Microorganisms adapted to piezopsychrophilic growth dominate the majority of the biosphere that is at relatively constant low temperatures and high pressures, but the genetic bases for the adaptations are largely unknown. Here we report the use of transposon mutagenesis with the deep-sea bacterium Photobacterium profundum strain SS9 to isolate dozens of mutant strains whose growth is impaired at low temperature and/or whose growth is altered as a function of hydrostatic pressure. In many cases the gene mutation-growth phenotype relationship was verified by complementation analysis. The largest fraction of loci associated with temperature sensitivity were involved in the biosynthesis of the cell envelope, in particular the biosynthesis of ex...
Chapter 1 introduces the deep sea environment. Recent studies of sequence-independent diversity of d...
High pressure and low temperatures, both of which are inherent to the deep ocean, are fundamental ph...
Two-thirds of Earth's surface is covered by oceans, yet the study of this massive integrated living ...
Microorganisms adapted to piezopsychrophilic growth dominate the majority of the biosphere that is a...
BACKGROUND: Oceans cover approximately 70% of the Earth's surface with an average depth of 3800 m an...
BACKGROUND: Oceans cover approximately 70% of the Earth's surface with an average depth of 3800 m a...
Abstract Background Oceans cover approximately 70% of the Earth's surface with an average depth of 3...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Though the extreme conditions of the deep sea cover the majority of the Earth's biosphere, the adapt...
The mechanism of high pressure-adapted growth in the deep-sea bacterium Photobacterium profundum SS9...
Photobacterium sp. strain SS9 is a deep-sea bacterium which modulates the abundances of several oute...
Biological membranes are highly dynamic complex structures exquisitely tuned to alterations in the s...
Chapter 1 introduces the deep sea environment. Recent studies of sequence-independent diversity of d...
High pressure and low temperatures, both of which are inherent to the deep ocean, are fundamental ph...
Two-thirds of Earth's surface is covered by oceans, yet the study of this massive integrated living ...
Microorganisms adapted to piezopsychrophilic growth dominate the majority of the biosphere that is a...
BACKGROUND: Oceans cover approximately 70% of the Earth's surface with an average depth of 3800 m an...
BACKGROUND: Oceans cover approximately 70% of the Earth's surface with an average depth of 3800 m a...
Abstract Background Oceans cover approximately 70% of the Earth's surface with an average depth of 3...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Photobacterium profundum is a cosmopolitan marine bacterium capable of growth at low temperature and...
Though the extreme conditions of the deep sea cover the majority of the Earth's biosphere, the adapt...
The mechanism of high pressure-adapted growth in the deep-sea bacterium Photobacterium profundum SS9...
Photobacterium sp. strain SS9 is a deep-sea bacterium which modulates the abundances of several oute...
Biological membranes are highly dynamic complex structures exquisitely tuned to alterations in the s...
Chapter 1 introduces the deep sea environment. Recent studies of sequence-independent diversity of d...
High pressure and low temperatures, both of which are inherent to the deep ocean, are fundamental ph...
Two-thirds of Earth's surface is covered by oceans, yet the study of this massive integrated living ...