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1. Sugar beet root susceptibility to storage rots and downregulation of plant defense genes increases with time in storage.

2. Continental-scale insights into the sugarbeet diffusion juice microbiomes.

3. Genetic drift, historic migration, and limited gene flow contributing to the subpopulation divergence in wild sea beet (Beta vulgaris ssp. maritima (L.) Arcang).

4. Natural elicitors enhanced suberin polyphenolic accumulation in wounded potato tuber tissues.

5. Transcriptomic and metabolomic changes in postharvest sugarbeet roots reveal widespread metabolic changes in storage and identify genes potentially responsible for respiratory sucrose loss.

6. Sugar Beet Root Storage Properties Are Unaffected by Cercospora Leaf Spot.

7. Wounding rapidly alters transcription factor expression, hormonal signaling, and phenolic compound metabolism in harvested sugarbeet roots.

8. Mechanism of Sugarbeet Seed Germination Enhanced by Hydrogen Peroxide.

9. Methyl jasmonate effects on sugarbeet root responses to postharvest dehydration.

10. Selenium-Ethylene Interplay in Postharvest Life of Cut Flowers.

11. Inhibitors of tri- and tetra- polyamine oxidation, but not diamine oxidation, impair the initial stages of wound-induced suberization.

12. Colocalization of sucrose synthase expression and sucrose storage in the sugarbeet taproot indicates a potential role for sucrose catabolism in sucrose accumulation.

13. Healing of Gladioulus grandiflora corms and Fusarium oxysporum infection.

14. Using Nectar-Related Traits to Enhance Crop-Pollinator Interactions.

15. Evidence for contemporary plant mitoviruses.

16. Glycolysis Is Dynamic and Relates Closely to Respiration Rate in Stored Sugarbeet Roots.

17. Short- and long-term changes in sugarbeet ( Beta vulgaris L.) gene expression due to postharvest jasmonic acid treatment - Data.

18. Biological differences that distinguish the 2 major stages of wound healing in potato tubers.

19. Cold Temperature Delays Wound Healing in Postharvest Sugarbeet Roots.

20. Metabolic profile of wound-induced changes in primary carbon metabolism in sugarbeet root.

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