETS remain largely unexplored.Here we report that the Magnaporthe oryzae effector Avr-PikD enters rice cells via the canonical cytoplasmic secretion pathway and suppresses rice basal defense.Avr-PikD interacts with an LSD1-like transcriptional activator AKIP30 of rice,and AKIP30 is also a positive regulator of rice immunity,whereas Avr-PikD impedes its nuclear localization and suppresses its transcriptional activity.In summary,M.oryzae delivers Avr-PikD into rice cells to facilitate ETS by inhibiting AKIP30-mediated transcriptional regulation of immune response against M.oryzae. 展开更多
关键词 Magnaporthe oryzae avirulence effector Avr-PikD Effector-triggered susceptibility Rice immunity Transcriptional activator
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Analysis of the diversity and function of the alleles of the rice blast resistance genes Piz-t, Pita and Pik in 24 rice cultivars 被引量:1
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作者 WANG Yan ZHAO Jia-ming +6 位作者 ZHANG Li-xia WANG Ping WANG Shi-wei WANG Hui WANG Xiao-xi LIU Zhi-heng ZHENG Wen-jing 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第7期1423-1431,共9页
Understanding the sequence diversity of rice blast resistance genes is important for breeding new resistant rice cultivars against the rice blast fungusMagnaporthe oryzae. In this study, we selected 24 rice cultivars ... Understanding the sequence diversity of rice blast resistance genes is important for breeding new resistant rice cultivars against the rice blast fungusMagnaporthe oryzae. In this study, we selected 24 rice cultivars with different genetic back-grounds to study the alelic diversity of rice blast resistance genesPiz-t, Pitaand Pik. For Piz-t, a total of 17 alelic types were found within the 24 cultivars. Blast inoculations showed that most of the mutations can affect the function of the resistance gene. For Pita, except for the difference at the 918th amino acid, a majority of the 21 mutations were detected among the cultivars. Inoculations with blast isolates carryingAvr-Pita revealed that cultivars with mutations in other sites except for the 918th amino acid did not affect the function of thePita gene. ForPik, a total of six alelic types were found within the 24 cultivars, but ifve of them lost the function of the resistance gene. In addition, we found thatPiz-t, Pita and Pik were expressed constitutively in the 24 rice cultivars and the expression level was not related to resistance. Our results have provided the sequence diversity information of the resistance genesPiz-t, Pita and Pik among the popular rice cultivars grown in the northeast region of China. Keywords:resistance gene, avirulence gene, aleles, function, genetic evolution zae(M. oryzae), is one of the most destructive diseases in rice production worldwide. Over the years, comprehensive studies on rice blast resistance have been conducted (Silue et al. 1992). The resistance in newly cultivated rice cultivars to M. oryzae can be lost quickly due to the high level of instability in the genome of the fungus (Bonmanet al. 1992). Previous studies show that cultivars with durable and broad-spectrum resistance againstM. oryzae carry multiple major resistance (R) and minor resistance genes (Liuet al. 2014). An effective way to control rice blast disease is, therefore, to breed rice cultivars with multiple R and QTL genes. To date, over 83 rice blast R genes have been identiifed, and are distributed on 11 rice chromosomes except Received 22 May, 2015 Accepted 26 October, 2015 WANG Yan, E-mail: 8806wy@163.com; Correspondence LIU Zhi-heng, Tel: +86-24-23738857, E-mail: lzhh1954@163.com; ZHENG Wen-jing, Tel: +86-24-31021081, E-mail: zwj27@126. com *These authors contributed equaly to this study. ? 2016, CAAS. Al rights reserved. Published by Elsevier Ltd. doi: 10.1016/S2095-3119(15)61207-2 1. Introduction Rice blast disease, caused by the fungusMagnaporthe ory- 展开更多
关键词 resistance gene avirulence gene aleles FUNCTION genetic evolution
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Comparative analysis of the genome of the field isolate V86010 of the rice blast fungus Magnaporthe oryzae from Philippines 被引量:1
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作者 ZHU Kun-peng BAO Jian-dong +8 位作者 ZHANG Lian-hu YANG Xue LI Yuan ZHU Ming-hui LIN Qing-yun ZHAO Ao ZHAO Zhen ZHOU Bo LU Guo-dong 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第10期2222-2230,共9页
Genome dynamics of pathogenic organisms are driven by plant host and pathogenic organism co-evolution, in which patho- gen genomes areused to overcome stresses imposed by hosts with various genetic backgrounds through... Genome dynamics of pathogenic organisms are driven by plant host and pathogenic organism co-evolution, in which patho- gen genomes areused to overcome stresses imposed by hosts with various genetic backgrounds through generation of a range of field isolates. This model also applies to the rice host and its fungal pathogen Magnaporthe oryzae. To better understand genetic variation of M. oryzae in nature, the field isolate V86010 from the Philippines was sequenced and ana- lyzed. Genome annotation found that the assembled V86010 genome was composed of 1 931 scaffolds with a combined length of 38.9 Mb. The average GC ratio is 51.3% and repetitive elements constitute 5.1% of the genome. A total of 11 857 genes including 616 effector protein genes were predicted using a combined analysis pipeline. All predicted genes and effector protein genes of isolate V86010 distribute on the eight chromosomes when aligned with the assembled genome of isolate 70-15. Effector protein genes are located disproportionately at several chromosomal ends. The Pot2 elements are abundant in V86010. Seven V86010-specific effector proteins were found to suppress programmed cell death induced by BAX in tobacco leaves using an Agrobacterium-mediated transient assay. Our results may provide useful information for further study of the molecular and genomic dynamics in the evolution of M. oryzae and rice host interactions, and for characterizing novel effectors and AVR genes in the rice blast pathogen. 展开更多
关键词 Magnaporthe oryzae genetic variation comparative genomics EFFECTORS avirulence genes
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Development of elite rice with broad-spectrum resistance through pyramiding of key resistance gene and simultaneously editing multiple susceptibility genes 被引量:2
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作者 Hui Tao Ning Xiao +10 位作者 Ruyi Wang Feng He Yue Cai Su Jiang Min Wang Dan Wang Huamin Chen Xiaoman You Aihong Li Guo-Liang Wang Yuese Ning 《Journal of Integrative Plant Biology》 2025年第7期1691-1693,共3页
Crop varieties with broad-spectrum resistance(BSR)are highly beneficial,as they provide resistance against the majority of races within the same species of pathogen or even across multiple pathogen species(Li et al.,2... Crop varieties with broad-spectrum resistance(BSR)are highly beneficial,as they provide resistance against the majority of races within the same species of pathogen or even across multiple pathogen species(Li et al.,2020).Plant breeders usually introduce dominant resistance(R)genes in their breeding programs.However,these genes often recognize cognate avirulence effectors,resulting in race-specific resistance against a single or few pathogen strains(Li et al.,2019,2020).Recent studies have suggested that disabling some susceptibility(S)genes in elite cultivars could significantly enhance quantitative resistance,but the level of resistance is much less than qualitative resistance(van Schie and Takken,2014;Tao et al.,2021;Gao et al.,2024).Therefore,combining R gene stacks with S genes editing may represent an excellent strategy for achieving BSR and durable resistance(Deng et al.,2020;Jones et al.,2024). 展开更多
关键词 EDITING race specific resistance key resistance gene susceptibility genes recognize cognate avirulence effectorsresulting durable resistance broad spectrum resistance PYRAMIDING
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The E3 ubiquitin ligase OsRGLG5 targeted by the Magnaporthe oryzae effector AvrPi9 confers basal resistance against rice blast 被引量:7
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作者 Zhiquan Liu Jiehua Qiu +4 位作者 Zhenan Shen Congcong Wang Nan Jiang Huanbin Shi Yanjun Kou 《Plant Communications》 SCIE CSCD 2023年第5期309-323,共15页
Rice blast,caused by Magnaporthe oryzae,is one of the most devastating diseases of rice.During infection,M.oryzae secretes effectors to facilitate blast development.Among these effectors,the avirulence factor AvrPi9 i... Rice blast,caused by Magnaporthe oryzae,is one of the most devastating diseases of rice.During infection,M.oryzae secretes effectors to facilitate blast development.Among these effectors,the avirulence factor AvrPi9 is recognized by Pi9,a broad-spectrum blast resistance protein that triggers Pi9-mediated resistance in rice.However,little is known about the interaction between AvrPi9 and Pi9 and how AvrPi9 exerts virulence to promote infection.In this study,we found that ectopic expression of AvrPi9 in the Pi9-lacking cultivar TP309 suppressed basal resistance against M.oryzae.Furthermore,we identified an AvrPi9-interacting protein in rice,which we named OsRGLG5,encoding a functional RING-type E3 ubiquitin ligase.During infection,AvrPi9 was ubiquitinated and degraded by OsRGLG5.Meanwhile,AvrPi9 affected the stability of OsRGLG5.Infection assays revealed that OsRGLG5 is a positive regulator of basal resistance against M.oryzae,but it is not essential for Pi9-mediated blast resistance in rice.In conclusion,our results revealed that OsRGLG5 is targeted by the M.oryzae effector AvrPi9 and positively regulates basal resistance against rice blast. 展开更多
关键词 Oryza sativa disease resistance avirulence factor rice-Magnaporthe oryzae interaction plant defense
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Pm6 from Triticum timopheevii encodes an NLR receptor that directly recognizes AvrPm6 to confer powdery mildew resistance in wheat
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作者 Zongkuan Wang Jingzhong Xie +12 位作者 Huajian Zhang Jianpeng Zhang Fei He Baofeng Cui Jaroslav Dolezel Xingxing Cai Zijun Ding Qiaoling Luo István Molnár Jin Xiao Haiyan Wang Wei Wang Xiue Wang 《Molecular Plant》 2025年第12期2040-2044,共5页
Wheat powdery mildew(Pm),caused by biotrophic fungus Blumeria graminis f.sp.tritici(Bgt),remains a major threat to global wheat production.While over 70 Pm resistance loci have been identified,only a few have been eff... Wheat powdery mildew(Pm),caused by biotrophic fungus Blumeria graminis f.sp.tritici(Bgt),remains a major threat to global wheat production.While over 70 Pm resistance loci have been identified,only a few have been effectively deployed in breeding programs,mainly due to rapid pathogen evolution(Kunz et al.,2023).Cloning Pm resistance genes will facilitate the elucidation of Pm resistance mechanisms at the molecular level and their effective utilization in wheat breeding.Recent advances in wheat genomics have accelerated the cloning of 22 Pm genes,predominantly encoding nucleotide-binding leucine-rich repeat recoptor(NLR)proteins(Ma et al.,2024).Five Bgt avirulent(Avr)genes(AvrPm1,AvrPm2,AvrPm3,AvrPm8,and AvrPm17)have been cloned,all encoding Y/F/WxC-motif-containing proteins(Muller et al.,2022).However,the molecular mechanisms underlying most cloned Pm genes remain largely uncharacterized. 展开更多
关键词 NLR receptor powdery mildew pm resistance loci Blumeria graminis f.sp.tritici powdery mildew pm caused elucidation pm resistance mechanisms avirulence gene biotrophic fungus blumeria graminis
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