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Analysis of Anoxybacillus Genomes from the Aspects of Lifestyle Adaptations, Prophage Diversity, and Carbohydrate Metabolism

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Title
Analysis of Anoxybacillus Genomes from the Aspects of Lifestyle Adaptations, Prophage Diversity, and Carbohydrate Metabolism
Published in
PLOS ONE, March 2014
DOI 10.1371/journal.pone.0090549
Pubmed ID
Authors

Kian Mau Goh, Han Ming Gan, Kok-Gan Chan, Giek Far Chan, Saleha Shahar, Chun Shiong Chong, Ummirul Mukminin Kahar, Kian Piaw Chai

Abstract

Species of Anoxybacillus are widespread in geothermal springs, manure, and milk-processing plants. The genus is composed of 22 species and two subspecies, but the relationship between its lifestyle and genome is little understood. In this study, two high-quality draft genomes were generated from Anoxybacillus spp. SK3-4 and DT3-1, isolated from Malaysian hot springs. De novo assembly and annotation were performed, followed by comparative genome analysis with the complete genome of Anoxybacillus flavithermus WK1 and two additional draft genomes, of A. flavithermus TNO-09.006 and A. kamchatkensis G10. The genomes of Anoxybacillus spp. are among the smaller of the family Bacillaceae. Despite having smaller genomes, their essential genes related to lifestyle adaptations at elevated temperature, extreme pH, and protection against ultraviolet are complete. Due to the presence of various competence proteins, Anoxybacillus spp. SK3-4 and DT3-1 are able to take up foreign DNA fragments, and some of these transferred genes are important for the survival of the cells. The analysis of intact putative prophage genomes shows that they are highly diversified. Based on the genome analysis using SEED, many of the annotated sequences are involved in carbohydrate metabolism. The presence of glycosyl hydrolases among the Anoxybacillus spp. was compared, and the potential applications of these unexplored enzymes are suggested here. This is the first study that compares Anoxybacillus genomes from the aspect of lifestyle adaptations, the capacity for horizontal gene transfer, and carbohydrate metabolism.

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Geographical breakdown

Country Count As %
Korea, Republic of 1 1%
Unknown 90 99%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 19 21%
Student > Bachelor 17 19%
Student > Master 16 18%
Researcher 10 11%
Lecturer 3 3%
Other 14 15%
Unknown 12 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 27 30%
Biochemistry, Genetics and Molecular Biology 25 27%
Environmental Science 6 7%
Immunology and Microbiology 3 3%
Computer Science 2 2%
Other 10 11%
Unknown 18 20%