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PUBMED FOR HANDHELDS

Journal Abstract Search


115 related items for PubMed ID: 11537674

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  • 3. Determination of cytoplasmic calcium concentration in Dryopteris spores: a developmentally non-disruptive technique for loading of the calcium indicator fura-2.
    Scheuerlein R, Schmidt K, Poenie M, Roux SJ.
    Planta; 1991; 184():166-74. PubMed ID: 11538116
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  • 4. Role of calcium ions in phytochrome responses: an update.
    Roux SJ, Wayne RO, Datta N.
    Physiol Plant; 1986; 66():344-8. PubMed ID: 11538657
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  • 5. Ca2+ and phytochrome action in plants.
    Roux SJ.
    Bioscience; 1984 Jan; 34(1):25-9. PubMed ID: 11540810
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  • 6. Early quantitative method for measuring germination in non-green spores of Dryopteris paleacea using an epifluorescence-microscope technique.
    Scheuerlein R, Wayne R, Roux SJ.
    Physiol Plant; 1988 Jan; 73(4):505-11. PubMed ID: 11539034
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  • 7. Gene activity during germination of spores of the fern, Onoclea sensibilis: RNA and protein synthesis and the role of stored mRNA.
    Raghavan V.
    J Exp Bot; 1991 Feb; 42(235):251-60. PubMed ID: 11537731
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  • 10. The signal transducing photoreceptors of plants.
    Franklin KA, Larner VS, Whitelam GC.
    Int J Dev Biol; 2005 Feb; 49(5-6):653-64. PubMed ID: 16096972
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  • 11. [Phytochrome as a photoreceptor in plant photomorphogenesis (author's transl)].
    Kopcewicz J.
    Postepy Biochem; 1979 Feb; 25(2):211-28. PubMed ID: 504030
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  • 12. Gene activity during germination of spores of the fern, Onoclea sensibilis. Cell-free translation analysis of mRNA of spores and the effect of alpha-amanitin on spore germination.
    Raghavan V.
    J Plant Physiol; 1992 Feb; 140(4):434-40. PubMed ID: 11538173
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  • 13. Limited period of graviresponsiveness in germinating spores of Ceratopteris richardii.
    Edwards ES, Roux SJ.
    Planta; 1994 Feb; 195():150-2. PubMed ID: 11540165
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  • 14. Fate of a "maturation-specific" messenger RNA during early germination of mung-bean seeds [proceedings].
    Manickam A, Peumans WJ, Carlier AR.
    Arch Int Physiol Biochim; 1979 Feb; 87(1):195-6. PubMed ID: 92270
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  • 15. Interorgan correlations and phytochrome: leaf expansion.
    De Greef JA, Caubergs R.
    Arch Int Physiol Biochim; 1972 Dec; 80(5):961-2. PubMed ID: 4127082
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  • 16. Light effects and changes in auxin content during the development of axillary buds in decapitated Phaseolus seedlings [proceedings].
    De Greef J, Van Hoof, Caubergs R, Keppens H.
    Arch Int Physiol Biochim; 1976 Dec; 84(5):1063-5. PubMed ID: 65991
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  • 17. The role of phytochrome in stress tolerance.
    Carvalho RF, Campos ML, Azevedo RA.
    J Integr Plant Biol; 2011 Dec; 53(12):920-9. PubMed ID: 22040287
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  • 19. Interorgan correlations and phytochrome: changes in plastid ultrastructure during de-etiolation processes.
    De Greef JA, Verbelen JP.
    Arch Int Physiol Biochim; 1972 Dec; 80(5):962-3. PubMed ID: 4127083
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  • 20. What remains of the Cholodny-Went theory? Riding the transduction train to the answer.
    Roux SJ.
    Plant Cell Environ; 1992 Sep; 15(7):783-4. PubMed ID: 11541812
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