Results 71 to 80 of about 7,940,551 (226)
Prolonged in vitro micropropagation reshaped the strawberry endomicrobiome, reducing bacterial diversity and community complexity. Biotization with selected plant growth‐promoting bacteria partially compensated for these changes by improving plant performance and acclimatization, supporting microbiome‐assisted approaches for tissue culture systems ...
A. M. G. Sepúlveda +6 more
wiley +1 more source
plant growth‐promoting rhizobacteria
International audiencePlant evolutionary history has had profound effects on belowground traits, which is likely to have impacted the ability to interact with microorganisms, but consequences on root colonization and gene expression by plant growth ...
Alaoui, Maroua +13 more
core +1 more source
Beneficial rhizobacteria dwell in plant roots and promote plant growth, development, and resistance to various stress types. In recent years there have been large-scale efforts to culture root-associated bacteria and sequence their genomes to uncover ...
Miriam Lucke +2 more
doaj +1 more source
Soil inoculation enhances early‐phase reintroduction success in two rare plant species
Abstract Introduction Reintroduction for conservation is an important measure to restore populations of vulnerable plant species. However, reintroduction success rates are relatively low. Inoculating reintroduced plants with facilitative microorganisms from native populations may enhance their performance.
Sina Bohm +6 more
wiley +1 more source
Plant growth-promoting rhizobacteria (PGPR) has effectively reduced infection of pathogens. Bacillus polimixa BG25, B. subtilis SB3, Pseudomonas fluorescens PG01, P. fluorescens S32, and their combinations were used as seed treatment.
Hari Priwiratama +2 more
doaj +1 more source
ABSTRACT Synthetic biology has recently proven to be a valuable tool for enhancing agriculture even in the face of environmental and biological stresses. Understanding the challenges that militate synthetic biology will assist in ensuring safe, stable, and scalable crop production.
Ben Jesuorsemwen Enagbonma +6 more
wiley +1 more source
Plant Root Enhancement by Plant Growth Promoting Rhizobacteria
Soil microorganisms perform a variety of functions, some of which are extremely helpful to the maintenance of ecological sustainability. Bacteria thriving in the plant rhizosphere drive plant development through a variety of ways, which are referred to as PGPRs (plant growth-promoting rhizobacteria). Despite the fact that there are many different types
Metin Turan +9 more
openaire +2 more sources
Metagenomic Insights Into Microbial Diversity of Tea Rhizosphere of the Kangra Valley
Tea rhizosphere microbial communities in Kangra Valley. ABSTRACT This study provides the first metagenomic assessment of microbial diversity from the tea rhizosphere of the Kangra valley. Tea rhizosphere soil samples were collected from 4 locations (Dharamshala, Baijnath, Palampur, and Joginder Nagar) of the Kangra valley.
Rishu Thakur +3 more
wiley +1 more source
Bais, Harsh P.Abiotic stress, such as stress from lack of nutrients or water, is responsible for over half of all global crop loss each year. When plant growth-promoting rhizobacteria (PGPR) and arbuscular mycorrhizal fungi (AMF) are added to the soil or
Savastano, Noah
core +1 more source
Plant growth promoting rhizobacteria: potential for sustainable agriculture
With growing world population, there is an exponential increase in demand for food. The use of chemical fertilizers to improve crop productivity is associated with considerable health risks, environmental hazards, and costs.
Vikas Sharma +2 more
doaj

