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1. First Draft Genome Assemblies of Pleochaeta shiraiana and Phyllactinia moricola, Two Tree-Parasitic Powdery Mildew Fungi with Hemiendophytic Mycelia

2. Beyond Nuclear Ribosomal DNA Sequences: Evolution, Taxonomy, and Closest Known Saprobic Relatives of Powdery Mildew Fungi (Erysiphaceae) Inferred From Their First Comprehensive Genome-Scale Phylogenetic Analyses

5. Durable broad-spectrum powdery mildew resistance in pea er1 plants is conferred by natural loss-of-function mutations in PsMLO1

6. Conserved molecular components for pollen tube reception and fungal invasion

7. Two Seven-Transmembrane Domain MILDEW RESISTANCE LOCUS O Proteins Cofunction in Arabidopsis Root Thigmomorphogenesis

15. Lifestyle transitions in plant pathogenic Colletotrichum fungi deciphered by genome and transcriptome analyses

16. Plasma membrane calcium ATPases are important components of receptor-mediated signaling in plant immune responses and development.

17. Genome Expansion and Gene Loss in Powdery Mildew Fungi Reveal Tradeoffs in Extreme Parasitism

18. Natural genetic resources of Arabidopsis thaliana reveal a high prevalence and unexpected phenotypic plasticity of RPW8-mediated powdery mildew resistance

20. A barley cultivation-associated polymorphism conveys resistance to powdery mildew

25. Topology, subcellular localization, and sequence diversity of the Mlo family in plants.

27. Dissecting Arabidopsis G Signal Transduction on the Protein Surface

28. mlo-based powdery mildew resistance in hexaploid bread wheat generated by a non-transgenic TILLING approach

29. Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism

31. Novel induced mlo mutant alleles in combination with site-directed mutagenesis reveal functionally important domains in the heptahelical barley Mlo protein

32. Structure and evolution of barley powdery mildew effector candidates

33. Rapid quantification of plant-powdery mildew interactions by qPCR and conidiospore counts

34. Novel induced mlo mutant alleles in combination with site-directed mutagenesis reveal functionally important domains in the heptahelical barley Mlo protein

35. The visible touch: in planta visualization of protein-protein interactions by fluorophore-based methods

36. PAMP (pathogen-associated molecular pattern)-induced changes in plasma membrane compartmentalization reveal novel components of plant immunity

37. A fungal plant pathogen overcomes mlo-mediated broad-spectrum disease resistance by rapid gene loss.

38. The development of pleiotropic phenotypes in powdery mildew-resistant barley and Arabidopsis thaliana mlo mutants is linked to nitrogen availability.

39. Long-term and rapid evolution in powdery mildew fungi.

40. Interplay of EXO70 and MLO proteins modulates trichome cell wall composition and susceptibility to powdery mildew.

41. Transfer RNA and ribosomal RNA fragments - emerging players in plant-microbe interactions.

42. Plant MDL proteins synergize with the cytokine MIF at CXCR2 and CXCR4 receptors in human cells.

43. Long noncoding RNAs emerge from transposon-derived antisense sequences and may contribute to infection stage-specific transposon regulation in a fungal phytopathogen.

44. Comprehensive comparative assessment of the Arabidopsis thaliana MLO2-CALMODULIN2 interaction by various in vitro and in vivo protein-protein interaction assays.

45. Looking outside the box: a comparative cross-kingdom view on the cell biology of the three major lineages of eukaryotic multicellular life.

46. Site-specific analysis reveals candidate cross-kingdom small RNAs, tRNA and rRNA fragments, and signs of fungal RNA phasing in the barley-powdery mildew interaction.

47. Proteomics dataset on detached and purified Arabidopsis thaliana rosette leaf trichomes.

48. Barley Ror1 encodes a class XI myosin required for mlo-based broad-spectrum resistance to the fungal powdery mildew pathogen.

49. Efficient Isolation and Purification of High-Quality Arabidopsis thaliana Trichomes.

50. A cross-kingdom view on the immunomodulatory role of MIF/D-DT proteins in mammalian and plant Pseudomonas infections.

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