"Review Article: High-Temperature Adult-Plant Resistance, Key for Sustainable Control of Stripe Rust"
written by Xianming Chen,
published by American Journal of Plant Sciences, Vol.4 No.3, 2013
has been cited by the following article(s):
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[13] A large‐scale genomic association analysis identifies the candidate causal genes conferring stripe rust resistance under multiple field environments
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[14] Genome-wide association studies in diverse spring wheat panel for Stripe, Stem and Leaf rust resistance
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[16] Genetic mapping and utilization analysis of stripe rust resistance genes in a Tibetan wheat (Triticum aestivum L.) landrace Qubaichun
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[17] Abiotic and Biotic Stresses Interaction in Fabaceae Plants. Contributions from the Grain Legumes/Soilborne Vascular Diseases/Drought Stress Triangle
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[18] Weather-based predictive modeling of wheat stripe rust infection in Morocco
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[19] Mapping of Stripe Rust and Leaf Rust Resistance Quantitative Trait Loci in the Chinese Spring Wheat Line Mianyang351-15
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[20] Integrated Management of Stripe Rust and Overwintering of Puccinia striiformis f. sp. tritici in Wisconsin
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[21] Advanced Genomics and Breeding Tools to Accelerate the Development of Climate Resilient Wheat
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[22] Fine mapping of high-temperature adult-plant resistance to stripe rust in wheat cultivar Louise
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[23] Identification of Stripe Rust Resistance Loci in US Spring Wheat Cultivars and Breeding Lines Using Genome-wide Association Mapping and Yr Gene Markers
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[24] Genome Wide Association Study of Resistance to PstS2 and Warrior Races of Stripe (Yellow) Rust in Bread Wheat Landraces
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[25] Genome‐wide mapping of resistance to stripe rust caused by Puccinia striiformis f. sp. tritici in hexaploid winter wheat
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[26] Research Advances in Wheat Breeding and Genetics for Stripe Rust Resistance
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[29] Susceptibility of Winter Wheat and Triticale to Yellow Rust Influenced by Complex Interactions between Vernalisation, Temperature, Plant Growth Stage and Pathogen …
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[32] Molecular cytogenetic characterization of wheat–Elymus repens chromosomal translocation lines with resistance to Fusarium head blight and stripe rust
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[35] Inheritance of Virulence and Linkages of Virulence Genes in an Ethiopian Isolate of the Wheat Stripe Rust Pathogen (Puccinia striiformis f. sp. tritici) Determined Through …
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[36] TaRPM1 positively regulates wheat high-temperature seedling-plant resistance to Puccinia striiformis f. sp. tritici
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[39] TaXa21, a Leucine-Rich Repeat Receptor-Like Kinase Gene Associated with TaWRKY76 and TaWRKY62, Plays Positive Roles in Wheat High-Temperature …
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[40] Evaluation of Stripe Rust Resistance in Hungarian Winter Wheat Cultivars in China
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[41] Genome-wide mapping for stripe rust resistance loci in common wheat cultivar Qinnong 142
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[42] Improved Evaluation of Wheat Cultivars (Lines) on Resistance to Puccinia striiformis f. sp. tritici Using Molecular Disease Index
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[43] Genome-Wide Linkage Mapping Reveals Stripe Rust Resistance in Common Wheat (Triticum aestivum) cv. Xinong1376
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[44] Whole-Genome Mapping of Stripe Rust Resistance Quantitative Trait Loci and Race Specificity Related to Resistance Reduction in Winter Wheat Cultivar Eltan
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[48] Genome-wide mapping of adult plant stripe rust resistance in wheat cultivar Toni
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[49] Point Inoculation Method for Measuring Adult Plant Response of Wheat to Stripe Rust Infection
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[52] Phenotyping Kariega× Avocet S doubled haploid lines containing individual and combined adult plant stripe rust resistance loci
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[53] Identification of a new source of stripe rust resistance Yr82 in wheat
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[54] Esra Alwan1, Deven See2, Xianming Chen2, Sheri Rynearson1, and Michael Pumphrey1
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[57] Transfer of leaf rust and stripe rust resistance genes Lr19 and Yr15 in to a susceptible wheat cultivar HS295
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[58] Pumphrey1
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[59] Identification of QTLs for Stripe Rust Resistance in a Recombinant Inbred Line Population
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[60] Genome-wide association study of resistance to stripe rust (Puccinia striiformis f. sp. tritici) in Sichuan wheat
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[61] Genome-Wide Association Study for Adult-Plant Resistance to Stripe Rust in Chinese Wheat Landraces (Triticum aestivum L.) From the Yellow and Huai River Valleys
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[62] Identification and validation of a novel major QTL for all-stage stripe rust resistance on 1BL in the winter wheat line 20828
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[63] Genetic Characterization of Stripe Rust and Yield Traits in Bread Wheat
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[64] A major QTL co-localized on chromosome 6BL and its epistatic interaction for enhanced wheat stripe rust resistance
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[65] QTL analysis of durable stripe rust resistance in the North American winter wheat cultivar Skiles
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[66] SNP-based linkage mapping for validation of adult plant stripe rust resistance QTL in common wheat cultivar Chakwal 86
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[67] Utilization of the Genome-wide Wheat55K SNP Array for Genetic Analysis of Stripe Rust Resistance in Common Wheat Line P9936
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[69] Genetic analysis of stripe rust resistance in a set of European winter wheat genotypes
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[113] Vazquez MBotanyPlantPathologyMulti-LocationWheat. pdf
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[132] Saturation Mapping of a Major Effect QTL for Stripe Rust Resistance on Wheat Chromosome 2B in Cultivar Napo 63 Using SNP Genotyping Arrays
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[137] Effect of Plant Age and Leaf Position on Susceptibility to Wheat Stripe Rust
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[138] Changes of Races and Virulence Genes in Puccinia striiformis f. sp. tritici, the Wheat Stripe Rust Pathogen, in the United States from 1968 to 2009
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[140] Wheat transcription factor TaWRKY70 is positively involved in high‐temperature seedling plant resistance to Puccinia striiformis f. sp. tritici
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[142] Molecular mapping of a stripe rust resistance gene in Chinese wheat landrace “Hejiangyizai” using SSR, RGAP, TRAP, and SRAP markers
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[143] Genome-wide association mapping for seedling and field resistance to Puccinia striiformis f. sp. tritici in elite durum wheat
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[144] Dynamics of Zymoseptoria tritici Fungicide Resistance in the Willamette Valley of Oregon
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[145] Comparison of cell death and accumulation of reactive oxygen species in wheat lines with or without Yr36 responding to Puccinia striiformis f. sp. tritici under low …
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[147] Transfer And Molecular Characterization Of Aegilops Triuncialis Leaf Rust And Powdery Mildew Resistance Genes In Triticum Aestivum L. Background
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[148] Genetic architecture of resistance to stripe rust in a global winter wheat germplasm collection
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[149] Temporal Dynamics and Spatial Variation of Azoxystrobin and Propiconazole Resistance in Zymoseptoria tritici: A Hierarchical Survey of Commercial Winter Wheat …
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[150] Evaluation of 19,460 Wheat Accessions Conserved in the Indian National Genebank to Identify New Sources of Resistance to Rust and Spot Blotch Diseases
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[152] Role of Alternate Hosts in Epidemiology and Pathogen Variation of Cereal Rusts
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[153] Genome wide association mapping of stripe rust resistance in Afghan wheat landraces
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[154] Stripe rust resistance in wheat breeding lines developed for central Shaanxi, an overwintering region for Puccinia striiformis f. sp. tritici in China
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[155] Novel QTL for Stripe Rust Resistance on Chromosomes 4A and 6B in Soft White Winter Wheat Cultivars
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[156] Wheat transcription factor TaWRKY70 is positively involved in high‐temperature seedling‐plant resistance to Puccinia striiformis f. sp. tritici
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[158] Molecular mapping of stripe rust resistance gene YrJ22 in Chinese wheat cultivar Jimai 22
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[160] Transcriptome Analysis Provides Insights into the Mechanisms Underlying Wheat Plant Resistance to Stripe Rust at the Adult Plant Stage
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[161] High-temperature adult-plant resistance to stripe rust in facultative winter wheat
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[162] Inheritance and molecular mapping of an all-stage stripe rust resistance gene derived from the Chinese common wheat landrace 'Yilongtuomai'
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[163] Molecular Mapping of Stripe Rust Resistance Gene Yr76 in Winter Club Wheat Cultivar Tyee
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[164] Mapping of stripe rust resistance gene in an Aegilops caudata introgression line in wheat and its genetic association with leaf rust resistance
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[165] Virulence and Molecular Characterization of Experimental Isolates of the Stripe Rust Pathogen (Puccinia striiformis) Indicate Somatic Recombination
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[166] Identification and Validation of SNP Markers Linked to the Stripe Rust Resistance Gene in Wheat
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[167] Virulence and simple sequence repeat marker segregation in a Puccinia striiformis f. sp. tritici population produced by selfing a Chinese isolate on Berberis shensiana
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[169] Races of Puccinia striiformis f. sp. tritici in the United States in 2011 and 2012 and Comparison with Races in 2010
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[170] Virulence and Simple Sequence Repeat Marker Segregation in a Puccinia striiformis f. sp. tritici Population Produced by Selfing a Chinese Isolate on Berberis …
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[171] Association Analysis of SP-SNPs and Avirulence Genes in Puccinia striiformis f. sp. tritici, the Wheat Stripe Rust Pathogen
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[172] 四川小麦条锈病菌贵农 22 致病类群流行对小麦品种抗性的影响
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[174] Management of Wheat Rusts
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[175] Characterization of Two Adult‐Plant Stripe Rust Resistance Genes on Chromosomes 3BS and 4BL in Soft Red Winter Wheat
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[176] Identification and Validation of SNP Markers Linked to the Stripe Rust Resistance Gene Yr5 in Wheat
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[177] Molecular mapping of YrSP and its relationship with other genes for stripe rust resistance in wheat chromosome 2BL
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[178] Population structure of Puccinia striiformis f. sp. tritici, the cause of wheat stripe rust, in western Canada
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[203] Yr36 confers partial resistance at temperatures below 18 C to UK isolates of Puccinia striiformis
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[212] Identification of Yr59 conferring high-temperature adult-plant resistance to stripe rust in wheat germplasm PI 178759
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[213] Wheat stripe (yellow) rust caused by Puccinia striiformis f. sp. tritici
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[214] Overview and application of QTL for adult plant resistance to leaf rust and powdery mildew in wheat
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[215] Mapping of Yr62 and a small-effect QTL for high-temperature adult-plant resistance to stripe rust in spring wheat PI 192252
Theoretical and Applied Genetics, 2014
[216] Yr36 Confers Partial Resistance at Temperatures Below 18 degrees C to UK Isolates of Puccinia striiformis
Phytopathology, 2014
[217] Characterization of adult plant resistance in the maize-Cochliobolus carbonum race 1 pathosystem revealed a close connection between plant immunity and …
2014
[218] Understanding molecular mechanisms of durable and non-durable resistance to stripe rust in wheat using a transcriptomics approach
Current genomics, 2013
[219] Molecular mapping of Yr53, a new gene for stripe rust resistance in durum wheat accession PI 480148 and its transfer to common wheat
heoretical and Applied Genetics, 2013
[220] 四川地方小麦品种条锈病抗性研究
四川农业大学学报, 2013
[221] Effects of temperature on wheat-pathogen interactions
2013
[222] Towards an understanding of the molecular mechanisms of durable and non-durable resistance to stripe rust in wheat
2011
[223] (JIA-2017-1106) Pathogenesis-related protein genes involved in race-specific all-stage resistance and non-race specific high-temperature adult-plant …
[224] JIA-2018-1536< span style=