[HTML][HTML] Climate change and salinity effects on crops and chemical communication between plants and plant growth-promoting microorganisms under stress

A Ullah, A Bano, N Khan - Frontiers in Sustainable Food Systems, 2021 - frontiersin.org
During the last two decades the world has experienced an abrupt change in climate. Both
natural and artificial factors are climate change drivers, although the effect of natural factors …

Disease suppressive soils: new insights from the soil microbiome

D Schlatter, L Kinkel, L Thomashow, D Weller… - …, 2017 - Am Phytopath Society
Soils suppressive to soilborne pathogens have been identified worldwide for almost 60
years and attributed mainly to suppressive or antagonistic microorganisms. Rather than …

[HTML][HTML] Plant growth-promoting rhizobacteria as a green alternative for sustainable agriculture

H Chandran, M Meena, P Swapnil - Sustainability, 2021 - mdpi.com
Environmental stress is a major challenge for sustainable food production as it reduces yield
by generating reactive oxygen species (ROS) which pose a threat to cell organelles and …

Induced systemic resistance by beneficial microbes

CMJ Pieterse, C Zamioudis… - Annual review of …, 2014 - annualreviews.org
Beneficial microbes in the microbiome of plant roots improve plant health. Induced systemic
resistance (ISR) emerged as an important mechanism by which selected plant growth …

Control of nitrogen fixation in bacteria that associate with cereals

MH Ryu, J Zhang, T Toth, D Khokhani, BA Geddes… - Nature …, 2020 - nature.com
Legumes obtain nitrogen from air through rhizobia residing in root nodules. Some species of
rhizobia can colonize cereals but do not fix nitrogen on them. Disabling native regulation …

[HTML][HTML] Disease-suppressive soils—beyond food production: a critical review

S Jayaraman, AK Naorem, R Lal, RC Dalal… - Journal of Soil Science …, 2021 - Springer
In the pursuit of higher food production and economic growth and increasing population, we
have often jeopardized natural resources such as soil, water, vegetation, and biodiversity at …

[HTML][HTML] Defining plant growth promoting rhizobacteria molecular and biochemical networks in beneficial plant-microbe interactions

A Rosier, FHV Medeiros, HP Bais - Plant and Soil, 2018 - Springer
Background Our knowledge of plant beneficial bacteria in the rhizosphere is rapidly
expanding due to intense interest in utilizing these types of microbes in agriculture …

Diversity and natural functions of antibiotics produced by beneficial and plant pathogenic bacteria

JM Raaijmakers, M Mazzola - Annual review of phytopathology, 2012 - annualreviews.org
Soil-and plant-associated environments harbor numerous bacteria that produce antibiotic
metabolites with specific or broad-spectrum activities against coexisting microorganisms …

Microbiology, genomics, and clinical significance of the Pseudomonas fluorescens species complex, an unappreciated colonizer of humans

BS Scales, RP Dickson, JJ LiPuma… - Clinical microbiology …, 2014 - Am Soc Microbiol
Pseudomonas fluorescens is not generally considered a bacterial pathogen in humans;
however, multiple culture-based and culture-independent studies have identified it at low …

[HTML][HTML] Comparative Genomics of Plant-Associated Pseudomonas spp.: Insights into Diversity and Inheritance of Traits Involved in Multitrophic Interactions

JE Loper, KA Hassan, DV Mavrodi, EW Davis… - PLoS …, 2012 - journals.plos.org
We provide here a comparative genome analysis of ten strains within the Pseudomonas
fluorescens group including seven new genomic sequences. These strains exhibit a diverse …