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What is the process by which bacteria remove nitrogen from the air and make it available for plants?

Bacteria performs nitrogen fixation, which involves converting the atmospheric nitrogen (N2) into usable organic nitrates (NO3-). Said bacteria are often referred to as nitrogen fixating bacteria. The process is sometimes called nitrification.Scientists have been able to give plants genes from bacteria to help them do a beeter job. This process is called recombinant DNA technology. Nitrogen fixing bacteria are in root nodules on legumes and maybe some other plant groups.Converts nitrogen in the air to nitrates.


What organisms other than bacteria are able to perform nitrogen fixation?

Some types of archaea and some species of cyanobacteria are also capable of performing nitrogen fixation. In addition, certain plants, such as legumes, have symbiotic relationships with nitrogen-fixing bacteria in their roots, allowing them to obtain fixed nitrogen in exchange for providing sugars to the bacteria.


What element must be fixed by bacteria?

Nitrogen is an element that needs to be fixed by bacteria. Bacteria convert atmospheric nitrogen into forms that can be used by plants and other organisms, such as ammonia or nitrates, through a process called nitrogen fixation. This is essential for maintaining the balance of nitrogen in ecosystems.


How is nitrogen gas processed or changes so that plant cells can use it?

Nitrogen gas is converted into a form that plant cells can use through a process called nitrogen fixation. This can be done by certain bacteria that live in the soil or in the root nodules of leguminous plants. These bacteria convert nitrogen gas into ammonia, which can then be taken up by plant roots and used to synthesize proteins and other essential molecules.


What does nitrogen fixation mean science?

Nitrogen fixation is the process by which nitrogen gas from the air is combined with some other element, such as hydrogen to make ammonia, or to make any other compound containing nitrogen.

Related Questions

What is the process in which nitrogen is converted into a usable form for life called?

The process by which nitrogen gas is converted into a usable form for life is called nitrogen fixation. This process is carried out by certain types of bacteria and archaea, which convert nitrogen gas into ammonia or other nitrogen-containing compounds that can be used by plants and other organisms.


What is the difference between nitrogen fixation and ammonification?

Nitrogen fixation is the process by which nitrogen gas from the atmosphere is converted into ammonia by certain bacteria. Ammonification, on the other hand, is the process by which organic nitrogen from dead organisms or waste is converted into ammonia by decomposers like bacteria and fungi. Nitrogen fixation introduces new nitrogen into the ecosystem, while ammonification recycles existing nitrogen.


What is nitrogen fixation primarily carried out by?

Nitrogen-fixating prokaryotes (such as bacteria) present in the roots of legumes and some other plants take N2 from the air and convert it to nitrogen compounds usable by plants. Nitrogen fixing bacteria (diazotrophs).


What is the proccess by which bacteria take nitrogen out of the atmosphere?

Bacteria use an enzyme called nitrogenase to convert atmospheric nitrogen (N2) into ammonia (NH3) through a process called nitrogen fixation. This ammonia can then be used by plants and other organisms as a source of nitrogen for growth and metabolism.


What is the only type of bacteria that soybeans and other legumes host to help with nitrogen fixation?

Rhizobium.


What is the process by which bacteria remove nitrogen from the air and make it available for plants?

Bacteria performs nitrogen fixation, which involves converting the atmospheric nitrogen (N2) into usable organic nitrates (NO3-). Said bacteria are often referred to as nitrogen fixating bacteria. The process is sometimes called nitrification.Scientists have been able to give plants genes from bacteria to help them do a beeter job. This process is called recombinant DNA technology. Nitrogen fixing bacteria are in root nodules on legumes and maybe some other plant groups.Converts nitrogen in the air to nitrates.


During nitrogen fixation nitrogen gas is converted into a form that what can use?

During nitrogen fixation, nitrogen gas is converted into ammonia or other forms of usable nitrogen by nitrogen-fixing bacteria. This process is important because plants and other organisms cannot use atmospheric nitrogen directly in this form.


What organisms other than bacteria are able to perform nitrogen fixation?

Some types of archaea and some species of cyanobacteria are also capable of performing nitrogen fixation. In addition, certain plants, such as legumes, have symbiotic relationships with nitrogen-fixing bacteria in their roots, allowing them to obtain fixed nitrogen in exchange for providing sugars to the bacteria.


What is the difference between symbiotic and asymbiotic nitrogen fixation?

Symbiotic nitrogen fixation occurs when nitrogen-fixing bacteria form a mutually beneficial relationship with plants, typically within nodules on plant roots. Asymbiotic nitrogen fixation, on the other hand, happens in free-living bacteria in the soil or water that can fix nitrogen without the need for a specific plant host.


Bacteria in root nodules change nitrogen gas in what form?

ammonia


What is the process by which bacteria removes nitrogen from the air and form nitrogen compounds?

Bacteria utilize an enzyme called nitrogenase to convert nitrogen gas (N2) into ammonia (NH3) in a process known as nitrogen fixation. This ammonia can then be further converted into other nitrogen compounds by bacteria to be used by plants and other organisms.


How does bacteria in soil change nitrogen compounds?

Bacteria in soil can convert nitrogen gas from the atmosphere into a form that plants can use through a process called nitrogen fixation. Other bacteria can convert organic nitrogen compounds into ammonia through the process of ammonification, and some bacteria can convert ammonia into nitrate through nitrification. These processes are essential for the cycling of nitrogen in the soil ecosystem.