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Bacteria and colon
Bacteria in the colon ( large intestine ) can produce a range of vitamin K < sub > 2 </ sub > forms, and can also convert K < sub > 1 </ sub > into K < sub > 2 </ sub > ( MK-7 homolog ).
Bacteria make up most of the flora in the colon and 60 % of the dry mass of feces.

Bacteria and are
Bacteria do, however contain within their populations, in smaller quantities, bacteria that are resistant against β-lactam antibiotics.
Bacteria such as E. coli are unable to choose the direction in which they swim, and are unable to swim in a straight line for more than a few seconds due to rotational diffusion.
Bacteria are colored blue, eukaryote s red, and archaea green.
Bacteria and archaea are almost always microscopic, while a number of eukaryotes are also microscopic, including most protists, some fungi, as well as some animals and plants.
Bacteria are surrounded by a cell wall, which provides strength and rigidity to their cells.
Bacteria and Archaea are prokaryotes, but archaea and eukaryotes share a common ancestor that is not ancestral to the bacteria.
Bacteria divide asexually via binary fission ; viruses take control of host cells to produce more viruses ; Hydras ( invertebrates of the order Hydroidea ) and yeasts are able to reproduce by budding.
Bacteria within the Alicyclobacillus genus are acidophilic thermophiles, which can cause contamination in fruit juice drinks.
* Kingdoms such as Bacteria represent grades rather than clades, and so are rejected by phylogenetic classification systems.
Bacteria are able to convert ammonia to nitrite and nitrate but they are inhibited by light so this must occur below the euphotic zone.
* Biohazard Level 2: Bacteria and viruses that cause only mild disease to humans, or are difficult to contract via aerosol in a lab setting, such as hepatitis A, B, and C, influenza A, Lyme disease, salmonella, mumps, measles, scrapie, dengue fever, and HIV.
Bacteria are unable to grow rapidly enough for decomposition at temperatures under 4 ° C.
Bacteria are unable to take up folic acid from the environment ( i. e. the infection host ) and are thus dependent on their own de novo synthesis.
Bacteria and Archaea are two domains of prokaryotes.
Bacteria, fungus and oomycetes are known for this function.
A phylogenetic tree, showing how Eukaryota and Archaea are more closely related to each other than to Bacteria, based on Cavalier-Smith's theory of bacterial evolution.
Bacteria used for biological control infect insects via their digestive tracts, so insects with sucking mouth parts like aphids and scale insects are difficult to control with bacterial biological control.
ii ) Bacteria like Pseudomonas, Clostridium, and Streptococcus are used in assessment ( estimation ) and prediction of changes in marine environment induced by human activities.
Bacteria are tested for pathogenicity by inoculating multiple citrus species with the bacterium.
The two single-celled lifeform taxa, Prokaryotes and Eukaryotes ( or Bacteria and Amoebas, in-game respectively ) are treated specially.

Bacteria and fermentation
Bacteria in a person's mouth convert glucose, fructose, and most commonly sucrose ( table sugar ) into acids such as lactic acid through a glycolytic process called fermentation.
Bacteria which produce only lactic acid during fermentation are homofermentative ; those that also produce lactic acid and other compounds such as carbon dioxide, alcohol, aldehydes and ketones are heterofermentative.

Bacteria and amounts
Bacteria belonging to this genus are usually susceptible to antibiotics such as penicillin, are microaerophilic ( require small amounts of oxygen ) capnophiles, and are fast-moving with their flagella.

Bacteria and gas
With some exceptions, Bacteria lack membrane-bound organelles as found in eukaryotes, but they may assemble proteins onto various types of inclusions such as gas vesicles and storage granules.
By analyzing the Achaeans, Bacteria and the gas released from tailings ponds, those are methanogenesis.
Bacteria present in the intestinal tract cause gas to be expelled from the anus.

Bacteria and hydrogen
Bacteria and archaea can also be lithotrophs and these organisms may respire using a broad range of inorganic molecules as electron donors and acceptors, such as sulfur, metal ions, methane or hydrogen.

Bacteria and carbon
Bacteria and fungi ( myco-organisms ) live and die within the porous media, thus increasing its carbon content.

Bacteria and various
Bacteria living in a biofilm usually have significantly different properties from free-floating bacteria of the same species, as the dense and protected environment of the film allows them to cooperate and interact in various ways.
Bacteria can respond to stressful environments by the induction of various stress tolerance mechanisms.
Bacteria in the biofilm community can actually generate various toxic compounds that interfere with the growth of other competing bacteria.

Bacteria and .
However, Thomas Cavalier-Smith rejects the three-domain system and places the Archaea as a subkingdom of Bacteria.
Bacteria also use the TCA cycle to generate energy, but since they lack mitochondria, the reaction sequence is performed in the cytosol with the proton gradient for ATP production being across the plasma membrane rather than the inner membrane of the mitochondria.
Bacteria use a primase belonging to the DnaG protein superfamily which contains a catalytic domain of the TOPRIM fold type.
Bacteria benefit from the reduced exposure to predators and competition from other bacterial species, the ample supply of nutrients and relative environmental stability inside the host.
Bacteria lacking ice nucleation-active proteins ( ice-minus bacteria ) result in greatly reduced frost damage.
It is believed by Shiragami's employers that he is aiding them in figuring out how to utilize the cells ' properties to create Anti-Nuclear Energy Bacteria ( ANEB ), which is supposed to be used as weapons against Godzilla.
If the Anti-Nuclear Bacteria is not handed over, the company threatens to detonate the bombs and release Godzilla from his prison.
Bacteria were the first organisms to be modified in the laboratory, due to their simple genetics.
Bacteria and microorganisms were first observed with a microscope by Antonie van Leeuwenhoek in 1676, initiating the scientific field microbiology.
The domain Bacteria ( mainly Salinibacter ruber ) can comprise up to 25 % of the prokaryotic community, but is more commonly a much lower percentage of the overall population.
This five kingdom scheme is still far from the phylogenetic ideal and has largely been supplanted in modern taxonomic work by a division into three domains: Bacteria and Archaea, which contain the prokaryotes, and Eukaryota, comprising the remaining forms.
* Snyder, L. and Champness, W. " Molecular Genetics of Bacteria ", 3rd edition 2007 ( Contains an informative and well illustrated overview of bacteriophage lambda )
A cluster of Escherichia coli Bacteria magnified 10, 000 times.
Bacteria, algae and fungi have been identified in amber that is 220 million years old, which shows that the morphology of microorganisms has changed little since the Triassic period.
* MicrobeID. com Online Bacteria Identification Key and Probabilistic Identification Databases
They include Bacteria, Fungi, Archaea and Protista.
Bacteria constantly remodel their peptidoglycan cell walls, simultaneously building and breaking down portions of the cell wall as they grow and divide.
Bacteria may travel dormant for an extended amount of time before colliding randomly with other planets or intermingling with protoplanetary disks.

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