Search Results - "Cseplö, A."

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  1. 1

    Spatial distribution of Trichinella britovi, T. pseudospiralis and T. spiralis in red foxes ( Vulpes vulpes) in Hungary by Széll, Z., Marucci, G., Bajmóczy, E., Cséplő, A., Pozio, E., Sréter, T.

    Published in Veterinary parasitology (01-10-2008)
    “…The red fox ( Vulpes vulpes) is considered one of the main reservoir of Trichinella spp. in Europe. As limited information on Trichinella infection in wildlife…”
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  2. 2

    Subcellular location of lincomycin resistance in Nicotiana mutants by Cséplö, A, Eigel, L, Horváth, G V, Medgyesy, P, Herrmann, R G, Koop, H U

    Published in Molecular & general genetics (01-01-1993)
    “…Lincomycin-resistant Nicotiana plumbaginifolia plastid mutants were considered also to carry mitochondrial mutations on the basis of their ability to grow in…”
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  3. 3

    A 42 bp promoter fragment of the gene for subunit III of photosystem I (psaF) is crucial for its activity by Flieger, K., Tyagi, A., Sopory, S., Cseplö, A., Herrmann, R.G., Oelmüller, R.

    “…The promoter of the gene for the subunit III of photosystem I reaction center (psaF) from spinach has been dissected and studied via promoter/GUS gene fusions…”
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  4. 4

    Characteristic symptoms of photosynthesis inhibition by herbicides are expressed in photomixotrophic tissue cultures of Nicotiana by Cseploe, A. (Hungarian Academy of Sciences, Szeged (Hungary). Inst. of Plant Physiology), Medgyesy, P

    Published in Planta (01-05-1986)
    “…A photomixotrophic tissue culture system for Nicotiana plumbaginifolia and N. tabacum has been developed in which a primary symptom (bleaching) of the…”
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  5. 5

    Impact of the stringency of cell selection on plastid segregation in protoplast fusion-derived Nicotiana regenerates by Malone, R. (Hungarian Academy of Sciences, Szeged (Hungary). Biological Research Centre), Horvath, G.V, Cseploe, A, Buzas, B, Dix, P.J, Medgyesy, P

    Published in Theoretical and applied genetics (01-09-1992)
    “…Vegetative segregation of a mixed plastid population in protoplast fusion-derived cell lines can be directed by a selection favouring the multiplication of one…”
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  6. 6

    Tubular reabsorption of protein by porcine kidneys during neonatal alimentary proteinuria by Baintner, K, Kerényi, T, Cséplö, A

    “…The ability of renal proximal tubular cells to reabsorb protein early in postnatal life was investigated using goat haemoglobin as tracer. The haemoglobin was…”
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  7. 7

    Lincomycin resistance, a new type of maternally inherited mutation in Nicotiana plumbaginifolia by Cseplo, A, Maliga, P

    Published in Current genetics (01-01-1982)
    “…Lincomycin resistant cell lines were screened in monoploid (X = 10 chromosomes) protoplast cultures of Nicotiana plumbaginifolia. Lincomycin is an inhibitor of…”
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  8. 8

    Gene Trapping with Firefly Luciferase in Arabidopsis. Tagging of Stress-Responsive Genes by Martha C. Alvarado, Laura M. Zsigmond, Izabella Kovács, Ágnes Cséplö, Koncz, Csaba, László M. Szabados

    Published in Plant physiology (Bethesda) (01-01-2004)
    “…To monitor the expression of T-DNA-tagged plant genes in vivo, a collection of 20,261 transgenic lines of Arabidopsis (Columbia-0) were generated with the…”
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  9. 9

    Modulation of membrane fluidity in living protoplasts of Nicotiana plumbaginifolia by catalytic hydrogenation by VIGH, László, JOÓ, Ferenc, CSÉPLÓ, Ágnes

    Published in European journal of biochemistry (01-01-1985)
    “…A homogeneous water‐soluble Ru catalyst, has been incorporated into mesophyll protoplasts isolated from Nicotiana plumbaginifolia leaves. In the presence of…”
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  10. 10

    Combined effect of water stress and infection with the necrotrophic fungal pathogen Drechslera tritici-repentis on growth and antioxidant activity in wheat by Janda, T, M. CséplÅ, Cs. Németh, Gy. Vida, M. Pogány, G. Szalai, O. Veisz

    Published in Cereal research communications (01-03-2008)
    “…Treatment with various concentrations (0, 5, 15 and 20%) of PEG was used to simulate water stress, followed by inoculation with Drechslera tritici-repentis…”
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  11. 11

    Point mutations in the 23 S rRNA genes of four lincomycin resistant Nicotiana plumbaginifolia mutants could provide new selectable markers for chloroplast transformation by Cseplö, A, Etzold, T, Schell, J, Schreier, P H

    Published in Molecular & general genetics (01-10-1988)
    “…Experiments designed to establish stable chloroplast transformation require selectable marker genes encoded by the chloroplast genome. The antibiotic…”
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