Synechocystis sp pcc 6803
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Synechocystis Sp Pcc 6803. PCC 6803 is a widely used model cyanobacterium for studying responses and acclimation to different abiotic stresses. This proteome is part of the Synechocystis sp. PCC 6803 photomixotrophy is further complicated by the operation of anabolic and catabolic processes occurring in the same cellular compartment and by the presence of an interlinked thylakoid membrane-localized electron transport pathway involved in both photosynthesis and respiration Vermaas 2001. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006.
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-Experimental evidence at protein level i. PCC 6803 was the first phototrophic organism to be fully sequenced. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006. Strain PCC 6803 Kazusa Status. PCC 6803 was the first photosynthetic organism whose genome sequence was determined in 1996 Kazusa strain. Sequence features in the 1 Mb region from map positions 64 to 92 of the genome.
Synechocystis is a genus of unicellular freshwater cyanobacteria primarily represented by the strain Synechocystis sp.
The functions of nearly half of the genes has been deduced using similarity searches. Strain PCC 6803 Kazusa Status. The cyanobacterium Synechocystis sp. PCC 6803 and screens genes potentially affecting growth and L-lactate tolerance and production. PCC6803 is capable of both phototrophic growth by oxygenic photosynthesis during light periods and heterotrophic growth by glycolysis and oxidative phosphorylation during dark periods. Synechocystis is a genus of unicellular freshwater cyanobacteria primarily represented by the strain Synechocystis sp.
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Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. The NCBI taxonomy database is not an authoritative source for nomenclature or classification - please consult the relevant scientific literature for the most reliable information. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006. Participates in electron transfer between P700 and the cytochrome b6-f complex in. PCC 6803 photomixotrophy is further complicated by the operation of anabolic and catabolic processes occurring in the same cellular compartment and by the presence of an interlinked thylakoid membrane-localized electron transport pathway involved in both photosynthesis and respiration Vermaas 2001.
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PCC 6803 Taxonomy ID. This species is highly amenable to genetic modification. PCC 6803 was the first photosynthetic organism whose genome sequence was determined in 1996 Kazusa strain. PCC 6803 hereafter Synechocystis is a model organism for photosynthetic studies Berla et al 2013. The NCBI taxonomy database is not an authoritative source for nomenclature or classification - please consult the relevant scientific literature for the most reliable information.
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Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. Sequence features in the 1 Mb region from map positions 64 to 92 of the genome. Strain PCC 6803 Kazusa pan proteome Busco i. PCC 6803 and screens genes potentially affecting growth and L-lactate tolerance and production. One model cyanobacterial species is the unicellular cyanobacterium Synechocystis sp.
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PCC 6803 strain GT-U a derivative of the non-motile glucose-tolerant strain GT-Kazusa 59 was used as final host for all conjugations. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006. DNA Res 2153-66 191-8 1995 DOI. Participates in electron transfer between P700 and the cytochrome b6-f complex in. Among all cyanobacteria species Synechocystis sp.
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This proteome is part of the Synechocystis sp. The cyanobacterium Synechocystis sp. PCC 6803 and screens genes potentially affecting growth and L-lactate tolerance and production. This proteome is part of the Synechocystis sp. PCC 6803 photomixotrophy is further complicated by the operation of anabolic and catabolic processes occurring in the same cellular compartment and by the presence of an interlinked thylakoid membrane-localized electron transport pathway involved in both photosynthesis and respiration Vermaas 2001.
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Its genome has been sequenced and many systems biology and molecular biology tools are available to study this. Among all cyanobacteria species Synechocystis sp. Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. Strain PCC 6803 was routinely grown at 30C in liquid mineral medium MM under white light 2500 lx. -Experimental evidence at protein level i.
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PCC 6803 hereafter Synechocystis is a model organism for photosynthetic studies Berla et al 2013. Strain PCC 6803 Kazusa pan proteome Busco i. Changes in transcriptome proteome lipidome and photosynthesis in response to short term heat stress are well studied in this organism and histidine kinase 34 Hik34 is shown to play an important role in mediating such response. PCC6803 is capable of both phototrophic growth by oxygenic photosynthesis during light periods and heterotrophic growth by glycolysis and oxidative phosphorylation during dark periods. PCC 6803 Taxonomy ID.
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Strain PCC 6803 Kazusa pan proteome Busco i. In the model cyanobacterium Synechocystis sp. Synechocystis is a genus of unicellular freshwater cyanobacteria primarily represented by the strain Synechocystis sp. One model cyanobacterial species is the unicellular cyanobacterium Synechocystis sp. Participates in electron transfer between P700 and the cytochrome b6-f complex in.
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Here the authors develop an inducible CRISPRi gene repression library in Synechocystis sp. The cyanobacterium Synechocystis sp. PCC6803 is capable of both phototrophic growth by oxygenic photosynthesis during light periods and heterotrophic growth by glycolysis and oxidative phosphorylation during dark periods. This proteome is part of the Synechocystis sp. PCC 6803 was the first photosynthetic organism whose genome sequence was determined in 1996 Kazusa strain.
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Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. PCC 6803 photomixotrophy is further complicated by the operation of anabolic and catabolic processes occurring in the same cellular compartment and by the presence of an interlinked thylakoid membrane-localized electron transport pathway involved in both photosynthesis and respiration Vermaas 2001. The deletion mutants were grown in the presence of the selective antibiotic Km 50 μg ml 1. PCC 6803 Taxonomy ID. This species is highly amenable to genetic modification.
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Sequence features in the 1 Mb region from map positions 64 to 92 of the genome. PCC6803 is capable of both phototrophic growth by oxygenic photosynthesis during light periods and heterotrophic growth by glycolysis and oxidative phosphorylation during dark periods. Participates in electron transfer between P700 and the cytochrome b6-f complex in. PCC 6803 photomixotrophy is further complicated by the operation of anabolic and catabolic processes occurring in the same cellular compartment and by the presence of an interlinked thylakoid membrane-localized electron transport pathway involved in both photosynthesis and respiration Vermaas 2001. Strain PCC 6803 Kazusa Status.
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PCC 6803 Taxonomy ID. PCC 6803 was the first phototrophic organism to be fully sequenced. Its genome has been sequenced and many systems biology and molecular biology tools are available to study this. Among all cyanobacteria species Synechocystis sp. PCC 6803 and screens genes potentially affecting growth and L-lactate tolerance and production.
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Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. Strain PCC 6803 Kazusa pan proteome Busco i. Sequence analysis of the genome of the unicellular cyanobacterium Synechocystis sp. The deletion mutants were grown in the presence of the selective antibiotic Km 50 μg ml 1. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006.
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PCC 6803 hereafter Synechocystis is a model organism for photosynthetic studies Berla et al 2013. It thus plays an important role in basic research on the mechanism evolution and molecular genetics of the photosynthetic. Sequence features in the 1 Mb region from map positions 64 to 92 of the genome. PCC 6803 and screens genes potentially affecting growth and L-lactate tolerance and production. Strain PCC 6803 Kazusa pan proteome Busco i.
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PCC 6803 was the first phototrophic organism to be fully sequenced. Strain PCC 6803 Kazusa Status. The NCBI taxonomy database is not an authoritative source for nomenclature or classification - please consult the relevant scientific literature for the most reliable information. PCC 6803 Dissertation zur Erlangung des Doktorgrades der Fakultät für Biologie der Ludwig-Maximilians-Universität München vorgelegt von Irina Piven aus Moskau Russland 2006. PCC 6803 was the first photosynthetic organism whose genome sequence was determined in 1996 Kazusa strain.
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Strain PCC 6803 Kazusa pan proteome Busco i. The deletion mutants were grown in the presence of the selective antibiotic Km 50 μg ml 1. PCC6803 is capable of both phototrophic growth by oxygenic photosynthesis during light periods and heterotrophic growth by glycolysis and oxidative phosphorylation during dark periods. Sequence analysis of the genome of the unicellular cyanobacterium Synechocystis sp. The functions of nearly half of the genes has been deduced using similarity searches.
Source: pinterest.com
Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. Strain PCC 6803 Kazusa pan proteome Busco i. PCC 6803 is a widely used model cyanobacterium for studying responses and acclimation to different abiotic stresses. Tocopherol-deficient mutants of Synechocystis PCC 6803 remained able to cope with both high-intensity PAR and 1 O 2 accumulation which show that tocopherols are not specifically involved in protecting PSs against these ROS Maeda et al 2005. This proteome is part of the Synechocystis sp.
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Participates in electron transfer between P700 and the cytochrome b6-f complex in. The genomic sequence has revealed the structure of the genome and its gene constituents 3167 genes as well as the relative map positions of each gene. PCC 6803 was the first phototrophic organism to be fully sequenced. Strain PCC 6803 Kazusa Status. In the model cyanobacterium Synechocystis sp.
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