Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial bacteria also colonise this niche. Although many of these bacteria harbour plant-growth-promoting functions, it is not clear whether these less abundant nodule colonisers impact root–nodule symbiosis. We assessed the relationship between the nodule microbiome and nodulation as influenced by the soil microbiome, by using a metabarcoding approach to characterise the communities inside nodules of healthy and starved Lotus species. A machine learning algorithm and network analyses were used to identify nodule bacteria of interest, which were re-inoculated onto plants in controlled conditions to observe their potential functionality. The nod...
© 2020 by the authors.Lotus spp. are widely used as a forage to improve pastures, and inoculation wi...
The symbiosis between Lotus and rhizobia has been long considered very specific and only two bacteri...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota is dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial b...
Lotus japonicus, a model legume, develops an efficient, nitrogen-fixing symbiosis with Mesorhizobium...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
The symbiosis between Lotus and rhizobia has been long considered very specific and only two bacteri...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Root nodule bacteria (RNB) or "rhizobia" are a type of plant growth promoting bacteria, typified by ...
© 2020 by the authors.Lotus spp. are widely used as a forage to improve pastures, and inoculation wi...
The symbiosis between Lotus and rhizobia has been long considered very specific and only two bacteri...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota are dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial ...
Nodule microbiota is dominated by symbiotic nitrogen-fixing rhizobia, however, other non-rhizobial b...
Lotus japonicus, a model legume, develops an efficient, nitrogen-fixing symbiosis with Mesorhizobium...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
The symbiosis between Lotus and rhizobia has been long considered very specific and only two bacteri...
Rhizobia bacteria engage in nitrogen-fixing root nodule symbiosis, a mutualistic interaction with le...
Root nodule bacteria (RNB) or "rhizobia" are a type of plant growth promoting bacteria, typified by ...
© 2020 by the authors.Lotus spp. are widely used as a forage to improve pastures, and inoculation wi...
The symbiosis between Lotus and rhizobia has been long considered very specific and only two bacteri...
Background: Despite the knowledge that the soil–plant–microbiome nexus is shaped by interactions amo...