1 |
Black Rot: A Continuing |
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2 |
Xanthomonas campestris pv. campestris (cause of black rot of crucifers) in the genomic era is still a worldwide threat to brassica crops |
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3 |
Systematic Mutagenesis of All Predicted gntR Genes in Xanthomonas campestris pv. campestris Reveals a GntR Family Transcriptional Regulator Controlling Hypersensitive Response and Virulence |
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4 |
PCR‐based detection of Xanthomonas campestris pathovars in Brassica seed |
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5 |
Identification of Race 1 of Fusarium oxysporum f. sp. lactucae on Lettuce by Inter-Retrotransposon Sequence-Characterized Amplified Region Technique |
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6 |
Identification of quantitative trait loci for resistance to Xanthomonas campestris pv. campestris in Brassica rapa |
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7 |
Genome Sequence of Xanthomonas oryzae pv. oryzae Suggests Contribution of Large Numbers of Effector Genes and Insertion Sequences to Its Race Diversity |
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8 |
A TALE of Transposition: Tn 3 -Like Transposons Play a Major Role in the Spread of Pathogenicity Determinants of Xanthomonas citri and Other Xanthomonads |
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9 |
A Combined Biological and Enzymatic Amplification (BIO-PCR) Technique to DetectPseudomonas syringaepv.phaseolicolain Bean Seed Extracts |
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10 |
New tools for discovering and characterizing microbial diversity |
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11 |
Pathogenicity assays restrict the species Xanthomonas campestris into three pathovars and reveal nine races within X. campestris pv. campestris |
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12 |
Development of Race-Specific SCAR Markers for Detection of Chinese Races CYR32 and CYR33 of Puccinia striiformis f. sp. tritici |
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13 |
Future of portable devices for plant pathogen diagnosis |
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14 |
Incompatible Interactions Between Crucifers andXanthomonas campestrisInvolve a Vascular Hypersensitive Response: Role of thehrpXLocus |
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15 |
Discrimination of Xanthomonas campestris pv. campestris races among strains from northwestern Spain by Brassica spp. genotypes and rep-PCR |
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16 |
Identification and Origin of Xanthomonas campestris pv. campestris Races and Related Pathovars |
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17 |
Plant pathogen diagnostics: immunological and nucleic acid‐based approaches |
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18 |
Insights into the phylogeny and coding potential of microbial dark matter |
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19 |
Detection of black rot disease causing pathogen Xanthomonas campestris pv. campestris by bio-PCR from seeds and plant parts of cole crops |
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20 |
PCR-Based Assay for Rapid and Specific Detection of the New Xanthomonas oryzae pv. oryzae K3a Race Using an AFLP-Derived Marker |
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21 |
Variant Review with the Integrative Genomics Viewer |
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22 |
Whole-Genome Re-Alignment Facilitates Development of Specific Molecular Markers for Races 1 and 4 of Xanthomonas campestris pv. campestris, the Cause of Black Rot Disease in Brassica oleracea |
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23 |
Development of race-specific molecular marker forXanthomonas campestrispv.campestrisrace 3, the causal agent of black rot of crucifers |
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24 |
Molecular Techniques for Diagnosis of Bacterial Plant Pathogens |
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25 |
Diagnosis of plant diseases using the Nanopore sequencing platform |
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26 |
Pathovar specific molecular detection of Xanthomonas campestris pv. campestris, the causal agent of black rot disease in cabbage |
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27 |
Next-generation sequencing and its clinical application |
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28 |
Development of Molecular Marker through Genome Realignment for Specific Detection of Xanthomonas campestris pv. campestris Race 5, a Pathogen of Black Rot Disease |
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29 |
Development of a marker for detection of Xanthomonas campestris pv. campestris races 1 and 2 in Brassica oleracea |
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30 |
On Variant Discovery in Genomes of Fungal Plant Pathogens |
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31 |
Development of PCR-Based Molecular Marker for Detection of Xanthomonas campestris pv. campestris Race 6, the Causative Agent of Black Rot of Brassicas |
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32 |
Recent Advances in Molecular Diagnostics of Fungal Plant Pathogens: A Mini Review |
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33 |
Molecular Marker Development for the Rapid Differentiation of Black Rot Causing Xanthomonas campestris pv. campestris Race 7 |
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