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P. profundum SS9 strain cells were grown at two different pressure conditions 0.1 MPa and at 28 MPa. RNA extracted from the two different cultures was labelled with Cy5 and Cy3 and competitively hybridized on the same slide.
ORGANISM(S): Photobacterium profundum 
Genomic DNA extracted from two different Photobacterium profundum strains: SS9 strain (completely sequenced and used to made the microarray) and DSJ4 strain were labeled with Cy3 and Cy5 fluorophores and competitively hybridized on the microarray built on the basis of the SS9 strain genomic sequence...
ORGANISM(S): Photobacterium profundum 
Genomic DNA extracted from two different Photobacterium profundum strains: SS9 strain (completely sequenced and used to made the microarray) and 3TCK strain were labeled with Cy3 and Cy5 fluorophores and competitively hybridized on the microarray built on the basis of the SS9 strain genomic sequence...
ORGANISM(S): Photobacterium profundum 
P. profundum SS9 strain cells were grown at two different temperatures 4°C and 16°C. RNA extracted from the two different cultures was labelled with Cy5 and Cy3 and competitively hybridized on the same slide.
ORGANISM(S): Photobacterium profundum 
P. profundum SS9 strain cells were grown at two different pressure conditions 45 MPa and at 28 MPa. RNA extracted from the two different cultures was labelled with Cy5 and Cy3 and competitively hybridized on the same slide.
ORGANISM(S): Photobacterium profundum 

Salt marshes are highly productive ecosystems where microbial communities drive key

transformations of organic matter at rates often exceeding those of oceanic and inland

environments. Viruses are recognised as important drivers and regulators of global

biogeochemical cycling, y...

2026-06-26 | MTBLS12630 | MetaboLights
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