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Items: 8

1.

A dual omics approach to evaluate transcriptional and metabolic responses during lipid deprivation in an oyster parasite Perkinsus marinus

(Submitter supplied) In this study, we explored the metabolic processes of P. marinus under lipid deprived conditions to elucidate the interchanging flux of lipid and carbohydrate metabolism. Though P. marinus can synthesize their own lipids from available nutrients, they display a slower growth in media not supplemented with lipids as opposed to media with lipids. Under these conditions, using transcriptomics, we surprisingly observed evidence of stimulated lipid degradation through increased transcription of two core β-oxidation pathway enzymes.
Organism:
Perkinsus marinus
Type:
Expression profiling by high throughput sequencing
Platform:
GPL29693
6 Samples
Download data: TXT
Series
Accession:
GSE166132
ID:
200166132
2.

Illumina HiSeq 4000 (Perkinsus marinus)

Organism:
Perkinsus marinus
1 Series
6 Samples
Download data
Platform
Accession:
GPL29693
ID:
100029693
3.

0x_D

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062128
ID:
305062128
4.

0x_B

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062127
ID:
305062127
5.

0x _A

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062126
ID:
305062126
6.

Control_D

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062125
ID:
305062125
7.

Control_B

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062124
ID:
305062124
8.

Control _A

Organism:
Perkinsus marinus
Source name:
Perkinsus marinus cells
Platform:
GPL29693
Series:
GSE166132
Download data: TXT
Sample
Accession:
GSM5062123
ID:
305062123
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Supplemental Content

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