Comparing microbiome: taxonomic profiles and functional profiles of publically available database.
DOI: None
Created at: 27th Jun 2022 at 11:40
Exploring the native habitat and wild relatives of common bean (Phaseolus vulgaris) for 'missing plant microbes'
The rhizosphere microbiome is important for plant growth and health, contributing to nutrient acquisition and (a)biotic stress tolerance. Rhizosphere microbiome composition is shaped in part by the plant genotype, but the underlying genetic basis is largely unknown. Going back to the roots, we investigated how plant domestication affected rhizosphere microbiome assembly of common bean (Phaseolus vulgaris), a key food crop worldwide. DArT genotyping and plant phenotyping showed substantial genetic
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Rhizosphere
Characterization of the bacterial communities associated with the rhizosphere and soils surrounding Arabidopsis and Brachypodium
EPICON Sorghum Drought Microbiome
##### Experimental design# The following sequence data was used as part of a DOE funded project to explore the relationship between drought and microbial recruitment in Sorghum bicolor. For detailed descriptions of experimental design, please see the associated publication. In brief, we planted two different sorghum cultivars (RTx430 and BTx642) within a randomized block design that accounted for treatments, genotypes and replication, with three replicate blocks in total. From this field experiment,
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willow rhizosphere Metagenome
Plants interact closely with microbes, which are partly responsible for plant growth, health and adaptation to stressful environments. Engineering the plant-associated microbiome could improve plants survival and performance in stressful environments such as contaminated soils. Here, willow cuttings were planted into highly petroleum-contaminated soils that had been gamma-irradiated and subjected to one of four treatments: inoculation with rhizosphere soil from a willow that grew well (LA) or
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P2IRC 1.3 Soil microbiome as plant phenotype
The study goal is to support crop breeders in identifying microbial communities and characteristics that improve crop yield. The microbial community associated with the roots of canola grown over a three-year period in a Saskatchewan field will be analyzed. DNA extraction and analysis results from the roots and soils will identify specific microbes or communities of microbes connected with the high yielding varieties. In combination with other phenotypic data, unique identifiers of the microbial
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Switchgrass rhizosphere
Characterization of bacterial and fungal communities in switchgrass rhizosphere
Extensive overlap of tropical rainforest bacterial endophytes between soil, plant parts and plant species.
The extent to which distinct bacterial endophyte communities occur between different plant organs and species is unclear, and has implications for bioprospecting efforts. Using V3 region of bacterial 16S rRNA gene, we investigated the diversity patterns in total, uncultured bacterial endophyte communities of three rainforest plant species, comparing leaf, stem, and root endophytes, plus rhizosphere soil community employing MiSeq. There was extensive overlap in bacterial communities between plant
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Microbial biodiversity and structure in soil
Secondary metabolites like pyrrolizidine alkaloids (PAs) act as defense compounds against aboveground and belowground attackers. We studied to get a better understanding of relevance of microbial diversity in the rhizosphere for plant growth and behavior, specifically related to secondary metabolites production. We made soil dilution to compare the composition of soil microbial communities of soil suspension, incubation and rhizosphere soil by 16s rRNA high throughput pyrosequencing, as a
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Created: 27th Jun 2022 at 11:40