Rhizobacterial community structure differences among sorghum cultivars in different growth stages and soils
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Summary
This study is the first to simultaneously investigate the contributions of plant genotype, plant growth stage and soil type in shaping sorghum rhizosphere bacterial community composition.
- Type
- article
- Published
- 2017-08-01
- Cited by
- 181
- References
- 81
- Access
- Open access
- OpenAlex
- https://openalex.org/W28830071
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27891473
Keywords
Humanities, Philosophy, Art
References
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- Variation of Microbial Rhizosphere Communities in Response to Crop Species, Soil Origin, and Inoculation with Sinorhizobium meliloti L33
- Plant genotype strongly modifies the structure and growth of maize rhizosphere microbial communities
- Effects of Plant Genotype and Growth Stage on the Betaproteobacterial Communities Associated with Different Potato Cultivars in Two Fields
- Evidence of variability in the structure and recruitment of rhizospheric and endophytic bacterial communities associated with arable sweet sorghum (Sorghum bicolor (L) Moench)
- 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.
- Stability of organic carbon in deep soil layers controlled by fresh carbon supply
- Impacts of bulk soil microbial community structure on rhizosphere microbiomes of Zea mays
- Dynamics of the bacterial community structure in the rhizosphere of a maize cultivar
- Root Exudation of Phytochemicals in Arabidopsis Follows Specific Patterns That Are Developmentally Programmed and Correlate with Soil Microbial Functions
- Bacterial Diversity in Rhizospheres of Nontransgenic and Transgenic Corn
- Deciphering the Rhizosphere Microbiome for Disease-Suppressive Bacteria
- Harnessing the rhizosphere microbiome through plant breeding and agricultural management
- Building the crops of tomorrow: advantages of symbiont-based approaches to improving abiotic stress tolerance
- Long-term effects of eight soil health treatments to control plant-parasitic nematodes and Verticillium dahliae in agro-ecosystems
Cited by
- Co-Variation of Bacterial and Fungal Communities in Different Sorghum Cultivars and Growth Stages is Soil Dependent
- Previous crop and rotation history effects on maize seedling health and associated rhizosphere microbiome
- Structural diversity in the strigolactones.
- The role of strigolactones in resistance, tolerance and control of Striga infection in Sorghum
- Native bacteria promote plant growth under drought stress condition without impacting the rhizomicrobiome
- Large-scale replicated field study of maize rhizosphere identifies heritable microbes
- Effect of Burkholderia tropica and Herbaspirillum frisingense strains on sorghum growth is plant genotype dependent
- Impact of domestication on the evolution of rhizomicrobiome of rice in response to the presence of Magnaporthe oryzae.
- EXPLORATION OF SOIL MICROBIAL DIVERSITY IN RHIZOSPHERE OF SOME TRITICEAE SPECIES IN SHANXI, CHINA
- Legacy of land use history determines reprogramming of plant physiology by soil microbiome
- The ability of plants to produce strigolactones affects rhizosphere community composition of fungi but not bacteria
- Characterization and variation of the rhizosphere fungal community structure of cultivated tetraploid cotton
- Endophytic Fungi from Sorghum bicolor (L.) Moench: Influence of Genotypes and Crop Systems and Evaluation of Antimicrobial Activity
- Amazon forest‐to‐agriculture conversion alters rhizosphere microbiome composition while functions are kept
- Mapping of long-term impact of conventional and organic soil management on resident and active fractions of rhizosphere communities of barley
- Long-Term Organic Farming Manipulated Rhizospheric Microbiome and Bacillus Antagonism Against Pepper Blight (Phytophthora capsici)
- Strigolactones - Biology and Applications
- Ecology and Evolution of Plant Microbiomes.
- Belowground microbial communities respond to water deficit and are shaped by decades of maize hybrid breeding.
- Strigolactones shape the rhizomicrobiome in rice (Oryza sativa).
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