Identification and fine mapping of qPBR10-1, a novel locus controlling panicle blast resistance in Pigm-containing P/TGMS line
暂无分享,去创建一个
Q. Gao | Yunyu Wu | Yuese Ning | Xiao-xiang Zhang | Ning Xiao | Aihong Li | Niansheng Huang | C. Liang | Jianju Liu | Yu-hong Li | Ling Yu | Yue Cai | C. Pan | Changhai Zhou | H. Ji | Wei Shi | Zichun Chen
[1] K. K. Chaturvedi,et al. Understanding Rice-Magnaporthe Oryzae Interaction in Resistant and Susceptible Cultivars of Rice under Panicle Blast Infection Using a Time-Course Transcriptome Analysis , 2021, Genes.
[2] Shenmin Zhang,et al. OsGF14b modulates defense signaling pathways in rice panicle blast response , 2020 .
[3] Xiaoyan Ning,et al. Strategy for Use of Rice Blast Resistance Genes in Rice Molecular Breeding , 2020 .
[4] H. Manojkumar,et al. Molecular profiling of blast resistance genes and evaluation of leaf and neck blast disease reaction in rice , 2020, Journal of Genetics.
[5] S. Sharma,et al. Identification and Characterization of a Large Effect QTL from Oryza glumaepatula Revealed Pi68(t) as Putative Candidate Gene for Rice Blast Resistance , 2020, Rice.
[6] Qun Li,et al. RRM Transcription Factors Interact with NLRs and Regulate Broad-Spectrum Blast Resistance in Rice. , 2019, Molecular cell.
[7] Lihuang Zhu,et al. Importance of OsRac1 and RAI1 in signalling of nucleotide-binding site leucine-rich repeat protein-mediated resistance to rice blast disease. , 2019, The New phytologist.
[8] Hongsheng Zhang,et al. Fine mapping of a panicle blast resistance gene Pb-bd1 in Japonica landrace Bodao and its application in rice breeding , 2019, Rice.
[9] Liang-bi Chen,et al. Identification of a specific molecular marker for the rice blast-resistant gene Pigm and molecular breeding of thermo-sensitive genic male sterile leaf-color marker lines , 2018, Molecular Breeding.
[10] Yi-chen Cheng,et al. QTL-Seq Identified a Major QTL for Grain Length and Weight in Rice Using Near Isogenic F2 Population , 2018 .
[11] Ping Li,et al. A Natural Allele of a Transcription Factor in Rice Confers Broad-Spectrum Blast Resistance , 2017, Cell.
[12] Chengzhi Liang,et al. Development and Evaluation of Near-Isogenic Lines with Different Blast Resistance Alleles at the Piz Locus in japonica Rice from the Lower Region of the Yangtze River, China. , 2017, Plant disease.
[13] T. Kroj,et al. Transposon-Mediated NLR Exile to the Pollen Allows Rice Blast Resistance without Yield Penalty. , 2017, Molecular plant.
[14] Ertao Wang,et al. Epigenetic regulation of antagonistic receptors confers rice blast resistance with yield balance , 2017, Science.
[15] H. Liu,et al. NBS-LRR Protein Pik-H4 Interacts with OsBIHD1 to Balance Rice Blast Resistance and Growth by Coordinating Ethylene-Brassinosteroid Pathway , 2017, Front. Plant Sci..
[16] Hongsheng Zhang,et al. Characterization and Fine Mapping of a Blast Resistant Gene Pi-jnw1 from the japonica Rice Landrace Jiangnanwan , 2016, PloS one.
[17] Jianhui Ji,et al. The Exonuclease Homolog OsRAD1 Promotes Accurate Meiotic Double-Strand Break Repair by Suppressing Nonhomologous End Joining1[OPEN] , 2016, Plant Physiology.
[18] M. Latif,et al. Molecular progress on the mapping and cloning of functional genes for blast disease in rice (Oryza sativa L.): current status and future considerations , 2016, Critical reviews in biotechnology.
[19] Chengzhi Liang,et al. Development of near-isogenic lines with different alleles of Piz locus and analysis of their breeding effect under Yangdao 6 background , 2016, Molecular Breeding.
[20] R. Kolodner,et al. Exonuclease 1-dependent and independent mismatch repair. , 2015, DNA repair.
[21] Xuebiao Pan,et al. Combination Patterns of Major R Genes Determine the Level of Resistance to the M. oryzae in Rice (Oryza sativa L.) , 2015, PloS one.
[22] Luyan Zhang,et al. QTL IciMapping: Integrated software for genetic linkage map construction and quantitative trait locus mapping in biparental populations , 2015 .
[23] Haiyang Wang,et al. Pi64, Encoding a Novel CC-NBS-LRR Protein, Confers Resistance to Leaf and Neck Blast in Rice. , 2015, Molecular plant-microbe interactions : MPMI.
[24] T. Hollis,et al. Exonuclease TREX1 degrades double-stranded DNA to prevent spontaneous lupus-like inflammatory disease , 2015, Proceedings of the National Academy of Sciences.
[25] C. Günther,et al. Familial chilblain lupus due to a novel mutation in the exonuclease III domain of 3' repair exonuclease 1 (TREX1). , 2015, JAMA dermatology.
[26] G. Mongiano,et al. Resistance to neck blast caused by Pyricularia oryzae in Italian rice cultivars , 2015, European Journal of Plant Pathology.
[27] Marion Russier,et al. Exonuclease Domain of the Lassa Virus Nucleoprotein Is Critical To Avoid RIG-I Signaling and To Inhibit the Innate Immune Response , 2014, Journal of Virology.
[28] Zhi-long Wang,et al. [Recent advances in understanding the innate immune mechanisms and developing new disease resistance breeding strategies against the rice blast fungus Magnaporthe oryzae in rice]. , 2014, Yi chuan = Hereditas.
[29] Kaworu Ebana,et al. Quantitative trait locus analysis of resistance to panicle blast in the rice cultivar Miyazakimochi , 2014, Rice.
[30] N. Hayashi,et al. Blast resistance of CC-NB-LRR protein Pb1 is mediated by WRKY45 through protein–protein interaction , 2013, Proceedings of the National Academy of Sciences.
[31] D. Schwartz,et al. Improvement of the Oryza sativa Nipponbare reference genome using next generation sequence and optical map data , 2013, Rice.
[32] J. Poland,et al. Development of High-Density Genetic Maps for Barley and Wheat Using a Novel Two-Enzyme Genotyping-by-Sequencing Approach , 2012, PloS one.
[33] S. Gupta,et al. Rice Blast Management Through Host-Plant Resistance: Retrospect and Prospects , 2012, Agricultural Research.
[34] M. Yano,et al. Durable panicle blast-resistance gene Pb1 encodes an atypical CC-NBS-LRR protein and was generated by acquiring a promoter through local genome duplication. , 2010, The Plant journal : for cell and molecular biology.
[35] K. Shimamoto,et al. Activation of a Rac GTPase by the NLR family disease resistance protein Pit plays a critical role in rice innate immunity. , 2010, Cell host & microbe.
[36] Richard Durbin,et al. Sequence analysis Fast and accurate short read alignment with Burrows – Wheeler transform , 2009 .
[37] Pari Skamnioti,et al. Against the grain: safeguarding rice from rice blast disease. , 2009, Trends in biotechnology.
[38] K. Joshi,et al. Leaf and neck blast resistance reaction in tropical rice lines under green house condition , 2009, Euphytica.
[39] Ji Huang,et al. Expression analysis of rice A20/AN1-type zinc finger genes and characterization of ZFP177 that contributes to temperature stress tolerance. , 2008, Gene.
[40] Y. Cho,et al. A novel gene, Pi40(t), linked to the DNA markers derived from NBS-LRR motifs confers broad spectrum of blast resistance in rice , 2007, Theoretical and Applied Genetics.
[41] Edward S. Buckler,et al. TASSEL: software for association mapping of complex traits in diverse samples , 2007, Bioinform..
[42] S. Nelson,et al. C-terminal truncations in human 3′-5′ DNA exonuclease TREX1 cause autosomal dominant retinal vasculopathy with cerebral leukodystrophy , 2007, Nature Genetics.
[43] J. Lieberman,et al. Mutations in the gene encoding the 3′-5′ DNA exonuclease TREX1 are associated with systemic lupus erythematosus , 2007, Nature Genetics.
[44] Jing Zhao,et al. The Expression Pattern of a Rice Disease Resistance Gene Xa3/Xa26 Is Differentially Regulated by the Genetic Backgrounds and Developmental Stages That Influence Its Function , 2007, Genetics.
[45] M. Dolan,et al. The eight amino-acid differences within three leucine-rich repeats between Pi2 and Piz-t resistance proteins determine the resistance specificity to Magnaporthe grisea. , 2006, Molecular plant-microbe interactions : MPMI.
[46] Xu-dong Zhu,et al. Genetic characterization and fine mapping of the blast resistance locus Pigm(t) tightly linked to Pi2 and Pi9 in a broad-spectrum resistant Chinese variety , 2006, Theoretical and Applied Genetics.
[47] B. Han,et al. The Broad-Spectrum Blast Resistance Gene Pi9 Encodes a Nucleotide-Binding Site–Leucine-Rich Repeat Protein and Is a Member of a Multigene Family in Rice , 2006, Genetics.
[48] Cathryn J. Rehmeyer,et al. The genome sequence of the rice blast fungus Magnaporthe grisea , 2005, Nature.
[49] L. Symington,et al. EXO1-A multi-tasking eukaryotic nuclease. , 2004, DNA repair.
[50] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[51] H. Leung,et al. OsGF14b Positively Regulates Panicle Blast Resistance but Negatively Regulates Leaf Blast Resistance in Rice. , 2016, Molecular plant-microbe interactions : MPMI.
[52] Jindong Liu,et al. TaTGW6-A1, an ortholog of rice TGW6, is associated with grain weight and yield in bread wheat , 2015, Molecular Breeding.
[53] Dai Liang-ying,et al. Advances on the identification and characterization of broadspectrum blast resistance genes in rice , 2007 .
[54] R. Zeigler,et al. Phenotypic characterization of the rice blast resistance gene Pi-2(t) , 1996 .
[55] D. Mackill,et al. Inheritance of Blast Resistance in Near-Isogenic Lines of Rice , 1992 .
[56] Thomas D. Schmittgen,et al. Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2 2 DD C T Method , 2022 .