The adaptability of halophytes to increased soil salinity is related to complex rhizosphere interactions. In this study, an integrative approach, combining culture-independent and culture-dependent techniques was used to analyze the bacterial communities in the endorizosphere of indigenous succulent halophytes Salicornia europaea, Suaeda maritima, and Camphorosma annua from the natural salt marshes of Slano Kopovo (Serbia). The 16 S rDNA analyses gave, for the first time, an insight into the composition of the endophytic bacterial communities of S. maritima and C. annua. We have found that the composition of endophyte microbiomes in the same habitat is to some extent influenced by plant species. A cultivable portion of the halophyte microbi...
Halophyte microbiome contributes significantly to plant performance and can provide information rega...
Plant growth-promoting rhizobacteria (PGPR) are considered as bio-ameliorators that confer better sa...
Many halophytes and halophilic microorganisms are capable to adapt to the extremities of saline habi...
The adaptability of halophytes to increased soil salinity is related to complex rhizosphere interact...
Root−associated microbial communities play important roles in the process of adaptation of plant hos...
Many plants are unable to adapt to rapid environmental changes (e.g., salinity, drought, or limited ...
soil salinity has numerous negative effects on plant growth and poses a significant threat to agric...
Increased soil salinization may be caused by a natural (e.g. climate change) and anthropogenic (e.g....
Plant Growth Promoting (PGP) bacteria are known for their role in enhancing plant fitness both in co...
We examined Salicornia europaea, a nonmycorrhizal halophyte associated with specific and unique end...
Available online 31 March 2023Although soil and rhizosphere microbiomes in highly saline environment...
Salinity stress is one of the major abiotic stresses limiting crop production in arid and semi-arid ...
Halophytes classified under the common name of salicornia colonize salty and coastal environments ac...
Not AvailableExtreme saline environments represent unique ecosystems for novel microbial biodiversit...
Soil salinity and drought are among the environmental stresses that most severely affect plant growt...
Halophyte microbiome contributes significantly to plant performance and can provide information rega...
Plant growth-promoting rhizobacteria (PGPR) are considered as bio-ameliorators that confer better sa...
Many halophytes and halophilic microorganisms are capable to adapt to the extremities of saline habi...
The adaptability of halophytes to increased soil salinity is related to complex rhizosphere interact...
Root−associated microbial communities play important roles in the process of adaptation of plant hos...
Many plants are unable to adapt to rapid environmental changes (e.g., salinity, drought, or limited ...
soil salinity has numerous negative effects on plant growth and poses a significant threat to agric...
Increased soil salinization may be caused by a natural (e.g. climate change) and anthropogenic (e.g....
Plant Growth Promoting (PGP) bacteria are known for their role in enhancing plant fitness both in co...
We examined Salicornia europaea, a nonmycorrhizal halophyte associated with specific and unique end...
Available online 31 March 2023Although soil and rhizosphere microbiomes in highly saline environment...
Salinity stress is one of the major abiotic stresses limiting crop production in arid and semi-arid ...
Halophytes classified under the common name of salicornia colonize salty and coastal environments ac...
Not AvailableExtreme saline environments represent unique ecosystems for novel microbial biodiversit...
Soil salinity and drought are among the environmental stresses that most severely affect plant growt...
Halophyte microbiome contributes significantly to plant performance and can provide information rega...
Plant growth-promoting rhizobacteria (PGPR) are considered as bio-ameliorators that confer better sa...
Many halophytes and halophilic microorganisms are capable to adapt to the extremities of saline habi...