Background When maize (Zea mays L.) is grown in the Northern hemisphere, its development is heavily arrested by chilling temperatures, especially at the juvenile phase. As some endophytes are beneficial for plants under stress conditions, we analyzed the impact of chilling temperatures on the root microbiome and examined whether microbiome-based analysis might help to identify bacterial strains that could promote growth under these temperatures. Results We investigated how the maize root microbiome composition changed by means of 16S rRNA gene amplicon sequencing when maize was grown at chilling temperatures in comparison to ambient temperatures by repeatedly cultivating maize in field soil. We identified 12 abundant and enriched bacterial ...
Maize is one of the most economically important crops in the world. Understanding how the genetics a...
Zea mays is one of the most important agricultural crop-species for the human diet, but little is kn...
Since the advent of agriculture, humans have been working to improve the growth of crop plants. Hist...
BACKGROUND: When maize (Zea mays L.) is grown in the Northern hemisphere, its development is heavily...
In order to grow, reproduce, and defend themselves, maize plants use various strategies to obtain ad...
peer-reviewedBackground Maize (Zea mays) is a C4 tropical cereal and its adaptation to temperate cl...
The rhizosphere microbiome, which is the microbial community living in close proximity to plant root...
Modern breeding primarily targets crop yield traits and is likely to influence root-associated micro...
<p>All plants contain endophytes that have the potential to provide fitness benefits to their hosts ...
Recent evidence suggests that root-colonizing microbes play a major role in nutrient use efficiency,...
Soil microbes that colonize plant roots and are responsive to differences in plant genotype remain t...
Engineering of plant rhizosphere with beneficial plant growth promoting (PGP) bacteria offers a grea...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Little is known about the genetic control of the root architecture of maize (Zea mays L) and its res...
Rhizosphere bacteria have significant contributions to crop health, productivity and carbon sequestr...
Maize is one of the most economically important crops in the world. Understanding how the genetics a...
Zea mays is one of the most important agricultural crop-species for the human diet, but little is kn...
Since the advent of agriculture, humans have been working to improve the growth of crop plants. Hist...
BACKGROUND: When maize (Zea mays L.) is grown in the Northern hemisphere, its development is heavily...
In order to grow, reproduce, and defend themselves, maize plants use various strategies to obtain ad...
peer-reviewedBackground Maize (Zea mays) is a C4 tropical cereal and its adaptation to temperate cl...
The rhizosphere microbiome, which is the microbial community living in close proximity to plant root...
Modern breeding primarily targets crop yield traits and is likely to influence root-associated micro...
<p>All plants contain endophytes that have the potential to provide fitness benefits to their hosts ...
Recent evidence suggests that root-colonizing microbes play a major role in nutrient use efficiency,...
Soil microbes that colonize plant roots and are responsive to differences in plant genotype remain t...
Engineering of plant rhizosphere with beneficial plant growth promoting (PGP) bacteria offers a grea...
Background: Plants influence their root and rhizosphere microbial communities through the secretion ...
Little is known about the genetic control of the root architecture of maize (Zea mays L) and its res...
Rhizosphere bacteria have significant contributions to crop health, productivity and carbon sequestr...
Maize is one of the most economically important crops in the world. Understanding how the genetics a...
Zea mays is one of the most important agricultural crop-species for the human diet, but little is kn...
Since the advent of agriculture, humans have been working to improve the growth of crop plants. Hist...