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View article: Draft genome sequence of <i>Bacillus velezensis</i> strain Cas367 isolated from rhizosphere soil in China
Draft genome sequence of <i>Bacillus velezensis</i> strain Cas367 isolated from rhizosphere soil in China Open
A bacterial strain Bacillus velezensis Cas367 was isolated from the rhizosphere soils of tobacco in China. Here, we present the draft genome sequence of B. velezensis Cas367. The genome comprises a 3,889,832 bp, with G + C contents of 46.4…
View article: Changes in Tobacco Root Exudates Under Acidic Conditions Aggravate Soil Acidification, Attract Pathogens and Increase Plant Infection
Changes in Tobacco Root Exudates Under Acidic Conditions Aggravate Soil Acidification, Attract Pathogens and Increase Plant Infection Open
Soil acidification reduces crop production and exacerbates soil‐borne diseases. Root exudates play important roles in the interaction between plants and soil microorganisms, yet changes in root exudates under acidic soils and their influen…
View article: Construction of <i>Bacillus velezensis</i> engineering strains for producing 5‐aminolevulinic acid to elicit plant resistance against abiotic stresses and tobacco bacterial wilt disease
Construction of <i>Bacillus velezensis</i> engineering strains for producing 5‐aminolevulinic acid to elicit plant resistance against abiotic stresses and tobacco bacterial wilt disease Open
BACKGROUND Crops suffer from numerous biotic and abiotic stresses, leading to substantial economic losses globally. 5‐Aminolevulinic acid (ALA) has been shown to stimulate plant resistance, thereby alleviating stress effects. RESULTS This …
View article: Surfactin Activating KinB to Sense and Utilize Carbon Sources Against Cannibalism in <i>Bacillus amyloliquefaciens</i>
Surfactin Activating KinB to Sense and Utilize Carbon Sources Against Cannibalism in <i>Bacillus amyloliquefaciens</i> Open
Bacillus species are ubiquitous microorganisms with broad applications. The lipopeptide surfactin serves as a signaling molecule to activate histidine kinases, subsequently activating the global regulatory protein Spo0A to modulate quorum …
View article: Response of bacterial community metabolites to bacterial wilt caused by Ralstonia solanacearum: a multi-omics analysis
Response of bacterial community metabolites to bacterial wilt caused by Ralstonia solanacearum: a multi-omics analysis Open
The soil microbial community plays a critical role in promoting robust plant growth and serves as an effective defence mechanism against root pathogens. Current research has focused on unravelling the compositions and functions of diverse …
View article: Cultivation and application of nicotine-degrading bacteria and environmental functioning in tobacco planting soil
Cultivation and application of nicotine-degrading bacteria and environmental functioning in tobacco planting soil Open
Nicotine, a toxic and addictive alkaloid from tobacco, is an environmental pollutant. However, nicotine-degrading bacteria (NDB) and their function in tobacco planting soil are not fully understood. First, 52 NDB strains belonging to seven…
View article: The Endophytic Root Microbiome Is Different in Healthy and Ralstonia solanacearum-Infected Plants and Is Regulated by a Consortium Containing Beneficial Endophytic Bacteria
The Endophytic Root Microbiome Is Different in Healthy and Ralstonia solanacearum-Infected Plants and Is Regulated by a Consortium Containing Beneficial Endophytic Bacteria Open
Bacterial wilt disease causes heavy yield losses in many crops. Endophytic microbiomes play important roles in control of plant diseases.
View article: Cultivation and application of nicotine-degrading bacteria and environmental functioning in tobacco planting soil
Cultivation and application of nicotine-degrading bacteria and environmental functioning in tobacco planting soil Open
Nicotine, a toxic and addictive alkaloid from tobacco, is an environmental pollutant. However, nicotine-degrading bacteria (NDB) and their function in tobacco planting soil are not fully understood. First, 52 NDB strains belonging to seven…