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1. Independent Recruitment of Duplicated β-Subunit-Coding NAD-ME Genes Aided the Evolution of C4 Photosynthesis in Cleomaceae

2. Combined Abiotic Stresses Repress Defense and Cell Wall Metabolic Genes and Render Plants More Susceptible to Pathogen Infection

3. Dissecting the Physiological Function of Plant Glyoxalase I and Glyoxalase I-Like Proteins

4. <scp>AZG1</scp> is a cytokinin transporter that interacts with auxin transporter <scp>PIN1</scp> and regulates the root stress response

5. Viridiplantae-specific GLXI and GLXII isoforms co-evolved and detoxify glucosone in planta

6. Adaptive diversity in structure and function of C4 photosynthetic components

8. Respiratory and C4-photosynthetic NAD-malic enzyme coexist in bundle sheath cell mitochondria and evolved via association of differentially adapted subunits

9. Viridiplantae-specific GLXI and GLXII isoforms co-evolved and detoxify glucosonein planta

10. Two plant glyoxalase systems with different evolutionary origins detoxify diverse reactive carbonyl species

11. Acetylation of conserved lysines fine-tunes mitochondrial malate dehydrogenase activity in land plants

12. Combined Abiotic Stresses Repress Defense and Cell Wall Metabolic Genes and Render Plants More Susceptible to Pathogen Infection

13. Reactive oxygen species dosage in Arabidopsis chloroplasts can improve resistance towards Colletotrichum higginsianum by the induction of WRKY33

14. Using energy-efficient synthetic biochemical pathways to bypass photorespiration

15. Single organelle function and organization as estimated from Arabidopsis mitochondrial proteomics

16. Color recycling: metabolization of apocarotenoid degradation products suggests carbon regeneration via primary metabolic pathways

17. Respiratory and C4-photosynthetic NAD-malic enzyme coexist in bundle sheath cells mitochondria and evolved via association of differentially adapted subunits

18. Adjustments of carbon allocation and stomatal dynamics by target localized strategies to increase crop productivity under changing climates

19. Corrigendum to: Posttranslational Modification of the NADP-Malic Enzyme Involved in C4 Photosynthesis Modulates the Enzymatic Activity during the Day

20. Reactive oxygen species coordinate the transcriptional responses to iron availability in Arabidopsis

21. The genome of Ricinus communis encodes a single glycolate oxidase with different functions in photosynthetic and heterotrophic organs

22. Photosynthetic activity triggers pH and NAD redox signatures across different plant cell compartments

23. Acetylation of conserved lysines fine-tune mitochondrial malate dehydrogenase activity in land plants

24. The auxin transporter PIN1 and the cytokinin transporter AZG1 interact to regulate the root stress response

25. Molecular plant responses to combined abiotic stresses put a spotlight on unknown and abundant genes

26. Arabidopsis AZG2, an auxin induced putative cytokinin transporter, regulates lateral root emergence

27. Glycolate oxidation in A. thaliana chloroplasts improves biomass production

28. Interplay between cytochromecand gibberellins during Arabidopsis vegetative development

29. Defense against Reactive Carbonyl Species Involves at Least Three Subcellular Compartments Where Individual Components of the System Respond to Cellular Sugar Status

30. Independent Recruitment of Duplicated β-Subunit-Coding NAD-ME Genes Aided the Evolution of C4 Photosynthesis in Cleomaceae

31. Molecular adaptations of NADP-malic enzyme for its function in C4 photosynthesis in grasses

32. The AtHSP17.4C1 Gene Expression Is Mediated by Diverse Signals that Link Biotic and Abiotic Stress Factors with ROS and Can Be a Useful Molecular Marker for Oxidative Stress

33. Posttranslational Modification of the NADP-Malic Enzyme Involved in C

34. The

35. Combining genetic and evolutionary engineering to establish C4metabolism in C3plants

36. The influence of alternative pathways of respiration that utilize branched-chain amino acids following water shortage inArabidopsis

37. Posttranslational modification of the NADP-malic enzyme involved in C4 photosynthesis fine-tunes the enzymatic activity during the day

38. NADP-Dependent Malic Enzyme 1 Participates in the Abscisic Acid Response in Arabidopsis thaliana

39. Dissecting the Physiological Function of Plant Glyoxalase I and Glyoxalase I-Like Proteins

40. Loss of function of Arabidopsis NADP-malic enzyme 1 results in enhanced tolerance to aluminum stress

41. Molecular adaptations of NADP-malic enzyme for its function in C

42. Improved water use efficiency and shorter life cycle of Nicotiana tabacum due to modification of guard and vascular companion cells

43. NADP-MALIC ENZYME 1 Affects Germination after Seed Storage in Arabidopsis thaliana

44. Metabolic Engineering of Photorespiration

46. Plant and Animal Glycolate Oxidases Have a Common Eukaryotic Ancestor and Convergently Duplicated to Evolve Long-Chain 2-Hydroxy Acid Oxidases

47. Specific Arabidopsis thaliana malic enzyme isoforms can provide anaplerotic pyruvate carboxylation function in Saccharomyces cerevisiae

48. Metabolic Engineering of Photorespiration

49. Dissecting Long-Term Adjustments of Photoprotective and Photo-Oxidative Stress Acclimation Occurring in Dynamic Light Environments

50. Editorial: On the Diversity of Roles of Organic Acids

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