AbstractGrass roots can harbor abundant endophytic N2-fixing microbes (diazotrophs), but their abundance and activity compared to those on legumes and in soil crusts is still unknown. Here, in a natural ecosystem, the Serengeti of East Africa, we explored whether herbivores and soil nutrients limited grass root endophyte diazotroph abundance and their root mass-specific and area-specific N2-fixation, as they often do for diazotrophs symbiotic with legumes and those free-living in soil. N2-fixation and copy number of the nitrogenase gene nifH was measured with stable isotope and molecular methods, respectively, for the dominant grass Themeda triandra, and legume, Indigofera volkensii, and in the top 5cm of soil in a 16-year herbivore exclosu...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...
Non-symbiotic nitrogen (N2) fixation by diazotrophic bacteria is a potential source for biological N...
Native C4 grasses have become the preferred species for native perennial pastures and bioenergy prod...
AbstractGrass roots can harbor abundant endophytic N2-fixing microbes (diazotrophs), but their abund...
Summer-growing perennial grasses such as Panicum coloratum L. cv. Bambatsi (Bambatsi panic), Chloris...
Non-symbiotic nitrogen-fixing bacterial diazotrophs closely associated with the roots of grasses pro...
The extent to which the N-2-fixing bacterial endophyte Azoarcus sp. strain BH72 in the rhizosphere o...
Numerous reforestation projects have been conducted to improve soil fertility in degraded forests, o...
Using robust, pairwise comparisons and a global dataset, we show that nitrogen concentration per uni...
Nitrogen availability frequently limits plant growth in natural ecosystems. N-fixers should have a ...
Biological N2 fixation represents the major source of N input in many agricultural soils including t...
Abstract : Background and aims: The amount of nitrogen (N) derived from symbiotic N2 fixation by leg...
Non-symbiotic nitrogen (N2) fixation by diazotrophic bacteria is a potential source for biological N...
Forage legumes form N2-fixing symbioses with rhizobia and may thus make substantial contributions to...
Background and aims The amount of nitrogen (N) derived from symbiotic N2 fixation by legumes in g...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...
Non-symbiotic nitrogen (N2) fixation by diazotrophic bacteria is a potential source for biological N...
Native C4 grasses have become the preferred species for native perennial pastures and bioenergy prod...
AbstractGrass roots can harbor abundant endophytic N2-fixing microbes (diazotrophs), but their abund...
Summer-growing perennial grasses such as Panicum coloratum L. cv. Bambatsi (Bambatsi panic), Chloris...
Non-symbiotic nitrogen-fixing bacterial diazotrophs closely associated with the roots of grasses pro...
The extent to which the N-2-fixing bacterial endophyte Azoarcus sp. strain BH72 in the rhizosphere o...
Numerous reforestation projects have been conducted to improve soil fertility in degraded forests, o...
Using robust, pairwise comparisons and a global dataset, we show that nitrogen concentration per uni...
Nitrogen availability frequently limits plant growth in natural ecosystems. N-fixers should have a ...
Biological N2 fixation represents the major source of N input in many agricultural soils including t...
Abstract : Background and aims: The amount of nitrogen (N) derived from symbiotic N2 fixation by leg...
Non-symbiotic nitrogen (N2) fixation by diazotrophic bacteria is a potential source for biological N...
Forage legumes form N2-fixing symbioses with rhizobia and may thus make substantial contributions to...
Background and aims The amount of nitrogen (N) derived from symbiotic N2 fixation by legumes in g...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...
Non-symbiotic nitrogen (N2) fixation by diazotrophic bacteria is a potential source for biological N...
Native C4 grasses have become the preferred species for native perennial pastures and bioenergy prod...