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1. CRISPR/Cas9-generated mutations in a sugar transporter gene reduce cassava susceptibility to bacterial blight.

2. Escalation in the host-pathogen arms race: A host resistance response corresponds to a heightened bacterial virulence response.

3. Engineering Disease-Resistant Cassava.

4. Simultaneous CRISPR/Cas9-mediated editing of cassava eIF4E isoforms nCBP-1 and nCBP-2 reduces cassava brown streak disease symptom severity and incidence.

5. Genomics-enabled analysis of the emergent disease cotton bacterial blight.

7. Quantitative, Image-Based Phenotyping Methods Provide Insight into Spatial and Temporal Dimensions of Plant Disease.

8. A Genetic Screen Identifies a Requirement for Cysteine-Rich-Receptor-Like Kinases in Rice NH1 (OsNPR1)-Mediated Immunity.

9. Multilocus sequence analysis of xanthomonads causing bacterial spot of tomato and pepper plants reveals strains generated by recombination among species and recent global spread of Xanthomonas gardneri.

10. Xanthomonas axonopodis virulence is promoted by a transcription activator-like effector-mediated induction of a SWEET sugar transporter in cassava.

11. High-throughput genomic sequencing of cassava bacterial blight strains identifies conserved effectors to target for durable resistance.

13. Improving cassava bacterial blight resistance by editing the epigenome

14. Gene tagging via CRISPR-mediated homology-directed repair in cassava.

15. Foundational and Translational Research Opportunities to Improve Plant Health.

16. Mutations in DNA polymerase δ subunit 1 co-segregate with CMD2-type resistance to Cassava Mosaic Geminiviruses

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