31 results on '"Rouws, Luc"'
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2. Mimosa species endemic to acidic soils in central Brazil are nodulated by a high diversity of Paraburkholderia genotypes, but widespread species are nodulated by Paraburkholderia, Cupriavidus or Rhizobium depending on soil characteristics
3. Mimosa Species Endemic to Acidic Soils in Central Brazil are Nodulated by a High Diversity of Paraburkholderia Genotypes, But Widespread Species are Nodulated by Paraburkholderia, Cupriavidus or Rhizobium Depending on Soil Characteristics
4. Not just passengers, but co-pilots! Non-rhizobial nodule-associated bacteria promote cowpea growth and symbiosis with (brady)rhizobia
5. Culture-Independent Assessment of Diazotrophic Bacteria in Sugarcane and Isolation ofBradyrhizobiumspp. from Field-Grown Sugarcane Plants Using Legume Trap Plants
6. Evolution and function of nitrogen fixation gene clusters in sugarcane associated Bradyrhizobium strains
7. The Family Oxalobacteraceae
8. Native Bradyrhizobium Strains From Ghana Can Enhance Grain Yields of Field-Grown Cowpea and Groundnut
9. Mycorrhizal networks facilitate the colonization of legume roots by a symbiotic nitrogen-fixing bacterium
10. Draft Genome Sequence of Bradyrhizobium elkanii BR 2003, an Efficient Rhizobium Strain for Cajanus, Canavalia , Crotalaria , and Indigofera
11. Interaction of phytohormone-producing rhizobia with sugarcane mini-setts and their effect on plant development
12. The importance of denitrification performed by nitrogen-fixing bacteria used as inoculants in South America
13. Occurrence of diverse Bradyrhizobium spp. in roots and rhizospheres of two commercial Brazilian sugarcane cultivars
14. Bacteria related to Bradyrhizobium yuanmingense from Ghana are effective groundnut micro-symbionts
15. Bradyrhizobium sacchari sp. nov., a legume nodulating bacterium isolated from sugarcane roots
16. PCR assay for direct specific detection of Bradyrhizobium elite strain BR 3262 in root nodule extracts of soil-grown cowpea
17. Cowpea Nodules Harbor Non-rhizobial Bacterial Communities that Are Shaped by Soil Type Rather than Plant Genotype
18. Identification of Genes Involved in Indole-3-Acetic Acid Biosynthesis by Gluconacetobacter diazotrophicus PAL5 Strain Using Transposon Mutagenesis
19. Draft genome sequence of Bradyrhizobium sp. strain BR 3262, an effective microsymbiont recommended for cowpea inoculation in Brazil
20. Rhizobium altiplani sp. nov., isolated from effective nodules on Mimosa pudica growing in untypically alkaline soil in central Brazil
21. Bradyrhizobium stylosanthis sp. nov., comprising nitrogen-fixing symbionts isolated from nodules of the tropical forage legume Stylosanthes spp.
22. WITHDRAWN: Draft genome sequence of Bradyrhizobium pachyrhizi strain BR 3262, an effective microsymbiont recommended for cowpea inoculation in Brazil
23. Tn5 insertion in the tonB gene promoter affects iron-related phenotypes and increases extracellular siderophore levels in Gluconacetobacter diazotrophicus
24. Bradyrhizobium ingae sp. nov., isolated from effective nodules of Inga laurina grown in Cerrado soil
25. EndophyticBradyrhizobiumspp. isolates from sugarcane obtained through different culture strategies
26. The Bacterial Superoxide Dismutase and Glutathione Reductase Are Crucial for Endophytic Colonization of Rice Roots by Gluconacetobacter diazotrophicus PAL5
27. Exopolysaccharide Production Is Required for Biofilm Formation and Plant Colonization by the Nitrogen-Fixing Endophyte Gluconacetobacter diazotrophicus
28. Caracterização morfocultural, biossíntese de autoindutor e formação de biofilme por rizobactérias de hortaliças
29. Complete genome sequence of the sugarcane nitrogen-fixing endophyte Gluconacetobacter diazotrophicus Pal5
30. Validation of a Tn5 transposon mutagenesis system for Gluconacetobacter diazotrophicus through characterization of a flagellar mutant
31. Validation of a Tn5 transposon mutagenesis system for Gluconacetobacter diazotrophicus through characterization of a flagellar mutant
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