Las cianobacterias son capaces de asimilar diferentes fuentes de nitrógeno, como nitrato, nitrito y amonio. Algunas estirpes, como Anabaena SP. PCC 7120, son capaces de fijar nitrógeno atmosférico. El amonio actúa como represor nutricional de la asimilación de fuentes de nitrógeno alternativas. El producto del gen NTCA actúa como un regulador...
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January 14, 2020 (v1)PublicationUploaded on: March 27, 2023
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July 20, 2017 (v1)Publication
Nitrate is widely used as a nitrogen source by cyanobacteria, in which the nitrate assimilation structural genes frequently constitute the so-called nirA operon. This operon contains the genes encoding nitrite reductase (nirA), a nitrate/nitrite transporter (frequently an ABC-type transporter; nrtABCD), and nitrate reductase (narB). In the...
Uploaded on: March 27, 2023 -
July 25, 2017 (v1)Publication
A region of the genome of the filamentous, nitrogen-fixing, heterocyst- forming cyanobacterium Anabaena sp. strain PCC 7120 that contains a cluster of genes involved in nitrate assimilation has been identified. The genes nir, encoding nitrite reductase, and nrtABC, encoding elements of a nitrate permease, have been cloned. Insertion of a gene...
Uploaded on: December 2, 2022 -
July 24, 2017 (v1)Publication
Expression of the nitrate assimilation nir operon in the filamentous, heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120 requires the action of both the global nitrogen control transcription factor NtcA and the pathway-specific transcriptional regulator NtcB. In the genome of this cyanobacterium, the ntcB gene is found in a cluster...
Uploaded on: March 27, 2023 -
November 29, 2017 (v1)Publication
Cyanobacteria are able to produce several metabolites that have toxic effects on humans and animals. Among these cyanotoxins, the hepatotoxic microcystins (MC) occur frequently. The intracellular MC content produced by two strains of Microcystis aeruginosa, PCC7806 and PCC7820, and its production kinetics during the culture time were studied in...
Uploaded on: December 4, 2022