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    Results: 1 to 20 of 118

    1.

    A novel high efficiency, low maintenance, hydroponic system for synchronous growth and flowering of Arabidopsis thaliana.

    Tocquin P, Corbesier L, Havelange A, Pieltain A, Kurtem E, Bernier G, Périlleux C.

    BMC Plant Biol. 2003 Jan 30;3:2.PMID: 12556248 [PubMed - indexed for MEDLINE]Related articlesFree article

    2.

    Seed-to-seed growth of Arabidopsis thaliana on the International Space Station.

    Link BM, Durst SJ, Zhou W, Stankovic B.

    Adv Space Res. 2003;31(10):2237-43.PMID: 14686438 [PubMed - indexed for MEDLINE]Related articles

    3.

    Critical evaluation and statistical validation of a hydroponic culture system for Arabidopsis thaliana.

    Smeets K, Ruytinx J, Van Belleghem F, Semane B, Lin D, Vangronsveld J, Cuypers A.

    Plant Physiol Biochem. 2008 Feb;46(2):212-8. Epub 2007 Oct 9.PMID: 18024051 [PubMed - indexed for MEDLINE]Related articles

    4.

    A simple hydroponic culture method for the development of a highly viable root system in Arabidopsis thaliana.

    Toda T, Koyama H, Hara T.

    Biosci Biotechnol Biochem. 1999 Jan;63(1):210-2.PMID: 10052145 [PubMed - indexed for MEDLINE]Related articlesFree article

    5.

    Enzymatic and metabolic diagnostic of nitrogen deficiency in Arabidopsis thaliana Wassileskija accession.

    Lemaître T, Gaufichon L, Boutet-Mercey S, Christ A, Masclaux-Daubresse C.

    Plant Cell Physiol. 2008 Jul;49(7):1056-65. Epub 2008 May 28.PMID: 18508804 [PubMed - indexed for MEDLINE]Related articles

    6.

    Reduction of mineral nutrient availability accelerates flowering of Arabidopsis thaliana.

    Kolár J, Senková J.

    J Plant Physiol. 2008 Oct 9;165(15):1601-9. Epub 2008 Mar 4.PMID: 18308426 [PubMed - indexed for MEDLINE]Related articles

    7.

    Floral transition and nitric oxide emission during flower development in Arabidopsis thaliana is affected in nitrate reductase-deficient plants.

    Seligman K, Saviani EE, Oliveira HC, Pinto-Maglio CA, Salgado I.

    Plant Cell Physiol. 2008 Jul;49(7):1112-21. Epub 2008 Jun 7.PMID: 18540030 [PubMed - indexed for MEDLINE]Related articles

    8.

    Characterization of a novel developmentally retarded mutant (drm1) associated with the autonomous flowering pathway in Arabidopsis.

    Zhu Y, Zhao HF, Ren GD, Yu XF, Cao SQ, Kuai BK.

    Cell Res. 2005 Feb;15(2):133-40.PMID: 15740643 [PubMed - indexed for MEDLINE]Related articlesFree article

    9.

    Move on up, it's time for change--mobile signals controlling photoperiod-dependent flowering.

    Kobayashi Y, Weigel D.

    Genes Dev. 2007 Oct 1;21(19):2371-84. Review.PMID: 17908925 [PubMed - indexed for MEDLINE]Related articlesFree article

    10.

    Life cycle experiments with Arabidopsis grown under red light-emitting diodes (LEDs).

    Goins GD, Yorio NC, Sanwo-Lewandowski MM, Brown CS.

    Life Support Biosph Sci. 1998;5(2):143-9.PMID: 11541670 [PubMed - indexed for MEDLINE]Related articles

    11.

    The control of flowering in time and space.

    Jaeger KE, Graf A, Wigge PA.

    J Exp Bot. 2006;57(13):3415-8. Epub 2006 Sep 27. Review.PMID: 17005922 [PubMed - indexed for MEDLINE]Related articlesFree article

    12.

    The AUXIN RESPONSE FACTOR 2 gene of Arabidopsis links auxin signalling, cell division, and the size of seeds and other organs.

    Schruff MC, Spielman M, Tiwari S, Adams S, Fenby N, Scott RJ.

    Development. 2006 Jan;133(2):251-61. Epub 2005 Dec 8.PMID: 16339187 [PubMed - indexed for MEDLINE]Related articlesFree article

    13.

    Mechanisms and function of flower and inflorescence reversion.

    Tooke F, Ordidge M, Chiurugwi T, Battey N.

    J Exp Bot. 2005 Oct;56(420):2587-99. Epub 2005 Aug 30. Review.PMID: 16131510 [PubMed - indexed for MEDLINE]Related articlesFree article

    14.

    Regulation of CONSTANS and FLOWERING LOCUS T expression in response to changing light quality.

    Kim SY, Yu X, Michaels SD.

    Plant Physiol. 2008 Sep;148(1):269-79. Epub 2008 Jul 30.PMID: 18667727 [PubMed - indexed for MEDLINE]Related articlesFree article

    15.

    Genetic interactions between FLM and other flowering-time genes in Arabidopsis thaliana.

    Scortecci K, Michaels SD, Amasino RM.

    Plant Mol Biol. 2003 Jul;52(5):915-22.PMID: 14558654 [PubMed - indexed for MEDLINE]Related articles

    16.

    The Arabidopsis thaliana SNF2 homolog AtBRM controls shoot development and flowering.

    Farrona S, Hurtado L, Bowman JL, Reyes JC.

    Development. 2004 Oct;131(20):4965-75. Epub 2004 Sep 15.PMID: 15371304 [PubMed - indexed for MEDLINE]Related articlesFree article

    17.

    Differential regulation of FLOWERING LOCUS C expression by vernalization in cabbage and Arabidopsis.

    Lin SI, Wang JG, Poon SY, Su CL, Wang SS, Chiou TJ.

    Plant Physiol. 2005 Mar;137(3):1037-48. Epub 2005 Feb 25.PMID: 15734903 [PubMed - indexed for MEDLINE]Related articlesFree article

    18.

    Integration of flowering signals in winter-annual Arabidopsis.

    Michaels SD, Himelblau E, Kim SY, Schomburg FM, Amasino RM.

    Plant Physiol. 2005 Jan;137(1):149-56. Epub 2004 Dec 23.PMID: 15618421 [PubMed - indexed for MEDLINE]Related articlesFree article

    19.

    Arabidopsis trehalose-6-phosphate synthase 1 is essential for normal vegetative growth and transition to flowering.

    van Dijken AJ, Schluepmann H, Smeekens SC.

    Plant Physiol. 2004 Jun;135(2):969-77. Epub 2004 Jun 4.PMID: 15181208 [PubMed - indexed for MEDLINE]Related articlesFree article

    20.

    Photoperiod regulates flower meristem development in Arabidopsis thaliana.

    Jeong S, Clark SE.

    Genetics. 2005 Feb;169(2):907-15. Epub 2004 Oct 16.PMID: 15489527 [PubMed - indexed for MEDLINE]Related articlesFree article

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