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20 results on '"Culver JN"'

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1. Rootstock-induced scion resistance against tobacco mosaic virus is associated with the induction of defence-related transcripts and graft-transmissible mRNAs.

2. Highly stable, antiviral, antibacterial cotton textiles via molecular engineering.

3. Delivery of CRISPR-Cas12a Ribonucleoprotein Complex for Genome Editing in an Embryogenic Citrus Cell Line.

4. Highly Efficient Genome Editing in Plant Protoplasts by Ribonucleoprotein Delivery of CRISPR-Cas12a Nucleases.

5. Reprogramming Virus Coat Protein Carboxylate Interactions for the Patterned Assembly of Hierarchical Nanorods.

6. Viral Hacks of the Plant Vasculature: The Role of Phloem Alterations in Systemic Virus Infection.

7. Dynamic changes impact the plum pox virus population structure during leaf and bud development.

8. Transglutaminase-mediated assembly of multi-enzyme pathway onto TMV brush surfaces for synthesis of bacterial autoinducer-2.

9. Translatome Profiling of Plum Pox Virus-Infected Leaves in European Plum Reveals Temporal and Spatial Coordination of Defense Responses in Phloem Tissues.

10. Identification of phloem-associated translatome alterations during leaf development in Prunus domestica L.

11. Tobacco Mosaic Virus as a Versatile Platform for Molecular Assembly and Device Fabrication.

12. Localized Three-Dimensional Functionalization of Bionanoreceptors on High-Density Micropillar Arrays via Electrowetting.

13. Fabrication of Tobacco Mosaic Virus-Like Nanorods for Peptide Display.

14. Tobacco mosaic virus infection disproportionately impacts phloem associated translatomes in Arabidopsis thaliana and Nicotiana benthamiana.

15. Biofabrication of Tobacco mosaic virus-nanoscaffolded supercapacitors via temporal capillary microfluidics.

16. Capillary Microfluidics-Assembled Virus-like Particle Bionanoreceptor Interfaces for Label-Free Biosensing.

17. Real-time monitoring of macromolecular biosensing probe self-assembly and on-chip ELISA using impedimetric microsensors.

18. Tobacco mosaic virus-directed reprogramming of auxin/indole acetic acid protein transcriptional responses enhances virus phloem loading.

19. The impact of phytohormones on virus infection and disease.

20. Plant virus directed fabrication of nanoscale materials and devices.

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