Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - Journal of Plant …, 2017 - Taylor & Francis
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

[PDF][PDF] Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova, LA Räsänen… - 2017 - researchportal.helsinki.fi
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - Journal of Plant …, 2017 - search.proquest.com
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

[PDF][PDF] Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - JOURNAL OF PLANT …, 2017 - researchgate.net
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - Journal of Plant …, 2017 - ingentaconnect.com
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture.

D Egamberdieva, S Wirth, D Jabborova, LA Räsänen… - 2017 - cabidigitallibrary.org
ABSTRACT It is a well accepted strategy to improve plant salt tolerance through inoculation
with beneficial microorganisms. However, its underlying mechanisms still remain unclear. In …

[引用][C] Coordination betweenBradyrhizobiumandPseudomonasalleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth… - Journal of Plant …, 2017 - ui.adsabs.harvard.edu
Coordination betweenBradyrhizobiumandPseudomonasalleviates salt stress in soybean
through altering root system architecture - NASA/ADS Now on home page ads icon ads …

[PDF][PDF] Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - JOURNAL OF PLANT …, 2017 - core.ac.uk
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

[PDF][PDF] Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova, LA Räsänen… - 2017 - helda.helsinki.fi
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …

[PDF][PDF] Coordination between Bradyrhizobium and Pseudomonas alleviates salt stress in soybean through altering root system architecture

D Egamberdieva, S Wirth, D Jabborova… - JOURNAL OF PLANT …, 2017 - academia.edu
It is a well accepted strategy to improve plant salt tolerance through inoculation with
beneficial microorganisms. However, its underlying mechanisms still remain unclear. In the …