Bacillus thermoamylovorans Spores with Very-High-Level Heat Resistance Germinate Poorly in Rich Medium despite the Presence of ger Clusters but Efficiently upon Exposure to Calcium-Dipicolinic Acid.

PubWeight™: 0.77‹?›

🔗 View Article (PMID 26341201)

Published in Appl Environ Microbiol on September 04, 2015

Authors

Erwin M Berendsen1, Antonina O Krawczyk2, Verena Klaus3, Anne de Jong2, Jos Boekhorst3, Robyn T Eijlander1, Oscar P Kuipers4, Marjon H J Wells-Bennik5

Author Affiliations

1: Top Institute Food and Nutrition, Wageningen, The Netherlands Laboratory of Molecular Genetics, University of Groningen, Groningen, The Netherlands NIZO Food Research B.V., The Netherlands.
2: Top Institute Food and Nutrition, Wageningen, The Netherlands Laboratory of Molecular Genetics, University of Groningen, Groningen, The Netherlands.
3: Top Institute Food and Nutrition, Wageningen, The Netherlands NIZO Food Research B.V., The Netherlands.
4: Top Institute Food and Nutrition, Wageningen, The Netherlands Laboratory of Molecular Genetics, University of Groningen, Groningen, The Netherlands o.p.kuipers@rug.nl Marjon.Wells-Bennik@nizo.com.
5: Top Institute Food and Nutrition, Wageningen, The Netherlands NIZO Food Research B.V., The Netherlands o.p.kuipers@rug.nl Marjon.Wells-Bennik@nizo.com.

Articles cited by this

The RAST Server: rapid annotations using subsystems technology. BMC Genomics (2008) 175.18

MUSCLE: multiple sequence alignment with high accuracy and high throughput. Nucleic Acids Res (2004) 168.89

A simple, fast, and accurate algorithm to estimate large phylogenies by maximum likelihood. Syst Biol (2003) 102.57

Fiji: an open-source platform for biological-image analysis. Nat Methods (2012) 56.92

OrthoMCL: identification of ortholog groups for eukaryotic genomes. Genome Res (2003) 33.03

The SEED and the Rapid Annotation of microbial genomes using Subsystems Technology (RAST). Nucleic Acids Res (2013) 29.49

Catabolic repression of bacterial sporulation. Proc Natl Acad Sci U S A (1965) 19.70

Spore germination. Curr Opin Microbiol (2003) 6.02

Hidden Markov model speed heuristic and iterative HMM search procedure. BMC Bioinformatics (2010) 4.48

Role of ger proteins in nutrient and nonnutrient triggering of spore germination in Bacillus subtilis. J Bacteriol (2000) 3.79

Genetic requirements for induction of germination of spores of Bacillus subtilis by Ca(2+)-dipicolinate. J Bacteriol (2001) 2.97

DBTBS: database of transcriptional regulation in Bacillus subtilis and its contribution to comparative genomics. Nucleic Acids Res (2004) 2.61

Cloning, nucleotide sequence, and regulation of the Bacillus subtilis gpr gene, which codes for the protease that initiates degradation of small, acid-soluble proteins during spore germination. J Bacteriol (1991) 2.45

How do spores germinate? J Appl Microbiol (2006) 2.32

Germination of spores of Bacillales and Clostridiales species: mechanisms and proteins involved. Trends Microbiol (2010) 2.24

GInaFiT, a freeware tool to assess non-log-linear microbial survivor curves. Int J Food Microbiol (2005) 2.04

Genome2D: a visualization tool for the rapid analysis of bacterial transcriptome data. Genome Biol (2004) 1.93

Cooperativity between different nutrient receptors in germination of spores of Bacillus subtilis and reduction of this cooperativity by alterations in the GerB receptor. J Bacteriol (2006) 1.87

Isolation and characterization of superdormant spores of Bacillus species. J Bacteriol (2009) 1.65

Analysis of spore cortex lytic enzymes and related proteins in Bacillus subtilis endospore germination. Microbiology (2002) 1.58

Identification of a new gene essential for germination of Bacillus subtilis spores with Ca2+-dipicolinate. J Bacteriol (2003) 1.55

Germination proteins in the inner membrane of dormant Bacillus subtilis spores colocalize in a discrete cluster. Mol Microbiol (2011) 1.49

Germination of spores of Bacillus species: what we know and do not know. J Bacteriol (2014) 1.47

Role of GerD in germination of Bacillus subtilis spores. J Bacteriol (2006) 1.44

Characterization of the germination of Bacillus megaterium spores lacking enzymes that degrade the spore cortex. J Appl Microbiol (2009) 1.38

Germination properties of spores with low dipicolinic acid content. J Bacteriol (1962) 1.35

Effects of a gerF (lgt) mutation on the germination of spores of Bacillus subtilis. J Bacteriol (2004) 1.35

Bacillus sporothermodurans and other highly heat-resistant spore formers in milk. J Appl Microbiol (2006) 1.25

Role of dipicolinic acid in the germination, stability, and viability of spores of Bacillus subtilis. J Bacteriol (2008) 1.19

SporeWeb: an interactive journey through the complete sporulation cycle of Bacillus subtilis. Nucleic Acids Res (2013) 1.19

Bacillus thermoamylovorans sp. nov., a moderately thermophilic and amylolytic bacterium. Int J Syst Bacteriol (1995) 1.17

The preparation, germination properties and stability of superdormant spores of Bacillus cereus. J Appl Microbiol (2009) 1.10

Levels of germination proteins in dormant and superdormant spores of Bacillus subtilis. J Bacteriol (2012) 1.07

Isolation, characterization, and identification of bacterial contaminants in semifinal gelatin extracts. Appl Environ Microbiol (2004) 1.07

The Ger receptor family from sporulating bacteria. Curr Issues Mol Biol (2010) 1.07

Amino acid residues in the GerAB protein important in the function and assembly of the alanine spore germination receptor of Bacillus subtilis 168. J Bacteriol (2011) 1.05

Amino acid substitutions in transmembrane domains 9 and 10 of GerVB that affect the germination properties of Bacillus megaterium spores. J Bacteriol (2008) 1.05

Factors involved in the germination and inactivation of Bacillus anthracis spores in murine primary macrophages. FEMS Microbiol Lett (2007) 1.04

Incidence and diversity of potentially highly heat-resistant spores isolated at dairy farms. Appl Environ Microbiol (2005) 1.04

Structure-based functional studies of the effects of amino acid substitutions in GerBC, the C subunit of the Bacillus subtilis GerB spore germinant receptor. J Bacteriol (2011) 1.02

Identification of new proteins that modulate the germination of spores of bacillus species. J Bacteriol (2013) 1.02

Analysis of factors influencing the rate of germination of spores of Bacillus subtilis by very high pressure. J Appl Microbiol (2007) 1.01

Moist-heat resistance, spore aging, and superdormancy in Clostridium difficile. Appl Environ Microbiol (2011) 1.01

A systematic approach to determine global thermal inactivation parameters for various food pathogens. Int J Food Microbiol (2005) 0.98

Modelling the effect of sub(lethal) heat treatment of Bacillus subtilis spores on germination rate and outgrowth to exponentially growing vegetative cells. Int J Food Microbiol (2008) 0.97

Numbers of individual nutrient germinant receptors and other germination proteins in spores of Bacillus subtilis. J Bacteriol (2013) 0.96

Analysis of the effects of a gerP mutation on the germination of spores of Bacillus subtilis. J Bacteriol (2012) 0.94

Draft Genome Sequences of Four Bacillus thermoamylovorans Strains Isolated from Milk and Acacia Gum, a Food Ingredient. Genome Announc (2015) 0.92

Two distinct groups within the Bacillus subtilis group display significantly different spore heat resistance properties. Food Microbiol (2014) 0.91

Bacterial spoilers of food: behavior, fitness and functional properties. Food Microbiol (2014) 0.89

Thermal inactivation of Bacillus anthracis spores in cow's milk. Appl Environ Microbiol (2006) 0.87

Activity and regulation of various forms of CwlJ, SleB, and YpeB proteins in degrading cortex peptidoglycan of spores of Bacillus species in vitro and during spore germination. J Bacteriol (2013) 0.86

Molecular genetical and phenotypical analysis of the gerM spore germination gene of Bacillus subtilis 168. FEMS Microbiol Lett (1994) 0.86

Function of the SpoVAEa and SpoVAF proteins of Bacillus subtilis spores. J Bacteriol (2014) 0.86

Bacterial spores in food: how phenotypic variability complicates prediction of spore properties and bacterial behavior. Curr Opin Biotechnol (2010) 0.86

Bacillus thermolactis sp. nov., isolated from dairy farms, and emended description of Bacillus thermoamylovorans. Int J Syst Evol Microbiol (2010) 0.85

First draft genome sequence of the amylolytic Bacillus thermoamylovorans wild-type strain 1A1 isolated from a thermophilic biogas plant. J Biotechnol (2014) 0.84

Effect of organic complex compounds on Bacillus thermoamylovorans growth and glucose fermentation. Appl Environ Microbiol (1999) 0.84

High pressure germination of Bacillus subtilis spores with alterations in levels and types of germination proteins. J Appl Microbiol (2014) 0.82

Challenges and advances in systems biology analysis of Bacillus spore physiology; molecular differences between an extreme heat resistant spore forming Bacillus subtilis food isolate and a laboratory strain. Food Microbiol (2010) 0.80

A meta-analysis accounting for sources of variability to estimate heat resistance reference parameters of bacteria using hierarchical Bayesian modeling: Estimation of D at 121.1 °C and pH 7, zT and zpH of Geobacillus stearothermophilus. Int J Food Microbiol (2012) 0.76

Isolation and characterization of Bacillus subtilis spores that are superdormant for germination with dodecylamine or Ca2+ -dipicolinic acid. J Appl Microbiol (2013) 0.76