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2. Transcriptional changes during crown-root development and emergence in barley (Hordeum vulgare L.).

4. CROWN ROOTLESS1 binds DNA with a relaxed specificity and activates OsROP and OsbHLH044 genes involved in crown root formation in rice

5. CROWN ROOTLESS1 binds DNA with a relaxed specificity and activates OsROP and OsbHLH044 genes involved in crown root formation in rice

7. Sculpting the soil microbiota

8. Transcriptome profiling of laser-captured crown root primordia reveals new pathways activated during early stages of crown root formation in rice

9. Transcriptome profiling of laser-captured crown root primordia reveals new pathways activated during early stages of crown root formation in rice

10. Sculpting the soil microbiota.

11. Inference of the gene regulatory network acting downstream of CROWN ROOTLESS1 in rice reveals a regulatory cascade linking genes involved in auxin signaling, crown root initiation, and root meristem specification and maintenance

12. Additional file 4: Table S3. of Genome-wide association mapping for root traits in a panel of rice accessions from Vietnam

14. Additional file 5: Table S4. of Genome-wide association mapping for root traits in a panel of rice accessions from Vietnam

18. Genome-wide association mapping for root traits in a panel of rice accessions from Vietnam

19. Inference of the gene regulatory network acting downstream of CROWN ROOTLESS 1 in rice reveals a regulatory cascade linking genes involved in auxin signaling, crown root initiation, and root meristem specification and maintenance.

20. Genome-wide association mapping for root traits in a panel of rice accessions from Vietnam

21. Genes controlling root development in rice

23. Genes controlling root development in rice

25. Genome-wide association mapping for root traits in a panel of rice accessions from Vietnam.

26. Rhizosphere bacteria of Costularia spp. from ultramafic soils in New Caledonia: diversity, tolerance to extreme edaphic conditions, and role in plant growth and mineral nutrition.

27. Identification of new salicylic acid signaling regulators for root development and microbiota composition in plants.

28. What Makes Adventitious Roots?

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