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4. The CEP5 Peptide Promotes Abiotic Stress Tolerance, As Revealed by Quantitative Proteomics, and Attenuates the AUX/IAA Equilibrium in Arabidopsis

5. RALFL34 regulates formative cell divisions in Arabidopsis pericycle during lateral root initiation

8. Phosphoproteome analyses pinpoint the F‐box protein SLOW MOTION as a regulator of warm temperature‐mediated hypocotyl growth in Arabidopsis

11. Phosphoproteome analyses pinpoint the F‐box protein SLOW MOTION as a regulator of warm temperature‐mediated hypocotyl growth in Arabidopsis.

12. PP2A-3 interacts with ACR4 and regulates formative cell division in the Arabidopsis root

18. The Arabidopsis METACASPASE9 Degradome

20. Extranuclear protection of chromosomal DNA from oxidative stress

23. Proteome-wide cellular thermal shift assay reveals unexpected cross-talk between brassinosteroid and auxin signaling

24. Proteome-wide cellular thermal shift assay reveals novel crosstalk between brassinosteroid and auxin signaling

27. The Arabidopsis Root Tip (Phospho)Proteomes at Growth-Promoting versus Growth-Repressing Conditions Reveal Novel Root Growth Regulators

28. The membrane-localized protein kinase MAP4K4/TOT3 regulates thermomorphogenesis

30. CYCA3;4 Is a Post-Prophase Target of the APC/CCCS52A2 E3-Ligase Controlling Formative Cell Divisions in Arabidopsis

31. Auxin-triggered changes in the Arabidopsis root tip (phospho)proteome reveal novel root growth regulators

32. Fatty acid hydroperoxides and [H.sub.2][O.sub.2] in the execution of hypersensitive cell death in tobacco leaves (1) ([w])

35. The Cyclin CYCA3;4 Is a Postprophase Target of the APC/CCCS52A2 E3-Ligase Controlling Formative Cell Divisions in Arabidopsis

36. CYCA3;4 Is a Post-Prophase Target of the APC/CCCS52A2 E3-Ligase Controlling Formative Cell Divisions in Arabidopsis

37. Proteome-wide cellular thermal shift assay reveals unexpected cross-talk between brassinosteroid and auxin signaling.

44. Capturing the phosphorylation and protein interaction landscape of the plant TOR kinase

47. Theexpa1-1mutant reveals a new biophysical lateral root organogenesis checkpoint

49. Temperature-induced changes in the wheat phosphoproteome reveal temperature-regulated interconversion of phosphoforms.

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