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N Vartanian

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Recent Articles
1.
Ton C, Vartanian N, Chai X, Lin M, Yuan X, Malone K, et al.
Breast Cancer Res Treat . 2010 Sep; 125(3):879-83. PMID: 20842525
Archived formalin-fixed, paraffin embedded (FFPE) tissues constitute a vast, well-annotated, but underexploited resource for the molecular study of cancer progression, largely because degradation, chemical modification, and cross-linking, render FFPE RNA...
2.
Loo L, Ton C, Wang Y, Grove D, Bouzek H, Vartanian N, et al.
Genes Chromosomes Cancer . 2008 Aug; 47(12):1049-66. PMID: 18720524
The two main histological types of infiltrating breast cancer, lobular (ILC) and the more common ductal (IDC) carcinoma are morphologically and clinically distinct. To assess the molecular alterations associated with...
3.
Gosti F, Beaudoin N, Serizet C, Webb A, Vartanian N, Giraudat J
Plant Cell . 1999 Oct; 11(10):1897-910. PMID: 10521520
The plant hormone abscisic acid (ABA) is a key regulator of seed maturation and germination and mediates adaptive responses to environmental stress. In Arabidopsis, the ABI1 gene encodes a member...
4.
Leymarie J, Damerval C, Marcotte L, Combes V, Vartanian N
Plant Cell Physiol . 1996 Oct; 37(7):966-75. PMID: 8979397
In order to detect gene products involved in Arabidopsis drought adaptive strategy, 2D-PAGE protein patterns of two auxin-insensitive mutants, axr1, axr2, differentially affected in specific drought responses, were compared to...
5.
Gosti F, Bertauche N, Vartanian N, Giraudat J
Mol Gen Genet . 1995 Jan; 246(1):10-8. PMID: 7823904
Four clones corresponding to Arabidopsis thaliana transcripts regulated by progressive drought stress were isolated. Abundance of the AtDi8, AtDi19 and AtDi21 mRNAs increased in both roots and leaves during progressive...
6.
Giraudat J, Parcy F, Bertauche N, Gosti F, Leung J, Morris P, et al.
Plant Mol Biol . 1994 Dec; 26(5):1557-77. PMID: 7858204
Abscisic acid (ABA) participates in the control of diverse physiological processes. The characterization of deficient mutants has clarified the ABA biosynthetic pathway in higher plants. Deficient mutants also lead to...
7.
Vartanian N, Marcotte L, Giraudat J
Plant Physiol . 1994 Feb; 104(2):761-767. PMID: 12232124
Drought rhizogenesis is an adaptive strategy that occurs during progressive drought stress and is characterized in the Brassicaceae and related families by the formation of short, tuberized, hairless roots. These...
8.
Reviron M, Vartanian N, Sallantin M, Huet J, Pernollet J, de Vienne D
Plant Physiol . 1992 Nov; 100(3):1486-93. PMID: 16653148
Under progressive drought stress, Brassica napus displays differential leaf modifications. The oldest leaves, developed before the onset of water deficit, wilt gradually, whereas the youngest leaves harden. Hardening was distinguished...
9.
DOWNING W, Mauxion F, Fauvarque M, Reviron M, de Vienne D, Vartanian N, et al.
Plant J . 1992 Sep; 2(5):685-93. PMID: 1302628
A cDNA clone encoding a Brassica napus drought-induced 22 kDa (BnD22) protein has been isolated and characterized. The BnD22 transcript accumulated in response to drought reversibly, and to other conditions...
10.
Damerval C, Vartanian N, de Vienne D
Plant Physiol . 1988 Apr; 86(4):1304-9. PMID: 16666071
Differential two-dimensional protein patterns as related to tissue specificity and water conditions were investigated within Brassica napus var oleifera root system. The different parts of the root system (tap root,...