comparative analysis of bacillus

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comparative analysis of bacillus

Genome Comparison Identifies Different Bacillus Species in a

To date, sequencing and comparative analysis of genomes of several Bacillus species have provided important insights about their evolution, genetics, and Abstract. The primary structures of the 16S rRNAs of Bacillus anthracis, Bacillus cereus, Bacillus mycoides, and Bacillus thuringiensis were determined by using the reverse Comparative analysis of Bacillus anthracis, Bacillus cereus,

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Complete genome sequencing and comparative genomic analyses of Bacillus

The genes related to the resistance of Sb(III) and other heavy metal (loid) s in the Bacillus sp. S3 genome and other comparative Bacillus genomes were identified Comparative Analysis of Bacillus cereus Group Isolates' Resistance Using Disk Diffusion and Broth Microdilution and the Correlation between Antimicrobial Comparative Analysis of Bacillus cereus Group Isolates'

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Comparative genome analysis of Bacillus spp. and its

Bacillus genus: comparative analysis of Bacillus genome The rate at which entire microbial genomes are being sequenced has grown rapidly over the past years Comparative genome analysis Bacillus sp. TK-2 and Bacillus cereus strain AI (GenBank: CP015727.1) with a high similarity of 98.26% was performed to discuss the Complete genome sequencing of Bacillus sp. TK-2, analysis

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Comparative analysis of the complete genome sequence of

Comparative analysis of the complete genome sequence of the plant growth–promoting bacterium Bacillus amyloliquefaciens FZB42 Xiao Hua Chen, Comparative analysis of the genome of B. coagulans with other Bacillus and Lactobacillus spp. reveals the presence of some genes common to both genera Comparative Genomics of Bacillus species and its Relevance

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Comparative genomics analysis of Bacillus velezensis

Bacillus velezensis has recently received increasing attention as a biological fungicide and a potential probiotic agent because of its broad spectrum of antibacterial and antifungal activities. Here, we evaluated the beneficial traits of a newly isolated B. velezensis strain LOH112 using comprehensive bioinformatics and The majority of mobile genetic elements (MGEs) mainly distributed on chromosomes within the Bacillus genus. Pan-genome analysis showed that the 45 genomes contained 554 core genes and many unique genes were dissected in analyzed genomes. Whole genomic alignment showed that Bacillus genus underwent frequently large-scale Complete genome sequencing and comparative genomic analyses of Bacillus

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Whole-genome analysis of bacillus velezensis ZF2, a

Comparative genomics analysis of Bacillus velezensis ZF2 with other Bacillus strains. To understand the genetic relationships between B. velezensis ZF2 and other Bacillus strains, a phylogenetic tree was constructed based on four housekeeping genes (16S rRNA, rpoD, pgk, and gyrB) (Table S2).Table 1 Genomic composition of Bacillus thuringiensis strain HD521 and HS18-1. Full size table. Although both the HD521 and HS18-1 genomes carry plasmids, but the HS18-1 have more plasmids thanComparative genome analysis of Bacillus thuringiensis strain HD521 and

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Comparative Analysis of Genotyping Methods for Bacillus anthracis

Abstract Genetic typing of the anthrax causative agent is used in epidemiological investigations of infection outbreaks and serves as a tool for studying the evolution of this pathogenic species. Analytical, technical, and economic possibilities of the most common modern methods of genetic typing of B. anthracis have been studied on A comparative analysis among the CDSs of the four Bacillus strains showed that 1,877 genes were shared by all four selected Bacillus strains (Fig. 5). A total of 1,965 genes were common between HNA3 and B. subtilis 168. HNA3 shared 3,505 genes with B. velezensis FZB42 while shared 3,358 genes with B. amyloliquefaciens DSM7. On the Comparative Genome Analysis Reveals Phylogenetic Identity of Bacillus

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Comparative analysis of Bacillus weihenstephanensis KBAB4

The impact of Bacillus weihenstephanensis KBAB4 sporulation temperature history was assessed on spore heat resistance, germination and outgrowth capacity at a temperature range from 7 to 30 degrees C. Sporulation rate and efficiency decreased at low temperature, as cells sporulated at 12, 20 and 30 degrees C with Bacillus subtilis and its sister species B. amyloliquefaciens comprise an evolutionary compact but physiologically versatile group of bacteria that includes strains isolated from diverse habitats. Many of these strains are used as plant growth-promoting rhizobacteria (PGPR) in agriculture and a plant-specialized subspecies of B. amyloliquefaciens—B. Frontiers Comparative Genomic Analysis of Bacillus

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(PDF) Comparative Genomic Analysis of Bacillus

Comparative Genomic Analysis of Bacillus amyloliquefaciens and Bacillus subtilis Reveals Evolutional Traits for Adaptation to Plant-Associated Habita ts.pdf Content available from CC BY 4.0:Fusarium graminearum is the causal agent of Fusarium Head Blight, a serious disease affecting grain crops worldwide. Biological control involves the use of microorganisms to combat plant pathogens such as F. graminearum. Strains of Bacillus velezensis are common biological control candidates for use against F. graminearum and Comparative transcriptome analysis reveals the biocontrol

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Whole-Genome Sequencing and Comparative Genome Analysis of Bacillus

Bacillus subtilis is the main component in the fermentation of soybeans. To investigate the genetics of the soybean-fermenting B. subtilis strains and its relationship with the productivity of extracellular poly-γ-glutamic acid (γPGA), we sequenced the whole genome of eight B. subtilis stains isolated from non-salted fermented soybean foods in Bacillus, an excellent organic-degrading agent, can degrade lignocellulose. Notably, some B. velezensis strains encode lignocellulases. However, their ability to degrade lignocellulose in fermented feed is not much appreciated. This study performed a comparative genomic analysis of twenty-three B. velezensis strains to find common Comparative genomic and transcriptome analysis of Bacillus

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Comparative Transcriptome Analysis Reveals the Biocontrol

In addition, a comparative transcriptome analysis was employed to figure out more detail mechanisms and the results revealed almost thousands of DEGs in the process of B. velezensis F21 triggered ISR to Fon, among these identified DEGs, a large number of genes belong to some TFs, plant resistant genes, some genes involved in Here we performed a comparative physiological and transcriptional analysis of Bacillus subtilis stressed with three different weak organic acids: the commonly used food preservatives sorbic- and acetic-acid, plus the well-known uncoupler carbonyl cyanide-m-chlorophenyl hydrazone (CCCP). The concentration of each compound needed to cause Comparative physiological and transcriptional analysis of

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Comparative genomic analysis of Bacillus paralicheniformis

Members of the genus Bacillus are important plant growth-promoting rhizobacteria that serve as biocontrol agents. Bacillus paralicheniformis MDJK30 is a PGPR isolated from the peony rhizosphere and can suppress plant-pathogenic bacteria and fungi. To further uncover the genetic mechanism of the plant growth-promoting traits of One of the main challenges in elimination of oil contamination from polluted environments is improvement of biodegradation by highly efficient microorganisms. Bacillus subtilis MJ01 has been evaluated as a new resource for producing biosurfactant compounds. This bacterium, which produces surfactin, is able to enhance bio Genome annotation and comparative genomic analysis of Bacillus

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Comparative Genomics Analysis Provides New Strategies for

Biocontrol formulations prepared from biocontrol bacteria are increasingly applied in sustainable agriculture. Notably, inoculants prepared from Bacillus strains have been proven efficient and environmentally friendly alternatives to chemical bactericides. The bacterium Bacillus velezensis HAB-2 (formerly classified as B. amyloliquefaciens HAB-2) By integrating phylogenomic and comparative analyses of 1104 high-quality genome sequences, we identify the core proteins and the lineage-specific fingerprint proteins of the various evolutionary clusters (clades/groups/species) of the Bacillus genus. As fingerprints, we denote those core proteins of a certain lineage that are present only Microorganisms Free Full-Text A Comparative Analysis of

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Comparative Analysis of Volatile and Non-Volatile

Comparative Analysis of Volatile and Non-Volatile Metabolites Derived from Bacillus subtilis Strains Producing Different Levels of Biogenic Amines Kyuwon Lee 1, Seo-Hee Kwon 1, Sumin Song 1, Do-Yup Lee 2, Min Kyung Park 3,* and Young-Suk Kim 1,* 1 Department of Food Science and Biotechnology, Ewha Womans University, Seoul A comparative analysis among the CDSs of the four Bacillus strains showed that 1,877 genes were shared by all four selected Bacillus strains (Fig. 5). A total of 1,965 genes were common between HNA3 and B. subtilis 168. HNA3 shared 3,505 genes with B. velezensis FZB42 while shared 3,358 genes with B. amyloliquefaciens DSM7. On the Comparative Genome Analysis Reveals Phylogenetic Identity of Bacillus

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