Interact to Survive: Phyllobacterium brassicacearum Improves Arabidopsis  Tolerance to Severe Water Deficit and Growth Recovery

Interact to Survive: Phyllobacterium brassicacearum Improves Arabidopsis Tolerance to Severe Water Deficit and Growth Recovery

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Recent methods of drought stress tolerance in plants

Quantifying spatial heterogeneity of chlorophyll fluorescence during plant growth and in response to water stress, Plant Methods

Frontiers Isolation of Rhizosphere Bacteria That Improve Quality and Water Stress Tolerance in Greenhouse Ornamentals

Interact to Survive: Phyllobacterium brassicacearum Improves Arabidopsis Tolerance to Severe Water Deficit and Growth Recovery

Plant Growth-Promoting Rhizobacteria (PGPR): A New Perspective in Abiotic Stress Management of Crop Plants

Quantifying spatial heterogeneity of chlorophyll fluorescence during plant growth and in response to water stress, Plant Methods

Inoculation of tomato plants with selected PGPR represents a feasible alternative to chemical fertilization under salt stress - Cordero - 2018 - Journal of Plant Nutrition and Soil Science - Wiley Online Library

Bacterial-mediated drought tolerance: Current and future prospects - ScienceDirect

CSIRO PUBLISHING Functional Plant Biology

PDF) Using Plant Phenomics to Exploit the Gains of Genomics

Development of an inexpensive matrix-assisted laser desorption—time of flight mass spectrometry method for the identification of endophytes and rhizobacteria cultured from the microbiome associated with maize [PeerJ]