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1. Cell wall-mediated root development is targeted by a soil-borne bacterial pathogen to promote infection

2. Temperature changes in the root ecosystem affect plant functionality

3. The cold-induced factor CBF3 mediates root stem cell activity, regeneration, and developmental responses to cold

6. Effects of Combined Abiotic Stresses Related to Climate Change on Root Growth in Crops

7. The co-chaperone HOP participates in TIR1 stabilisation and in auxin response in plants

8. Differential proteome between ejaculate and epididymal sperm represents a key factor for sperm freezability in wild small ruminants

9. The rye transcription factor ScSTOP1 regulates the tolerance to aluminum by activating the ALMT1 transporter

10. May the dark be with roots: a perspective on how root illumination may bias in vitro research on plant-environment interactions

11. An auxin-regulable oscillatory circuit drives the root clock in Arabidopsis

12. Dispositivo para optimizar un sistema de cultivo de plantas

13. Alternative Polyadenylation and Salicylic Acid Modulate Root Responses to Low Nitrogen Availability

14. Fluorescence-Activated Cell Sorting Using the D-Root Device and Optimization for Scarce and/or Non-Accessible Root Cell Populations

15. Producing more food in a sustainable way is possible biotechnological and sustainable fertilisation as a way to face population growth

16. Role of cis-zeatin in root responses to phosphate starvation

17. The polyadenylation factor FIP1 is important for plant development and root responses to abiotic stresses

18. An auxin-regulable oscillatory circuit drives the root clock in Arabidopsis

20. Polyamines interfere with protein ubiquitylation and cause depletion of intracellular amino acids a possible mechanism for cell growth inhibition

21. Regulation of hormonal control, cell reprogramming, and patterning during de novo root organogenesis

22. A light-sensitive mutation in Arabidopsis LEW3 reveals the important role of N-glycosylation in root growth and development

23. Control of Arabidopsis lateral root primordium boundaries by MYB36

24. The transcription factor OBP4 controls root growth and promotes callus formation

25. Whole genome duplications in plants An overview from Arabidopsis

26. Flavonols mediate root phototropism and growth through regulation of proliferation-to-differentiation transition

27. Characterisation of a flavonoid ligand of the fungal protein Alt a 1

29. The TRANSPLANTA collection of Arabidopsis lines A resource for functional analysis of transcription factors based on their conditional overexpression

30. Auxin and the ubiquitin pathway. Two players-one target The cell cycle in action

31. D-Root A system for cultivating plants with the roots in darkness or under different light conditions

32. Deciphering the molecular bases for drought tolerance in Arabidopsis autotetraploids

33. Broad utility of an affinity-enrichment strategy for unanchored polyubiquitin chains

34. The emerging role of reactive oxygen species signaling during lateral root development

35. Identification of SUMO targets by a novel proteomic approach in plants

36. Regulation of the new Arabidopsis imprinted gene AtBMI1 requires the interplay of different epigenetic mechanisms

37. Auxin and epigenetic regulation of SKP2B, an F-box that represses lateral root formation

38. Identification of a protein network interacting with TdRF1, a wheat RING ubiquitin ligase with a protective role against cellular dehydration

39. Ectopic expression of E2FB, a cell cycle transcription factor, accelerates flowering and increases fruit yield in tomato

40. Keeping cell identity in Arabidopsis requires PRC1 RING-finger homologs that catalyze H2A monoubiquitination

41. A role for AUXIN RESISTANT3 in the coordination of leaf growth

42. The Arabidopsis cell cycle F-Box protein SKP2A binds to auxin

43. Identification of ubiquitinated proteins in Arabidopsis

44. Degradation of the cyclin-dependent kinase inhibitor KRP1 is regulated by two different ubiquitin E3 ligases

45. SKP2A, an F-box protein that regulates cell division, is degraded via the ubiquitin pathway

46. The E2FC-DPB transcription factor controls cell division, endoreplication and lateral root formation in a SCFSKP2A-dependent manner

47. The HVE/CAND1 gene is required for the early patterning of leaf venation in Arabidopsis

48. The balance between cell division and endoreplication depends on E2FC-DPB, transcription factors regulated by the ubiquitin-SCFSKP2A pathway in Arabidopsis

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