生物種
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リソース名
|
RRC ID
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タイトル
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ジャーナル
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公開日
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外部リンク
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ショウジョウバエ
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7461R-4
,
16905R-1
,
6926R-2
,
6660R-2
|
78908
|
A fatty acid anabolic pathway in specialized-cells sustains a remote signal that controls egg activation in Drosophila.
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PLoS Genet |
2024-3-1 |
Pubmed
Full text
|
線虫
|
tm6725
|
75968
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Comparative metabolomics with Metaboseek reveals functions of a conserved fat metabolism pathway in C. elegans.
|
Nat Commun |
2022-2-10 |
Pubmed
Full text
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ヒト・動物細胞
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Hep G2
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69763
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IL-19 Contributes to the Development of Nonalcoholic Steatohepatitis by Altering Lipid Metabolism.
|
Cells |
2021-12-13 |
Pubmed
Full text
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ヒト・動物細胞
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IEC 6(RCB0993)
|
62787
|
Long-chain bases of sphingolipids are transported into cells via the acyl-CoA synthetases.
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Sci Rep |
2016-5-3 |
Pubmed
Full text
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ショウジョウバエ
|
|
57268
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Adipocyte Metabolic Pathways Regulated by Diet Control the Female Germline Stem Cell Lineage in Drosophila melanogaster.
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Genetics |
2017-6-1 |
Pubmed
Full text
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線虫
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tm1037
|
46570
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3-Ketoacyl thiolase delays aging of Caenorhabditis elegans and is required for lifespan extension mediated by sir-2.1.
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Proc Natl Acad Sci U S A |
2010-11-2 |
Pubmed
Full text
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一般微生物
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JCM 30665
,
JCM 30666
|
41215
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Halorubrum yunnanense sp. nov., isolated from a subterranean salt mine.
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Int J Syst Evol Microbiol |
2015-12-1 |
Pubmed
Full text
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一般微生物
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JCM 4734
|
41147
|
Streptomyces sasae sp. nov., isolated from bamboo (Sasa borealis) rhizosphere soil.
|
Int J Syst Evol Microbiol |
2015-10-1 |
Pubmed
Full text
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酵母
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BY8938(SH8938)
,
BY8940(SH8940)
,
BY8942(SH8942)
,
BY8943(SH8943)
,
BY8944(SH8944)
,
BY4848(SH4848 (W303-1A))
,
BY19993(KYC1289)
,
BY19994(KYC1290)
,
BY19995(KYC1291)
,
BY19996(KYC1292)
,
...
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35132
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Ketoacyl synthase domain is a major determinant for fatty acyl chain length in Saccharomyces cerevisiae.
|
Arch Microbiol |
2013-12-1 |
Pubmed
Full text
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ショウジョウバエ
|
|
21843
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Drosophila melanogaster Acetyl-CoA-carboxylase sustains a fatty acid-dependent remote signal to waterproof the respiratory system.
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PLoS Genet |
2012-8-30 |
Pubmed
Full text
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ショウジョウバエ
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4427R-1
|
21829
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Mondo/ChREBP-Mlx-regulated transcriptional network is essential for dietary sugar tolerance in Drosophila.
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PLoS Genet |
2013-4-1 |
Pubmed
Full text
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