Deck 16: Diversity of Archaea
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Deck 16: Diversity of Archaea
1
Which genus within Archaea is capable of growth at the hottest temperature recorded of 122°C?
A)Methanopyrus
B)Thermoproteus
C)Thermosphaera
D)Pyrococcus
A)Methanopyrus
B)Thermoproteus
C)Thermosphaera
D)Pyrococcus
A
2
Some members of the Thermoplasmatales can grow at pH levels below
A)4)
B)7)
C)0)
D)10.
A)4)
B)7)
C)0)
D)10.
C
3
Which microbial grouping is the major oxygenic phototroph in most salt lakes?
A)cyanobacteria
B)Dunaliella,a eukaryotic alga
C)halophilic Archaea
D)purple nonsulfur bacteria
A)cyanobacteria
B)Dunaliella,a eukaryotic alga
C)halophilic Archaea
D)purple nonsulfur bacteria
B
4
The taxonomy of the methanogens is based on
A)phenotypic analysis.
B)phylogenetic (comparative nucleic acid sequencing)analysis.
C)phenotypic and phylogenetic analyses.
D)neither phenotypic nor phylogenetic analysis.
A)phenotypic analysis.
B)phylogenetic (comparative nucleic acid sequencing)analysis.
C)phenotypic and phylogenetic analyses.
D)neither phenotypic nor phylogenetic analysis.
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5
A chemoorganotroph growing optimally at 55°C and pH 2 in complex media would most likely be a member of the genus
A)Methanocaldococcus.
B)Halobacterium.
C)Methanococcus.
D)Thermoplasma.
A)Methanocaldococcus.
B)Halobacterium.
C)Methanococcus.
D)Thermoplasma.
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6
Some strains of haloarchaea exhibit
A)anoxic growth at the expense of sugar fermentation.
B)anaerobic respiration.
C)anoxygenic photosynthesis.
D)light-driven ATP synthesis under oxygen-limiting conditions.
A)anoxic growth at the expense of sugar fermentation.
B)anaerobic respiration.
C)anoxygenic photosynthesis.
D)light-driven ATP synthesis under oxygen-limiting conditions.
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7
Which statement is TRUE of methanogenic and extremely halophilic Archaea?
A)The methanogens are obligate aerobes; the extreme halophiles are obligate anaerobes.
B)The methanogens are obligate anaerobes; the extreme halophiles are mostly obligate aerobes.
C)Both the methanogens and the extreme halophiles are obligate aerobes.
D)Both the methanogens and the extreme halophiles are obligate anaerobes.
A)The methanogens are obligate aerobes; the extreme halophiles are obligate anaerobes.
B)The methanogens are obligate anaerobes; the extreme halophiles are mostly obligate aerobes.
C)Both the methanogens and the extreme halophiles are obligate aerobes.
D)Both the methanogens and the extreme halophiles are obligate anaerobes.
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8
Retinal in prokaryotes is part of
A)photosynthesis.
B)phototaxis.
C)light-driven ATP synthesis.
D)light-driven ATP synthesis and phototaxis.
A)photosynthesis.
B)phototaxis.
C)light-driven ATP synthesis.
D)light-driven ATP synthesis and phototaxis.
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9
What characteristic do mycoplasmas (Bacteria)and Thermoplasma and Ferroplasma (Archaea)have in common?
A)contain plasmids
B)hyperthermophilic
C)lack cell walls
D)relatively large genomes from duplicated genes
A)contain plasmids
B)hyperthermophilic
C)lack cell walls
D)relatively large genomes from duplicated genes
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10
The cytoplasmic proteins of Halobacterium are
A)highly acidic.
B)highly basic.
C)generally neutral.
D)variable,depending on the species.
A)highly acidic.
B)highly basic.
C)generally neutral.
D)variable,depending on the species.
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11
Which of the following metabolisms is NOT found in Archaea?
A)photosynthesis
B)chemolithotrophy
C)chemoorganotrophy
D)aerobic respiration
A)photosynthesis
B)chemolithotrophy
C)chemoorganotrophy
D)aerobic respiration
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12
The microorganisms that are thought to resemble the first cellular forms of life on Earth are
A)H₂-oxidizing hyperthermophiles.
B)acidophilic Archaea.
C)the Nanoarchaeota.
D)fermentative thermophiles.
A)H₂-oxidizing hyperthermophiles.
B)acidophilic Archaea.
C)the Nanoarchaeota.
D)fermentative thermophiles.
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13
Most known methanogens are nonhalophilic
A)psychrophiles.
B)mesophiles.
C)thermophiles.
D)extremophiles (at either the psychrophilic or thermophilic end).
A)psychrophiles.
B)mesophiles.
C)thermophiles.
D)extremophiles (at either the psychrophilic or thermophilic end).
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14
The Archaea are
A)primarily ancient organisms that have not evolved very much in the last billion years.
B)phylogenetically diverse,but functionally restricted to extremophiles and chemolithotrophs.
C)diverse microorganisms that inhabit almost every environment on Earth,including the colon of humans and other mammals.
D)functionally diverse,but restricted to thermophilic or hyperthermophilic environments.
A)primarily ancient organisms that have not evolved very much in the last billion years.
B)phylogenetically diverse,but functionally restricted to extremophiles and chemolithotrophs.
C)diverse microorganisms that inhabit almost every environment on Earth,including the colon of humans and other mammals.
D)functionally diverse,but restricted to thermophilic or hyperthermophilic environments.
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15
Which of the following are NOT substrates for methanogens?
A)acetate and pyruvate
B)carbon dioxide,carbon monoxide,and formate
C)glucose and sucrose
D)methanol,methylamine,and methylmercaptan
A)acetate and pyruvate
B)carbon dioxide,carbon monoxide,and formate
C)glucose and sucrose
D)methanol,methylamine,and methylmercaptan
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16
Methanogens
A)produce methane as a part of their energy metabolism.
B)utilize methane as an energy source.
C)process and store methane to detoxify it.
D)produce,utilize,and detoxify methane.
A)produce methane as a part of their energy metabolism.
B)utilize methane as an energy source.
C)process and store methane to detoxify it.
D)produce,utilize,and detoxify methane.
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17
Approximately ________ of the Methanocaldococcus jannaschii genes have no counterparts in known genes from other sequenced organisms.
A)10%
B)25%
C)40%
D)70%
A)10%
B)25%
C)40%
D)70%
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18
Some of the largest naturally occurring plasmids occur in the
A)methanogens.
B)genus Thermoplasma.
C)extreme halophiles.
D)genus Picrophilus.
A)methanogens.
B)genus Thermoplasma.
C)extreme halophiles.
D)genus Picrophilus.
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19
What special adaptation(s)has/have Thermoplasma evolved to survive in hot acidic environments?
A)Thermoplasma stabilize their cytoplasmic membrane by incorporation of tetraether lipoglycans in the cytoplasmic membrane.
B)Thermoplasma have a reinforced cell wall containing basic amino linkers in the peptidoglycan.
C)Thermoplasma excrete hydrogen ions and import hydroxyl ions.
D)Thermoplasma are highly motile to avoid destruction.
A)Thermoplasma stabilize their cytoplasmic membrane by incorporation of tetraether lipoglycans in the cytoplasmic membrane.
B)Thermoplasma have a reinforced cell wall containing basic amino linkers in the peptidoglycan.
C)Thermoplasma excrete hydrogen ions and import hydroxyl ions.
D)Thermoplasma are highly motile to avoid destruction.
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20
What do MOST halobacteria use for carbon substrates?
A)amino and organic acids
B)carbohydrates
C)lipids
D)nucleic acids
A)amino and organic acids
B)carbohydrates
C)lipids
D)nucleic acids
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21
Which archaeal phylum contains primarily extreme halophiles and methanogens?
A)Crenarchaeota
B)Euryarchaeota
C)Nanoarchaeota
D)Thaumarchaeota
A)Crenarchaeota
B)Euryarchaeota
C)Nanoarchaeota
D)Thaumarchaeota
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22
Cellular integrity and cell wall stabilization of the Halobacterium are aided by
A)potassium ions.
B)chloride ions.
C)magnesium ions.
D)sodium ions.
A)potassium ions.
B)chloride ions.
C)magnesium ions.
D)sodium ions.
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23
Which of the following bioenergetic processes CANNOT occur in hyperthermophiles?
A)chemoorganotrophy
B)chemolithotrophy
C)photosynthesis
D)chemoorganotrophy,chemolithotrophy,and photosynthesis
A)chemoorganotrophy
B)chemolithotrophy
C)photosynthesis
D)chemoorganotrophy,chemolithotrophy,and photosynthesis
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24
The ribosomes of Halobacterium require high ________ levels for stability and activity.
A)KCl
B)NaCl
C)NaSO₄
D)acidic amino acids
A)KCl
B)NaCl
C)NaSO₄
D)acidic amino acids
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25
The most common electron donor among hyperthermophilic Archaea is
A)Fe⁺³.
B)H₂.
C)SO₄.
D)Sᵒ.
A)Fe⁺³.
B)H₂.
C)SO₄.
D)Sᵒ.
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26
What makes the metabolism of Ferroglobus interesting in the context of evolution?
A)Ferroglobus is an anaerobic iron-oxidizing chemolithotrophic autotroph that may represent a key metabolism that allowed for the oxidation of ferrous iron without molecular oxygen.
B)Ferroglobus can use H₂ or H₂S as electron donors in its energy metabolism and is thermophilic,thus representing the earliest hypothesized forms of life.
C)Ferroglobus lacks cells wall and becomes encrusted in oxidized iron.
D)Ferroglobus is both an iron- and nitrate-reducer and is probably the last common ancestor of all iron- and nitrate-reducing organisms.
A)Ferroglobus is an anaerobic iron-oxidizing chemolithotrophic autotroph that may represent a key metabolism that allowed for the oxidation of ferrous iron without molecular oxygen.
B)Ferroglobus can use H₂ or H₂S as electron donors in its energy metabolism and is thermophilic,thus representing the earliest hypothesized forms of life.
C)Ferroglobus lacks cells wall and becomes encrusted in oxidized iron.
D)Ferroglobus is both an iron- and nitrate-reducer and is probably the last common ancestor of all iron- and nitrate-reducing organisms.
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27
The presence of genes encoding RubisCO enzymes in Methanocaldococcus jannaschii and a species of Pyrococcus indicates that the organisms
A)incorporate carbon dioxide via the acetyl-CoA pathway.
B)incorporate carbon dioxide via the Calvin cycle.
C)incorporate carbon dioxide via the reverse citric acid cycle.
D)utilize molecular hydrogen as an electron donor in chemolithotrophic metabolism.
A)incorporate carbon dioxide via the acetyl-CoA pathway.
B)incorporate carbon dioxide via the Calvin cycle.
C)incorporate carbon dioxide via the reverse citric acid cycle.
D)utilize molecular hydrogen as an electron donor in chemolithotrophic metabolism.
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28
Many hyperthermophiles of Archaea are ________; however,Staphylothermus is a chemoorganotroph.
A)chemolithotrophs
B)mixotrophs
C)parasites
D)photoheterotrophs
A)chemolithotrophs
B)mixotrophs
C)parasites
D)photoheterotrophs
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29
The cytoplasmic membrane of Thermoplasma contains a lipopolysaccharide-like material called lipoglycan which
A)behaves like peptidoglycan and creates a strong cell wall.
B)forms a monolayer that stabilizes the cytoplasmic membrane.
C)contains ether linkages.
D)contains ether linkages and forms a monolayer that stabilizes the cytoplasmic membrane.
A)behaves like peptidoglycan and creates a strong cell wall.
B)forms a monolayer that stabilizes the cytoplasmic membrane.
C)contains ether linkages.
D)contains ether linkages and forms a monolayer that stabilizes the cytoplasmic membrane.
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30
The factor that MOST affects the thermostability of a protein is its
A)highly hydrophobic core regions.
B)folding pattern.
C)ionic surface interactions.
D)number of hydrogen bonds.
A)highly hydrophobic core regions.
B)folding pattern.
C)ionic surface interactions.
D)number of hydrogen bonds.
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31
One factor that seems to aid in maintaining lipid stability in hyperthermophilic Archaea is that dibiphytanyl tetraether lipids form a(n)
A)covalently bonded monolayer cytoplasmic membrane.
B)interlocking bilayer cytoplasmic membrane.
C)interlocking lattice with the cell wall.
D)pseudomembrane immediately inside the cytoplasmic membrane.
A)covalently bonded monolayer cytoplasmic membrane.
B)interlocking bilayer cytoplasmic membrane.
C)interlocking lattice with the cell wall.
D)pseudomembrane immediately inside the cytoplasmic membrane.
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32
Halobacterium salinarum and certain other extreme halophiles carry out light-driven synthesis of ATP under what condition?
A)low oxygen concentrations
B)low light
C)high oxygen concentrations
D)high carbon dioxide concentrations
A)low oxygen concentrations
B)low light
C)high oxygen concentrations
D)high carbon dioxide concentrations
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33
What is thought to be the maximum temperature for life to exist?
A)125°C
B)150°C
C)250°C
D)500°C
A)125°C
B)150°C
C)250°C
D)500°C
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34
Thermostable proteins tend to have additional features that improve thermostability.Which of the following is NOT one of these features?
A)increased ionic interactions on the protein surfaces
B)highly hydrophilic cores
C)decreased tendency of the protein to unfold
D)highly hydrophobic cores
A)increased ionic interactions on the protein surfaces
B)highly hydrophilic cores
C)decreased tendency of the protein to unfold
D)highly hydrophobic cores
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35
Extremely halophilic Archaea often form ________ in order to access ________.
A)stalks / nutrients
B)intracellular inclusions / elemental sulfur
C)gas vesicles / oxygen
D)intracellular membranes / sunlight
A)stalks / nutrients
B)intracellular inclusions / elemental sulfur
C)gas vesicles / oxygen
D)intracellular membranes / sunlight
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36
Laboratory isolation of Nanoarchaeum equitans requires the presence of
A)fatty acids.
B)oxygen.
C)Ignicoccus.
D)sunlight.
A)fatty acids.
B)oxygen.
C)Ignicoccus.
D)sunlight.
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37
________ is a strict anaerobe with an optimum growth temperature of 105°C that grows chemolithotrophically on H₂ with S⁰ as an electron receptor or chemoorganotrophically on complex mixtures of organic compounds.
A)Pyrodictium
B)Pyrolobus
C)Pyrobaculum
D)Desulfurococcus
A)Pyrodictium
B)Pyrolobus
C)Pyrobaculum
D)Desulfurococcus
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38
Which of the following is TRUE about the crenarchael genera Sulfolobus?
A)Sulfolobus grows in sulfur-rich hot alkaline springs.
B)Sulfolobus is an anaerobic chemolithotroph.
C)Sulfolobus can grow chemoorganotrophically.
D)Sulfolobus is a gram-positive rod.
A)Sulfolobus grows in sulfur-rich hot alkaline springs.
B)Sulfolobus is an anaerobic chemolithotroph.
C)Sulfolobus can grow chemoorganotrophically.
D)Sulfolobus is a gram-positive rod.
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39
What is the minimum concentration of sodium chloride that an extreme halophile requires for growth?
A)2 M
B)4 M
C)6 M
D)10 M
A)2 M
B)4 M
C)6 M
D)10 M
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40
Compatible solutes counteract the tendency of a cell to become
A)buoyant in high ionic strength environments.
B)hyperosmotic in low ionic strength environments.
C)dehydrated in high ionic strength environments.
D)viscous in low ionic strength environments.
A)buoyant in high ionic strength environments.
B)hyperosmotic in low ionic strength environments.
C)dehydrated in high ionic strength environments.
D)viscous in low ionic strength environments.
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41
Many hyperthermophiles are chemolithoautotrophs.
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42
Some Archaea are chemoorganotrophs and use organic compounds as electron donors for energy metabolism.
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43
Archaea is divided into three phyla.
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44
Nitrifying Archaea such as Nitrosopumilus maritimus use ________ as a sole carbon source and are capable of obtaining sufficient energy by aerobically oxidizing ________.
A)CO₂ / NO
B)sugars / NH₃
C)CO₂ / NH₃
D)organic acids / NO
A)CO₂ / NO
B)sugars / NH₃
C)CO₂ / NH₃
D)organic acids / NO
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45
There are many genes in archaeal genomes that have no known function.
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46
The bioenergetics of anaerobic respiring Archaea such as those of the Crenarchaeota involve ________ from which ________ is synthesized.
A)proton translocation / ATP
B)substrate level phosphorylation / ATP
C)sodium translocation / ATP
D)substrate level phosphorylation / GTP
A)proton translocation / ATP
B)substrate level phosphorylation / ATP
C)sodium translocation / ATP
D)substrate level phosphorylation / GTP
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47
In chemolithotrophic Archaea,H₂ is a common electron donor.
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48
Nitrifying Thaumarchaeota outcompete nitrifying bacteria in many aquatic and terrestrial environments because Thaumarchaeota
A)are well-adapted to high salinity and extreme UV irradiation.
B)are well-adapted to temperature extremes.
C)are well-adapted to very low nutrient and electron donor concentrations.
D)have very resistant specialized cells that survive long periods of dehydration and nutrient starvation.
A)are well-adapted to high salinity and extreme UV irradiation.
B)are well-adapted to temperature extremes.
C)are well-adapted to very low nutrient and electron donor concentrations.
D)have very resistant specialized cells that survive long periods of dehydration and nutrient starvation.
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49
The rRNA gene sequences of hyperthermophilic Archaea and Bacteria have diverged ________ over time,likely due to ________.
A)relatively little / strong constraints on sequence changes at higher temperatures
B)substantially / higher mutation rates at higher temperatures
C)relatively little / low mutation rates in these ancient organisms
D)substantially / DNA damage at higher temperatures
A)relatively little / strong constraints on sequence changes at higher temperatures
B)substantially / higher mutation rates at higher temperatures
C)relatively little / low mutation rates in these ancient organisms
D)substantially / DNA damage at higher temperatures
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50
Most halobacteria are motile by means of lophotrichous flagella.
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51
The topoisomerase ________ introduces positive supercoils in DNA,which stabilizes DNA and prevents the DNA helix from denaturing at high temperatures.
A)reverse ligase
B)ligase
C)DNA gyrase
D)reverse DNA gyrase
A)reverse ligase
B)ligase
C)DNA gyrase
D)reverse DNA gyrase
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52
Thus far,only Archaea have been found in the salt lakes,while Bacteria and Eukarya are noticeably absent.
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53
Proteins known as ________ function to refold partially denatured proteins.
A)histones
B)chaperonins
C)HU proteins
D)histones and chaperonins
A)histones
B)chaperonins
C)HU proteins
D)histones and chaperonins
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54
Although the domain Archaea contains many acidophilic organisms,there are still many others within the domain that grow well in environments with a neutral pH.
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55
Crenarchaeotes whose optimal growth temperature is over 80°C are called
A)hyperthermophiles.
B)thermophiles.
C)extreme halophiles.
D)halophiles.
A)hyperthermophiles.
B)thermophiles.
C)extreme halophiles.
D)halophiles.
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56
Most of the Archaea are phenotypically quite similar.
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57
Hot sulfur-rich environments associated with terrestrial sulfur-rich springs are called
A)acid-mine drainage.
B)hydrothermal vents.
C)solfataras.
D)terrestrial volcanoes.
A)acid-mine drainage.
B)hydrothermal vents.
C)solfataras.
D)terrestrial volcanoes.
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58
In general,the cold-dwelling thaumarchaeotes are evolving more slowly than the hyperthermophilic crenarchaeotes.
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59
It is difficult to estimate when cyanobacteria appeared on Earth using evidence from the oxidation state of the Earth's crust,because
A)several abiotic reactions could have formed Fe³⁺.
B)there are multiple forms of anoxygenic photosynthesis.
C)there are multiple groups of oxygenic photosynthetic bacteria.
D)several ancient anaerobic metabolisms form Fe³⁺.
A)several abiotic reactions could have formed Fe³⁺.
B)there are multiple forms of anoxygenic photosynthesis.
C)there are multiple groups of oxygenic photosynthetic bacteria.
D)several ancient anaerobic metabolisms form Fe³⁺.
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60
Cyclic 2,3-diphosphoglycerate (cDPG)is present in molar quantities in the cytoplasm of many hyperthermophilic methanogens.The function of this compound is to
A)prevent rRNA misfolding.
B)prevent chemical damage to DNA at high temperatures.
C)counteract the effects of high osmotic environments.
D)activate hydrogen gas.
A)prevent rRNA misfolding.
B)prevent chemical damage to DNA at high temperatures.
C)counteract the effects of high osmotic environments.
D)activate hydrogen gas.
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61
While many Archaea are bacilli or cocci,unusual morphologies such as square,flattened and irregular discs have also been identified in certain species.
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62
The amino acid composition of thermostable proteins is not particularly unusual,except for a bias for increased levels of amino acids that form α-helices.
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63
Pseudopeptidoglycan (pseudomurein)is part of the cell wall of some methanogens.
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64
The cytoplasmic membrane of Picrophilus is extremely acid impermeable at very low pH.
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65
Many halophiles require a high ionic environment for survival.
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66
Though the known diversity of acetotrophic methanogens is low,they are ecologically significant in nature.
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67
Despite GC pairs having an additional hydrogen bond than AT pairs,hyperthermophilic Archaea generally have a lower GC ratio in their genomes when compared to other heat-sensitive prokaryotes.
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68
The light-stimulated proton pump of Halobacterium salinarum indirectly functions to pump sodium out of the cell by the activity of a Na⁺/H⁺ antiport system.
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69
Archaeal histones assist in maintaining the DNA in a double-stranded form at very high temperatures in species of Euryarchaeota.
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70
Archaeoglobus is a true sulfate reducer that forms a phylogenetically distinct lineage within the Euryarchaeota.
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71
Some crenarchaeotes have growth optima above the boiling point of water (at atmospheric pressure).
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72
When retinal in bacteriorhodopsin becomes excited,it directly catalyzes the formation of ATP.
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73
Thermoplasma metabolizes organic compounds leached from hot coal refuse.
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74
Thermoplasma grows either aerobically or anaerobically by sulfur respiration.
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75
Methanogenesis is coupled with proton motive force formation and ATP synthesis through the activity of ATPases.
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76
A small,heat-stable DNA-binding protein present in the cells of some Archaea,called Sac7d,binds to the minor groove of DNA in a very specific manner and increases its melting temperature by 40°C.
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77
Thermoplasma contains an extremely small genome complexed with a highly basic DNA-binding protein.
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78
With few exceptions,hyperthermophilic crenarchaeotes are obligate aerobes.
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79
Halophilic Archaea are the only inhabitants of highly saline environments.
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80
Replacing sodium with potassium can satisfy the requirement for sodium in the halobacteria.
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