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Items: 21

1.

Early feeding of rainbow trout (Oncorhynchus mykiss) with methionine deficient diet over a two-week period: consequences for liver mitochondria in juveniles.

Séité S, Masagounder K, Heraud C, Véron V, Marandel L, Panserat S, Seiliez I.

J Exp Biol. 2019 Sep 5. pii: jeb.203687. doi: 10.1242/jeb.203687. [Epub ahead of print]

PMID:
31488624
2.

Profiling the rainbow trout hepatic miRNAome under diet-induced hyperglycemia.

Kostyniuk DJ, Marandel L, Jubouri M, Dias K, de Souza RF, Zhang D, Martyniuk CJ, Panserat S, Mennigen JA.

Physiol Genomics. 2019 Sep 1;51(9):411-431. doi: 10.1152/physiolgenomics.00032.2019. Epub 2019 Jul 8.

PMID:
31282806
3.

Pck-ing up steam: Widening the salmonid gluconeogenic gene duplication trail.

Marandel L, Kostyniuk DJ, Best C, Forbes JLI, Liu J, Panserat S, Mennigen JA.

Gene. 2019 May 25;698:129-140. doi: 10.1016/j.gene.2019.02.079. Epub 2019 Mar 5.

PMID:
30849535
4.

Impact of Dietary Carbohydrate/Protein Ratio on Hepatic Metabolism in Land-Locked Atlantic Salmon (Salmo salar L.).

Betancor MB, Olsen RE, Marandel L, Skulstad OF, Madaro A, Tocher DR, Panserat S.

Front Physiol. 2018 Dec 6;9:1751. doi: 10.3389/fphys.2018.01751. eCollection 2018.

5.

Regulation by Dietary Carbohydrates of Intermediary Metabolism in Liver and Muscle of Two Isogenic Lines of Rainbow Trout.

Song X, Marandel L, Skiba-Cassy S, Corraze G, Dupont-Nivet M, Quillet E, Geurden I, Panserat S.

Front Physiol. 2018 Nov 13;9:1579. doi: 10.3389/fphys.2018.01579. eCollection 2018.

6.

New Insights on Intermediary Metabolism for a Better Understanding of Nutrition in Teleosts.

Panserat S, Marandel L, Seiliez I, Skiba-Cassy S.

Annu Rev Anim Biosci. 2019 Feb 15;7:195-220. doi: 10.1146/annurev-animal-020518-115250. Epub 2018 Nov 12.

PMID:
30418804
7.

DNA methylation of the promoter region of bnip3 and bnip3l genes induced by metabolic programming.

Veron V, Marandel L, Liu J, Vélez EJ, Lepais O, Panserat S, Skiba S, Seiliez I.

BMC Genomics. 2018 Sep 17;19(1):677. doi: 10.1186/s12864-018-5048-4.

8.

Hepatic glucose metabolic responses to digestible dietary carbohydrates in two isogenic lines of rainbow trout.

Song X, Marandel L, Dupont-Nivet M, Quillet E, Geurden I, Panserat S.

Biol Open. 2018 Jun 5;7(6). pii: bio032896. doi: 10.1242/bio.032896.

9.

Epigenetics in teleost fish: From molecular mechanisms to physiological phenotypes.

Best C, Ikert H, Kostyniuk DJ, Craig PM, Navarro-Martin L, Marandel L, Mennigen JA.

Comp Biochem Physiol B Biochem Mol Biol. 2018 Oct;224:210-244. doi: 10.1016/j.cbpb.2018.01.006. Epub 2018 Jan 31.

PMID:
29369794
10.

A reassessment of the carnivorous status of salmonids: Hepatic glucokinase is expressed in wild fish in Kerguelen Islands.

Marandel L, Gaudin P, Guéraud F, Glise S, Herman A, Plagnes-Juan E, Véron V, Panserat S, Labonne J.

Sci Total Environ. 2018 Jan 15;612:276-285. doi: 10.1016/j.scitotenv.2017.08.247. Epub 2017 Sep 1.

PMID:
28850848
11.

Long-term programming effect of embryonic hypoxia exposure and high-carbohydrate diet at first feeding on glucose metabolism in juvenile rainbow trout.

Liu J, Dias K, Plagnes-Juan E, Veron V, Panserat S, Marandel L.

J Exp Biol. 2017 Oct 15;220(Pt 20):3686-3694. doi: 10.1242/jeb.161406. Epub 2017 Aug 10.

12.

Evolutionary history of glucose-6-phosphatase encoding genes in vertebrate lineages: towards a better understanding of the functions of multiple duplicates.

Marandel L, Panserat S, Plagnes-Juan E, Arbenoits E, Soengas JL, Bobe J.

BMC Genomics. 2017 May 2;18(1):342. doi: 10.1186/s12864-017-3727-1.

13.

Exposure to an acute hypoxic stimulus during early life affects the expression of glucose metabolism-related genes at first-feeding in trout.

Liu J, Plagnes-Juan E, Geurden I, Panserat S, Marandel L.

Sci Rep. 2017 Mar 23;7(1):363. doi: 10.1038/s41598-017-00458-4.

14.

Remodelling of the hepatic epigenetic landscape of glucose-intolerant rainbow trout (Oncorhynchus mykiss) by nutritional status and dietary carbohydrates.

Marandel L, Lepais O, Arbenoits E, Véron V, Dias K, Zion M, Panserat S.

Sci Rep. 2016 Aug 26;6:32187. doi: 10.1038/srep32187.

15.

Glucose metabolism ontogenesis in rainbow trout (Oncorhynchus mykiss) in the light of the recently sequenced genome: new tools for intermediary metabolism programming.

Marandel L, Véron V, Surget A, Plagnes-Juan É, Panserat S.

J Exp Biol. 2016 Mar;219(Pt 5):734-43. doi: 10.1242/jeb.134304. Epub 2016 Jan 8.

16.

New insights into the nutritional regulation of gluconeogenesis in carnivorous rainbow trout (Oncorhynchus mykiss): a gene duplication trail.

Marandel L, Seiliez I, Véron V, Skiba-Cassy S, Panserat S.

Physiol Genomics. 2015 Jul;47(7):253-63. doi: 10.1152/physiolgenomics.00026.2015. Epub 2015 Apr 21.

PMID:
25901068
17.

Evolutionary history and epigenetic regulation of the three paralogous pax7 genes in rainbow trout.

Seiliez I, Froehlich JM, Marandel L, Gabillard JC, Biga PR.

Cell Tissue Res. 2015 Mar;359(3):715-27. doi: 10.1007/s00441-014-2060-0. Epub 2014 Dec 10.

18.

Do not put all teleosts in one net: focus on the sox2 and pou2 genes.

Marandel L, Labbe C, Bobe J, Jammes H, Lareyre JJ, Le Bail PY.

Comp Biochem Physiol B Biochem Mol Biol. 2013 Feb;164(2):69-79. doi: 10.1016/j.cbpb.2012.10.005. Epub 2012 Nov 8.

PMID:
23142214
19.

Evolutionary history of c-myc in teleosts and characterization of the duplicated c-myca genes in goldfish embryos.

Marandel L, Labbe C, Bobe J, Le Bail PY.

Mol Reprod Dev. 2012 Feb;79(2):85-96. doi: 10.1002/mrd.22004. Epub 2011 Dec 28.

PMID:
22213278
20.

nanog 5'-upstream sequence, DNA methylation, and expression in gametes and early embryo reveal striking differences between teleosts and mammals.

Marandel L, Labbe C, Bobe J, Le Bail PY.

Gene. 2012 Jan 15;492(1):130-7. doi: 10.1016/j.gene.2011.10.037. Epub 2011 Oct 20.

PMID:
22037485
21.

Trout coelomic fluid suitability as Goldfish oocyte extender can be determined by a simple turbidity test.

Depince A, Marandel L, Goardon L, Le Bail PY, Labbe C.

Theriogenology. 2011 Jun;75(9):1755-61. doi: 10.1016/j.theriogenology.2010.12.022. Epub 2011 Feb 26.

PMID:
21356550

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