Biology · Environmental Studies
Microbiology and Nitrogen Cycle
1,029 Questions
This hub focuses on microbiology and the nitrogen cycle, covering essential concepts about bacteria and soil microbes. Topics include nitrogen fixation, bacterial structures, and soil microbial processes. These concepts are frequently tested in general science sections of various competitive exams.
Nitrogen fixing bacteriaGram-positive bacteriaBacterial flagellaDenitrifying bacteriaAmmonia conversion processBacterial resting spores
Microbiology and Nitrogen Cycle Questions
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Legumes fix nitrogen only through specialized bacteria that live in their leaves.
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Legumes fix nitrogen independent of any specialized association.
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Legumes fix nitrogen only through the specialised bacteria that live in their roots.
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Legumes are incapable of fixing nitrogen.
C
Correct answer
Explanation
Leguminous plants have a symbiotic relationship with nitrogen-fixing bacteria, most notably Rhizobium. These bacteria reside in specialized nodules formed on the roots of the plant, converting atmospheric nitrogen into a form the plant can absorb.
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chemical industries
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symbiotic bacteria
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lightning discharge
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denitrifying bacteria
B
Correct answer
Explanation
Biological nitrogen fixation, particularly by symbiotic bacteria like Rhizobium in legume nodules, accounts for the vast majority of nitrogen fixed in nature. This process far exceeds the amounts fixed by lightning or industrial processes.
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lightning discharge
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denitrifying bacteria
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symbiotic bacteria
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none of the above
C
Correct answer
Explanation
Rhizobium is the most commom symbiotic bacteria, which carry out the nitrogen fixation.
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salt inhibits chemosynthesis
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bacteria do not have enough light for photosynthesis
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bacteria become plasmolysed and are consequently killed
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the pickle does not contain nutrients necessary for bacteria to live in
C
Correct answer
Explanation
Due to the hypertonic nature of salt. Any living cell in such an environment will become plasmolysed (loss of water) and die or become temporarily inactivated.
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the bacteria which have anaerobic growth, but continues in the presence of oxygen
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the bacteria which have only aerobic growth and oxygen required
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the bacteria which have both aerobic and anaerobic growth, and have greater growth in the presence of oxygen
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the bacteria which have only anaerobic growth, but ceases in the presence of oxygen
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the bacteria which have only aerobic growth, but oxygen is required in low concentration
A
Correct answer
Explanation
Aerotolerant anaerobes: Bacteria, which have anaerobic growth, but continues in the presence of oxygen.
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Seaweed extract (polysaccharide)
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Biotin
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Sodium Thioglycolate
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Oxyrase
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Both the options 3 and 4
E
Correct answer
Explanation
Sodium Thioglycolate combines with dissolved O
2 to deplete O
2 in media.Oxyrase is a bacterial respiratory enzyme that can be put in media; it combines O
2 with H+ to remove O
2 by forming H
2O and turns the petri dish into a mini-anaerobic chamber.
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Malvaceae
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Cruciferae
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Leguminosae
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Papaveraceae
C
Correct answer
Explanation
Nitrogen-fixing bacteria like Rhizobium form symbiotic relationships with the root nodules of plants in the Leguminosae family, which includes peas and beans. These bacteria convert atmospheric nitrogen into a form that plants can use for growth. Other families like Malvaceae or Cruciferae do not typically host these specific symbiotic bacteria.
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anerobic photosynthesis
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oxygenic photosynthesis
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carbonic photosynthesis
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anoxygenic photosynthesis
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aerobic photosynthesis
D
Correct answer
Explanation
There are some types of bacteria that carry out anoxygenic photosynthesis which consumes carbon dioxide, but does not release oxygen.
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thermoacidophiles
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thermoplasma
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sulfolobus
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halophiles
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methanobacterium
A
Correct answer
Explanation
These grow at a temperature range of 78 to 95 degree Celsius and a pH range of 2.5 to 6.
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citrobacter
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pseudomonas
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arthrobacter
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thiobacillus
B
Correct answer
Explanation
Pseudomonas putida is a genetically engineered bacterium widely recognized for its ability to degrade hydrocarbons, making it useful for bioremediation in oil spill cleanup.
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Escherichia coli
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Geobacillus stearothermophilus
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Bacillus psychrophilus
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Pseudomonas fluorescens
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Thermus aquaticus
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Sulfolobus, Picrophilus, Ferroplasma, Acontium
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Escherichia, Euglena, Paramecium, Natronobacterium
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Euglena, Picrophilus, Ferroplasma, Acontium
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Paramecium, Natronobacterium, Picrophilus, Ferroplasma
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Natronobacterium, Paramecium, Euglena, Paramecium
A
Correct answer
Explanation
Yes, it is the correct answer.
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Azotobacter
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Nostoc
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Anabaena
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Azospirillum
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Pseudomonas putida
B
Correct answer
Explanation
Nostoc can fix atmospheric nitrogen and is used as inoculations for paddy crops grown both under upland and lowland conditions.
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Fungi
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Pseudomonas
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Rhizobium
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Nitrosomonas
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Azotobacter
D
Correct answer
Explanation
This is the correct option as nitrosomonas play the role of nitrification in the nitrogen cycle, i.e. convert ammonia into nitrites and then into nitrates.
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ammonification
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nitrification
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denitrification
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nitrogen fixation
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None of these
C
Correct answer
Explanation
This is the correct option. The conversion of nitrate salts into free nitrogen gas is called denitrification.