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1. Genetic diversity in a world germplasm collection of tall fescue

2. Engineering Pseudomonas protegens Pf-5 for nitrogen fixation and its application to improve plant growth under nitrogen-deficient conditions.

4. The nodule-specific multifunctional channel NOD26 of Medicago truncatula is crucial for nitrogen-fixing symbiosis

5. Understanding the intracellular-to-extracellular localization switch of polyhydroxybutyrate polymerase in pseudomonas backgrounds as a microevolutionary process

6. High-quality forage production under salinity by using a salt-tolerant AtNXH1-expressing transgenic alfalfa combined with a natural stress-resistant nitrogen-fixing bacterium

7. Major cereal crops benefit from biological nitrogen fixation when inoculated with the nitrogen-fixing bacterium Pseudomonas protegens Pf-5 X940

8. Plant growth-promoting bacterium Pseudomonas fluorescens FR1 secrets a novel type of extracellular polyhydroxybutyrate polymerase involved in abiotic stress response in plants

9. The Ammonium Channel NOD26 is the Evolutionary Innovation that Drives the Emergence, Consolidation, and Dissemination of Nitrogen-Fixing Symbiosis in Angiosperms

10. Maximizing the expression of transgenic traits into elite alfalfa germplasm using a supertransgene configuration in heterozygous conditions

11. Exploring the Ancestral Mechanisms of Regulation of Horizontally Acquired Nitrogenases

12. Plant Growth-Promoting Genes can Switch to be Virulence Factors via Horizontal Gene Transfer

13. Absence of the Nitrous Oxide Reductase Gene Cluster in Commercial Alfalfa Inoculants Is Probably Due to the Extensive Loss of Genes During Rhizobial Domestication

14. Stable symbiotic nitrogen fixation under water-deficit field conditions by a stress-tolerant alfalfa microsymbiont and its complete genome sequence

15. The genetic diversity of wild rescuegrass is associated with precipitation levels

16. Exploring the Intrinsic Limits of Nitrogenase Transfer from Bacteria to Eukaryotes

17. Minimizing the time and cost of production of transgenic alfalfa libraries using the highly efficient completely sequenced vector pPZP200BAR

18. Major cereal crops benefit from biological nitrogen fixation when inoculated with the nitrogen-fixing bacterium Pseudomonas protegens Pf-5 X940

19. Pollen-specific aquaporins NIP4;1 and NIP4;2 are required for pollen development and pollination in Arabidopsis thaliana

20. New insight into the evolution of aquaporins from flowering plants and vertebrates: Orthologous identification and functional transfer is possible

21. Hydroxybutyrate prevents protein aggregation in the halotolerant bacterium Pseudomonas sp. CT13 under abiotic stress

22. TIP5;1 is an aquaporin specifically targeted to pollen mitochondria and is probably involved in nitrogen remobilization in Arabidopsis thaliana

23. Polyhydroxyalkanoates are essential for maintenance of redox state in the Antarctic bacterium Pseudomonas sp. 14-3 during low temperature adaptation

24. mRNA biogenesis-related helicase eIF4AIII from Arabidopsis thaliana is an important factor for abiotic stress adaptation

25. Root hydraulic conductivity and adjustments in stomatal conductance: hydraulic strategy in response to salt stress in a halotolerant species

26. Pseudomonas fluorescens Pf-5 genome-wide mutant screen for resistance to the antimicrobial peptide alfalfa snakin-1

27. Impaired polyhydroxybutyrate biosynthesis from glucose inPseudomonassp. 14-3 is due to a defective β-ketothiolase gene

29. Alfalfa snakin-1 prevents fungal colonization and probably coevolved with rhizobia

30. Prediction of aquaporin function by integrating evolutionary and functional analyses

31. Genetic diversity in a world germplasm collection of tall fescue

32. Engineering Pseudomonas protegens Pf-5 for nitrogen fixation and its application to improve plant growth under nitrogen-deficient conditions

33. Understanding the function of bacterial and eukaryotic thiolases II by integrating evolutionary and functional approaches

34. Acetoacetyl-CoA thiolase regulates the mevalonate pathway during abiotic stress adaptation

35. The polyhydroxyalkanoate genes of a stress resistant Antarctic Pseudomonas are situated within a genomic island

36. Genetic analysis of environmental strains of the plant pathogenPhytophthora capsicireveals heterogeneous repertoire of effectors and possible effector evolution via genomic island

37. A Polyhydroxybutyrate-Producing Pseudomonas sp. Isolated from Antarctic Environments with High Stress Resistance

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