Feed Your Friends: Do Plant Exudates Shape the Root Microbiome?
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- Type
- review
- Published
- 2018-01-01
- Cited by
- 1,782
- References
- 178
- Access
- Open access
- OpenAlex
- https://openalex.org/W2766229654
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205455681
Keywords
Biology, Microbiome, Plant root, Root (linguistics), Plant science
References
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- A phospholipid uptake system in the model plant Arabidopsis thaliana
- Mapping of Sugar and Amino Acid Availability in Soil around Roots with Bacterial Sensors of Sucrose and Tryptophan
- Root exudation and Fe uptake and transport in wheat genotypes differing in tolerance to Zn deficiency
- Root microbiome relates to plant host evolution in maize and other Poaceae.
- Influence of arbuscular mycorrhizal mycelial exudates on soil bacterial growth and community structure.
- Salicylic acid modulates colonization of the root microbiome by specific bacterial taxa
- Analysis of single root tip microbiomes suggests that distinctive bacterial communities are selected by Pinus sylvestris roots colonized by different ectomycorrhizal fungi.
- The role of ABCG-type ABC transporters in phytohormone transport
- Root mucilage from pea and its utilization by rhizosphere bacteria as a sole carbon source.
- A unified nomenclature of NITRATE TRANSPORTER 1/PEPTIDE TRANSPORTER family members in plants.
- Molecular Evolution of Plant AAP and LHT Amino Acid Transporters
- Defining the core Arabidopsis thaliana root microbiome
- The monosaccharide transporter(‐like) gene family in Arabidopsis
- Arabidopsis LHT1 Is a High-Affinity Transporter for Cellular Amino Acid Uptake in Both Root Epidermis and Leaf Mesophyll[W]
- Oxygenic photosynthesis as a protection mechanism for cyanobacteria against iron-encrustation in environments with high Fe2+ concentrations
- Divergent composition but similar function of soil food webs of individual plants: plant species and community effects.
- A gene in the multidrug and toxic compound extrusion (MATE) family confers aluminum tolerance in sorghum
- Grapevine MATE-Type Proteins Act as Vacuolar H+-Dependent Acylated Anthocyanin Transporters1[W][OA]
- Rhizobium lipo-chitooligosaccharide nodulation factors: signaling molecules mediating recognition and morphogenesis.
Cited by
- Lateral root enriched Massilia associated with plant flowering in maize
- Artificial Microbiome-Selection to Engineer Microbiomes That Confer Salt-Tolerance to Plants
- Stable isotope informed genome-resolved metagenomics reveals that Saccharibacteria utilize microbially-processed plant-derived carbon
- A novel method to evaluate nutrient retention by biological soil crust exopolymeric matrix
- The Soil-Borne Legacy.
- The Chemistry of Plant–Microbe Interactions in the Rhizosphere and the Potential for Metabolomics to Reveal Signaling Related to Defense Priming and Induced Systemic Resistance
- Metabolic coupling on roots
- Eight new Arthrinium species from China
- The Catabolite Repressor/Activator Cra Is a Bridge Connecting Carbon Metabolism and Host Colonization in the Plant Drought Resistance-Promoting Bacterium Pantoea alhagi LTYR-11Z
- Sugars en route to the roots. Transport, metabolism and storage within plant roots and towards microorganisms of the rhizosphere.
- Highly diverse endophytes in roots of Cycas bifida (Cycadaceae), an ancient but endangered gymnosperm
- Partner communication and role of nutrients in the arbuscular mycorrhizal symbiosis.
- New Fusarium species from the Kruger National Park, South Africa
- Sampling root exudates – Mission impossible?
- The ecological role of volatile mediated interactions belowground
- Rhizosphere microbial communities of canola and wheat at six paired field sites
- Changes in rhizosphere microbial communities in potted cucumber seedlings treated with syringic acid
- Root exudate metabolites drive plant-soil feedbacks on growth and defense by shaping the rhizosphere microbiota
- Rootstocks Shape the Rhizobiome: Rhizosphere and Endosphere Bacterial Communities in the Grafted Tomato System
- Need for Laboratory Ecosystems To Unravel the Structures and Functions of Soil Microbial Communities Mediated by Chemistry
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