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Results: 1 to 20 of 70

Related Citations for PubMed (Select 20482888)

1.

Transcript and protein profiling identify candidate gene sets of potential adaptive significance in New Zealand Pachycladon.

Voelckel C, Mirzaei M, Reichelt M, Luo Z, Pascovici D, Heenan PB, Schmidt S, Janssen B, Haynes PA, Lockhart PJ.

BMC Evol Biol. 2010 May 20;10:151. doi: 10.1186/1471-2148-10-151.

2.

Transcriptional and biochemical signatures of divergence in natural populations of two species of New Zealand alpine Pachycladon.

Voelckel C, Heenan PB, Janssen B, Reichelt M, Ford K, Hofmann R, Lockhart PJ.

Mol Ecol. 2008 Nov;17(21):4740-53. doi: 10.1111/j.1365-294X.2008.03933.x. Epub 2008 Oct 8.

PMID:
18992001
3.

Chips and tags suggest plant-environment interactions differ for two alpine Pachycladon species.

Voelckel C, Gruenheit N, Biggs P, Deusch O, Lockhart P.

BMC Genomics. 2012 Jul 19;13:322.

4.

Geographic and evolutionary diversification of glucosinolates among near relatives of Arabidopsis thaliana (Brassicaceae).

Windsor AJ, Reichelt M, Figuth A, Svatos A, Kroymann J, Kliebenstein DJ, Gershenzon J, Mitchell-Olds T.

Phytochemistry. 2005 Jun;66(11):1321-33.

PMID:
15913672
5.
6.

Evolution of specifier proteins in glucosinolate-containing plants.

Kuchernig JC, Burow M, Wittstock U.

BMC Evol Biol. 2012 Jul 28;12:127. doi: 10.1186/1471-2148-12-127.

7.

Shotgun proteomic profiling of five species of New Zealand Pachycladon.

Mirzaei M, Pascovici D, Keighley T, George I, Voelckel C, Heenan PB, Haynes PA.

Proteomics. 2011 Jan;11(1):166-71. doi: 10.1002/pmic.200900816. Epub 2010 Dec 6. No abstract available.

PMID:
21182204
8.

Differential transcript regulation in Arabidopsis thaliana and the halotolerant Lobularia maritima indicates genes with potential function in plant salt adaptation.

Popova OV, Yang O, Dietz KJ, Golldack D.

Gene. 2008 Nov 1;423(2):142-8. doi: 10.1016/j.gene.2008.07.017. Epub 2008 Jul 25.

PMID:
18703123
9.

Analysis of shotgun proteomics and RNA profiling data from Arabidopsis thaliana chloroplasts.

Baginsky S, Kleffmann T, von Zychlinski A, Gruissem W.

J Proteome Res. 2005 Mar-Apr;4(2):637-40.

PMID:
15822946
10.

Transcriptional profiling implicates novel interactions between abiotic stress and hormonal responses in Thellungiella, a close relative of Arabidopsis.

Wong CE, Li Y, Labbe A, Guevara D, Nuin P, Whitty B, Diaz C, Golding GB, Gray GR, Weretilnyk EA, Griffith M, Moffatt BA.

Plant Physiol. 2006 Apr;140(4):1437-50. Epub 2006 Feb 24.

11.

Glucosinolate hydrolysis in Lepidium sativum--identification of the thiocyanate-forming protein.

Burow M, Bergner A, Gershenzon J, Wittstock U.

Plant Mol Biol. 2007 Jan;63(1):49-61. Epub 2006 Dec 1.

PMID:
17139450
12.

Insect herbivore counteradaptations to the plant glucosinolate-myrosinase system.

Winde I, Wittstock U.

Phytochemistry. 2011 Sep;72(13):1566-75. doi: 10.1016/j.phytochem.2011.01.016. Epub 2011 Feb 10. Review.

PMID:
21316065
14.

Transcription profiling of the metal-hyperaccumulator Thlaspi caerulescens (J. & C. PRESL).

Plessl M, Rigola D, Hassinen V, Aarts MG, Schat H.

Z Naturforsch C. 2005 Mar-Apr;60(3-4):216-23.

PMID:
15948586
15.

Conversion of MapMan to allow the analysis of transcript data from Solanaceous species: effects of genetic and environmental alterations in energy metabolism in the leaf.

Urbanczyk-Wochniak E, Usadel B, Thimm O, Nunes-Nesi A, Carrari F, Davy M, Bläsing O, Kowalczyk M, Weicht D, Polinceusz A, Meyer S, Stitt M, Fernie AR.

Plant Mol Biol. 2006 Mar;60(5):773-92.

PMID:
16649112
16.

Proteomic profiling of human retinal and choroidal endothelial cells reveals molecular heterogeneity related to tissue of origin.

Zamora DO, Riviere M, Choi D, Pan Y, Planck SR, Rosenbaum JT, David LL, Smith JR.

Mol Vis. 2007 Oct 30;13:2058-65.

17.

Transcriptomic and proteomic profiling of two porcine tissues using high-throughput technologies.

Hornshøj H, Bendixen E, Conley LN, Andersen PK, Hedegaard J, Panitz F, Bendixen C.

BMC Genomics. 2009 Jan 19;10:30. doi: 10.1186/1471-2164-10-30.

18.

Transcript and protein expression profiles of the NCI-60 cancer cell panel: an integromic microarray study.

Shankavaram UT, Reinhold WC, Nishizuka S, Major S, Morita D, Chary KK, Reimers MA, Scherf U, Kahn A, Dolginow D, Cossman J, Kaldjian EP, Scudiero DA, Petricoin E, Liotta L, Lee JK, Weinstein JN.

Mol Cancer Ther. 2007 Mar;6(3):820-32. Epub 2007 Mar 5.

19.

Tissue-specific mRNA expression profiling in grape berry tissues.

Grimplet J, Deluc LG, Tillett RL, Wheatley MD, Schlauch KA, Cramer GR, Cushman JC.

BMC Genomics. 2007 Jun 21;8:187.

20.

Rationale and study design of the CardioGene Study: genomics of in-stent restenosis.

Ganesh SK, Skelding KA, Mehta L, O'Neill K, Joo J, Zheng G, Goldstein J, Simari R, Billings E, Geller NL, Holmes D, O'Neill WW, Nabel EG.

Pharmacogenomics. 2004 Oct;5(7):952-1004.

PMID:
15469413
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