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Legumes can generate two types of nitrogen-fixing nodules depending on both the host plant and the symbiont. In indeterminate nodules, bacteria undergo terminal differentiation into bacteroids, an irreversible state in which they are able to fix atmospheric nitrogen into ammonia. In Medicago truncat...
ORGANISM(S): Rhizobium favelukesii 
2026-03-02 | PXD072722 | Pride
Draft genome sequence of Rhizobium sp. LPU83
Acid soils constitute a severe problem for leguminous crops mainly through a disturbance in rhizobia-legume interactions. Rhizobium favelukesii—an acid-tolerant rhizobium able to nodulate alfalfa—is highly competitive for nodule occupation under acid conditions, but inefficient in biologic nitrogen ...
ORGANISM(S): Rhizobium favelukesii 
2022-04-08 | PXD013642 | Pride
Global transcriptome analysis of Rhizobium favelukesii LPU83 in response to acid stress.
Acid environments are worldwide distributed due to their natural conditions or by the inappropriate use of the intensive agriculture. The moderately low pHs from the soils are an important barrier in the plant-rhizobia interaction. These low pHs affect the establishment of the efficient rhizobia usu...
ORGANISM(S): Rhizobium favelukesii 
2020-11-12 | GSE141742 | GEO
Rhizobium favelukesii Genome sequencing
Rhizobia are gram-negative bacteria able to establish a symbiotic interaction with leguminous plants. Due to their nitrogen fixing capacity, the study of these microorganisms has acquired great relevance for the agriculture. Rhizobia usually harbor many plasmids in their genome which can be transfer...
ORGANISM(S): Rhizobium favelukesii 
2022-08-29 | PXD033583 | Pride
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