<div><p>Plants have developed a wide-range of adaptations to overcome nutrient limitation, including changes to the quantity and composition of carbon-containing compounds released by roots. Root-associated bacteria are largely influenced by these compounds which can be perceived as signals or substrates. Here, we evaluate the effect of root exudates collected from maize plants grown under nitrogen (N), phosphate (P), iron (Fe) and potassium (K) deficiencies on the transcriptome of the plant growth promoting rhizobacterium (PGPR) <i>Bacillus amyloliquefaciens</i> FZB42. The largest shifts in gene expression patterns were observed in cells exposed to exudates from N-, followed by P-deficient plants. Exudates from N-deprived maize triggered a...
We present studies where use of plant growth promoting bacteria resulted in improved plant performan...
<p>1. Repression of ribosomal proteins by N-deficient maize exudates (possibly antibiotic compounds)...
The indiscriminate and intensive use of agrochemicals in developing nations to enhance crop producti...
Plants have developed a wide-range of adaptations to overcome nutrient limitation, including changes...
Abstract Background Plant root exudates have been shown to play an important role in mediating inter...
Background and aims: Plant-bacterial interactions in the rhizosphere are important in mediating soil...
The outcome of root-microbiome interactions determines the health and yield of crop plants. Besides ...
Proteins secreted by Bacillus amyloliquefaciens FZB42, a root-associated plant growth-promoting rhiz...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Root exudates could be considered as communicating molecules used by plants to interact with soil. I...
Although interactions between plants and microbes at the plant–soil interface are known to be import...
Plants growing in soil develop close associations with soil microorganisms, which inhabit the areas ...
We present studies where use of plant growth promoting bacteria resulted in improved plant performan...
<p>1. Repression of ribosomal proteins by N-deficient maize exudates (possibly antibiotic compounds)...
The indiscriminate and intensive use of agrochemicals in developing nations to enhance crop producti...
Plants have developed a wide-range of adaptations to overcome nutrient limitation, including changes...
Abstract Background Plant root exudates have been shown to play an important role in mediating inter...
Background and aims: Plant-bacterial interactions in the rhizosphere are important in mediating soil...
The outcome of root-microbiome interactions determines the health and yield of crop plants. Besides ...
Proteins secreted by Bacillus amyloliquefaciens FZB42, a root-associated plant growth-promoting rhiz...
Improving nitrogen (N) acquisition by crops from soil is essential to reduce fertilization rates whi...
Root exudates could be considered as communicating molecules used by plants to interact with soil. I...
Although interactions between plants and microbes at the plant–soil interface are known to be import...
Plants growing in soil develop close associations with soil microorganisms, which inhabit the areas ...
We present studies where use of plant growth promoting bacteria resulted in improved plant performan...
<p>1. Repression of ribosomal proteins by N-deficient maize exudates (possibly antibiotic compounds)...
The indiscriminate and intensive use of agrochemicals in developing nations to enhance crop producti...