Abstract Background Peanut (Arachis hypogaea L.) is an important oil and economic crop. Calcium modulates plants in response to abiotic stresses and improves plant resistance to pathogens. Enrichment of beneficial microorganisms in the rhizosphere is associated with plant disease resistance and soil development. The purpose of this study was to analyze the differences in peanut rhizosphere microbial community structure between the calcium treatment and the control during two growth stages and to explain why calcium application could improve the resistance of peanuts to soil-borne pathogens. Results The 16S rDNA amplicon sequencing of rhizosphere microbiome showed that calcium application significantly enriched Serratia marcescens and other ...
Peanut yield and quality are seriously compromised by continuous monoculturing in the red soil regio...
<div><p>Plant health and soil fertility are affected by plant–microbial interactions in soils. Peanu...
Plant health and soil fertility are affected by plant-microbial interactions in soils. Peanut is an ...
The HSE-12 strain isolated from peanut rhizosphere soil was identified as Bacillus amyloliquefaciens...
Silicon (Si) has been shown to promote peanut growth and yield, but whether Si can enhance the resis...
Abstract The rhizosphere, a narrow zone of soil near plant roots, is a hot spot for microbial activi...
The HSE-12 strain isolated from peanut rhizosphere soil was identified as Bacillus amyloliquefaciens...
AbstractThe ability of tested rhizomicrobial isolates (Serratia marcescens and Trichoderma harzianum...
This study analyses the effect of inoculation of native phosphate solubilizing bacteria on peanut (A...
Abiotic stresses in sandy soil, which include saline water, saline soil, and lack of nutrients, affe...
The use of biological inoculants in replacement of the application of chemical fertilizers is a desi...
Synergism between beneficial rhizobacteria and fungal pathogens is poorly understood. Therefore, eva...
The ability of tested rhizomicrobial isolates (Serratia marcescens and Trichoderma harzianum) along ...
Abstract The plant growth promoting rhizobacteria (PGPR) and arbuscular mycorrhizal fungi (AMF) repr...
Plant signaling pathways activated by single microbial species may be modified by the presence of ot...
Peanut yield and quality are seriously compromised by continuous monoculturing in the red soil regio...
<div><p>Plant health and soil fertility are affected by plant–microbial interactions in soils. Peanu...
Plant health and soil fertility are affected by plant-microbial interactions in soils. Peanut is an ...
The HSE-12 strain isolated from peanut rhizosphere soil was identified as Bacillus amyloliquefaciens...
Silicon (Si) has been shown to promote peanut growth and yield, but whether Si can enhance the resis...
Abstract The rhizosphere, a narrow zone of soil near plant roots, is a hot spot for microbial activi...
The HSE-12 strain isolated from peanut rhizosphere soil was identified as Bacillus amyloliquefaciens...
AbstractThe ability of tested rhizomicrobial isolates (Serratia marcescens and Trichoderma harzianum...
This study analyses the effect of inoculation of native phosphate solubilizing bacteria on peanut (A...
Abiotic stresses in sandy soil, which include saline water, saline soil, and lack of nutrients, affe...
The use of biological inoculants in replacement of the application of chemical fertilizers is a desi...
Synergism between beneficial rhizobacteria and fungal pathogens is poorly understood. Therefore, eva...
The ability of tested rhizomicrobial isolates (Serratia marcescens and Trichoderma harzianum) along ...
Abstract The plant growth promoting rhizobacteria (PGPR) and arbuscular mycorrhizal fungi (AMF) repr...
Plant signaling pathways activated by single microbial species may be modified by the presence of ot...
Peanut yield and quality are seriously compromised by continuous monoculturing in the red soil regio...
<div><p>Plant health and soil fertility are affected by plant–microbial interactions in soils. Peanu...
Plant health and soil fertility are affected by plant-microbial interactions in soils. Peanut is an ...