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1. MV-Match: Multi-View Matching for Domain-Adaptive Identification of Plant Nutrient Deficiencies

3. Heritable microbiome variation is correlated with source environment in locally adapted maize varieties

6. Heritable microbiome variation is correlated with source environment in locally adapted maize varieties

9. Maize zinc uptake is influenced by arbuscular mycorrhizal symbiosis under various soil phosphorus availabilities.

15. SEC14-like condensate phase transitions at plasma membranes regulate root growth in Arabidopsis

19. Protein pyrophosphorylation by inositol phosphates: a novel post-translational modification in plants?

21. SEC14-like condensate phase transitions at plasma membranes regulate root growth in Arabidopsis

22. Nutrient deficiency effects on root architecture and root-to-shoot ratio in arable crops

23. Elucidation of Inositol Polyphosphate Dephosphorylation Pathways using Stable-Isotope Labelling and NMR spectroscopy

24. The phytase RipBL1 enables the assignment of a specific inositol phosphate isomer as a structural component of human kidney stones

25. Heritable microbiome variation is correlated with source environment in locally adapted maize varieties

29. Heritable maize microbiomes contribute to local adaptation and host stress resilience

30. Nutrient deficiency effects on root architecture and root-to-shoot ratio in arable crops

31. The phytase RipBL1 enables the assignment of a specific inositol phosphate isomer as a structural component of human kidney stones

32. Arabidopsis Phospholipase C3 is Involved in Lateral Root Initiation and ABA Responses in Seed Germination and Stomatal Closure

33. Plant Growth Promotion and Heat Stress Amelioration in Arabidopsis Inoculated with Paraburkholderia phytofirmans PsJN Rhizobacteria Quantified with the GrowScreen-Agar II Phenotyping Platform

34. INOSITOL (1,3,4) TRIPHOSPHATE 5/6 KINASE1-dependent inositol polyphosphates regulate auxin responses in Arabidopsis

36. Mechanisms by Which Small Molecule Inhibitors Arrest Sec14 Phosphatidylinositol Transfer Protein Activity

38. Convergently selected NPF2.12 coordinates root growth and nitrogen use efficiency in wheat and barley.

39. Arabidopsis PFA-DSP-Type Phosphohydrolases Target Specific Inositol Pyrophosphate Messengers

41. Phase transitions of a SEC14-like condensate at Arabidopsis plasma membranes regulate root growth

47. Inside Cover: Stable Isotope Phosphate Labelling of Diverse Metabolites is Enabled by a Family of 18O‐Phosphoramidites (Angew. Chem. Int. Ed. 5/2022)

49. Arabidopsis inositol polyphosphate kinases IPK1 and ITPK1 modulate crosstalk between SA-dependent immunity and phosphate-starvation responses

50. Bacterial Pathogen Infection Triggers Magic Spot Nucleotide Signaling in Arabidopsis thalianaChloroplasts through Specific RelA/SpoT Homologues

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