Chitin Mixed in Potting Soil Alters Lettuce Growth, the Survival of Zoonotic Bacteria on the Leaves and Associated Rhizosphere Microbiology
Explore this paper's citation graph
Summary
This is the first study to investigate the use of soil amendments to control the survival of S. enterica on plant leaves and to enhance the understanding of the response of the rhizosphere microbiome to chitin amendment.
- Type
- article
- Published
- 2016-04-21
- Cited by
- 94
- References
- 92
- Access
- Open access
- OpenAlex
- https://openalex.org/W27148242
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16429539
Keywords
Humanities, History, Art
References
- Phyllosphere Microbiota Composition and Microbial Community Transplantation on Lettuce Plants Grown Indoors
- Enhancement of soil suppressiveness against Rhizoctonia solani in sugar beet by organic amendments
- Biopreservative methods to control the growth of foodborne pathogens on fresh-cut lettuce.
- Chitinase genes revealed and compared in bacterial isolates, DNA extracts and a metagenomic library from a phytopathogen-suppressive soil.
- The rhizosphere microbiome and plant health.
- Application of Bacillus subtilis to the Roots of Leafy Greens, in the Presence of Listeria innocua and Salmonella Newport, Induces Closure of Stomata
- In vitro suppression of fungi caused by combinations of apparently non-antagonistic soil bacteria.
- Enzymatic deacetylation of chitin by extracellular chitin deacetylase from a newly screened Mortierella sp. DY-52.
- A Large Escherichia coli O157 Outbreak in Sweden Associated with Locally Produced Lettuce
- Presence and survival of Escherichia coli O157:H7 on lettuce leaves and in soil treated with contaminated compost and irrigation water.
- Extraction, characterization, and nematicidal activity of chitin and chitosan derived from shrimp shell wastes
- Impact of a woody biochar on properties of a sandy loam soil and spring barley during a two-year field experiment
- Non‐pathogenic rhizosphere bacteria belonging to the genera Rhizorhapis and Sphingobium provide specific control of lettuce corky root disease caused by species of the same bacterial genera
- Defining the core Arabidopsis thaliana root microbiome
- Soil Bacterial Community Shifts after Chitin Enrichment: An Integrative Metagenomic Approach
- Potential of Lecanicillium spp. for management of insects, nematodes and plant diseases.
- Season, Irrigation, Leaf Age, and Escherichia coli Inoculation Influence the Bacterial Diversity in the Lettuce Phyllosphere
- Chitin-mediated changes in bacterial communities of the soil, rhizosphere and within roots of cotton in relation to nematode control
- EHEC outbreak among staff at a children's hospital – use of PCR for verocytotoxin detection and PFGE for epidemiological investigation
- A comprehensive molecular phylogeny of the Mortierellales (Mortierellomycotina) based on nuclear ribosomal DNA
Cited by
- Dynamics in the Strawberry Rhizosphere Microbiome in Response to Biochar and Botrytis cinerea Leaf Infection
- Effects of Liquid Organic Fertilizers on Plant Growth and Rhizosphere Soil Characteristics of Chrysanthemum
- Temporal Dynamics of Bacterial and Fungal Colonization on Plastic Debris in the North Sea.
- Microbial community analysis in soil (rhizosphere) and the marine (plastisphere) environment in function of plant health and biofilm formation
- Soil Microbiomes Associated with Verticillium Wilt-Suppressive Broccoli and Chitin Amendments are Enriched with Potential Biocontrol Agents.
- Study and exploitation of diverse soil environments for novel natural product discovery using metagenomic approaches
- Trichoderma-Inoculated Miscanthus Straw Can Replace Peat in Strawberry Cultivation, with Beneficial Effects on Disease Control
- LasΔ5315 Effector Induces Extreme Starch Accumulation and Chlorosis as Ca. Liberibacter asiaticus Infection in Nicotiana benthamiana
- Mycoplasma-related endobacteria within Mortierellomycotina fungi: diversity, distribution and functional insights into their lifestyle
- Soil detrital inputs increase stimulate bacterial saprotrophs with different timing and intensity compared to fungal saprotrophs
- Belowground Microbiota and the Health of Tree Crops
- Chitinolytic functions in actinobacteria: ecology, enzymes, and evolution
- Interactions between Mycorrhizal Fungi, Tea Wastes, and Algal Biomass Affecting the Microbial Community, Soil Structure, and Alleviating of Salinity Stress in Corn Yield (Zea mays L.)
- Interactions between humic substances and organic amendments affecting soil biological properties and growth of Zea mays L. in the arid land region
- Bacterial and fungal saprotrophs are strongly stimulated weeks to months after forest soil profile reconstruction
- Selection, Succession, and Stabilization of Soil Microbial Consortia
- Nanofibrillation enhances the protective effect of crab shells against Fusarium wilt disease in tomato.
- Sebacinoids within rhizospheric fungal communities associated with subsistence farming in the Congo Basin: a needle in each haystack.
- Peat substrate amended with chitin modulates the N-cycle, siderophore and chitinase responses in the lettuce rhizobiome
- Sclerotia of a phytopathogenic fungus restrict microbial diversity and improve soil health by suppressing other pathogens and enriching beneficial microorganisms.
Related papers
No related papers recorded.