生物
生物能学
极端环境
质粒
平衡
细胞生物学
基因组
生物化学
突变体
生物物理学
细菌
基因
遗传学
微生物学
线粒体
作者
Benjamin Janto,Azad Ahmed,Masahiro Ito,Jun Liu,David B. Hicks,Sarah Pagni,Oliver J. Fackelmayer,T. Jarrod Smith,Joshua P. Earl,Liam D. H. Elbourne,Karl A. Hassan,Ian T. Paulsen,Anne‐Brit Kolstø,Nicolas J. Tourasse,Garth D. Ehrlich,Robert Boissy,D. M. Ivey,Gang Li,Yanfen Xue,Yanhe Ma
标识
DOI:10.1111/j.1462-2920.2011.02591.x
摘要
Summary Bacillus pseudofirmus OF4 is an extreme but facultative alkaliphile that grows non‐fermentatively in a pH range from 7.5 to above 11.4 and can withstand large sudden increases in external pH. It is a model organism for studies of bioenergetics at high pH, at which energy demands are higher than at neutral pH because both cytoplasmic pH homeostasis and ATP synthesis require more energy. The alkaliphile also tolerates a cytoplasmic pH > 9.0 at external pH values at which the pH homeostasis capacity is exceeded, and manages other stresses that are exacerbated at alkaline pH, e.g. sodium, oxidative and cell wall stresses. The genome of B. pseudofirmus OF4 includes two plasmids that are lost from some mutants without viability loss. The plasmids may provide a reservoir of mobile elements that promote adaptive chromosomal rearrangements under particular environmental conditions. The genome also reveals a more acidic pI profile for proteins exposed on the outer surface than found in neutralophiles. A large array of transporters and regulatory genes are predicted to protect the alkaliphile from its overlapping stresses. In addition, unanticipated metabolic versatility was observed, which could ensure requisite energy for alkaliphily under diverse conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI