Search Results - "Peil, A."

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    Overexpression of BpMADS4 from silver birch (Betula pendula Roth.) induces early-flowering in apple (Malus x domestica Borkh.) by Flachowsky, H, Peil, A, Sopanen, T, Elo, A, Hanke, V

    Published in Plant breeding (01-04-2007)
    “…To shorten the juvenile stage of apple (Malus x domestica Borkh.) the BpMADS4 gene from silver birch (Betula pendula Roth.) was constitutively overexpressed in…”
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    Journal Article
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    A review on transgenic approaches to accelerate breeding of woody plants by Flachowsky, H., Hanke, M.-V., Peil, A., Strauss, S. H., Fladung, M.

    Published in Plant breeding (01-06-2009)
    “…The long juvenile period of trees delays the breeding of new varieties. Flowering begins within 5–10 years in most cultivated forest trees under intensive…”
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    Inoculation of Malus genotypes with a set of Erwinia amylovora strains indicates a gene‐for‐gene relationship between the effector gene eop1 and both Malus floribunda 821 and Malus ‘Evereste’ by Wöhner, T.W., Richter, K., Sundin, G. W., Zhao, Y., Stockwell, V. O., Sellmann, J., Flachowsky, H., Hanke, M.‐V., Peil, A.

    Published in Plant pathology (01-05-2018)
    “…The Gram‐negative bacterium Erwinia amylovora, causal agent of fire blight disease in pome fruit trees, encodes a type three secretion system (T3SS) that…”
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    Strong evidence for a fire blight resistance gene of Malus robusta located on linkage group 3 by Peil, A, Garcia-L.ibreros, T, Richter, K, Trognitz, F.C, Trognitz, B, Hanke, M.-V, Flachowsky, H

    Published in Plant breeding (01-10-2007)
    “…Fire blight (FB), caused by the Gram-negative bacterium Erwinia amylovora is a dangerous disease on pome fruit, including apple. The FB-susceptible cultivar…”
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    QTL mapping of fire blight resistance in Malus ×robusta 5 after inoculation with different strains of Erwinia amylovora by Wöhner, Th. W, Flachowsky, H, Richter, K, Garcia-Libreros, T, Trognitz, F, Hanke, M.-V, Peil, A

    Published in Molecular breeding (01-06-2014)
    “…Fire blight caused by Erwinia amylovora is one of the most disastrous diseases in apple production. Whereas most apple cultivars are susceptible to fire…”
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    Inoculation of Malus x Robusta 5 progeny with a strain breaking resistance to fire blight reveals a minor QTL on LG5 by Peil, A, Flachowsky, H, Hanke, M.V, Richter, K, Rode, J

    Published in Acta horticulturae (2011)
    “…Fire blight, caused by the bacterium Erwinia amylovora, is one of the most dangerous diseases in pome fruit growing. Two major aims in apple breeding are the…”
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    Mapping of the apple powdery mildew resistance gene Pl1 and its genetic association with an NBS-LRR candidate resistance gene by Dunemann, F, Peil, A, Urbanietz, A, Garcia-L.ibreros, T

    Published in Plant breeding (01-10-2007)
    “…Molecular markers for the major apple powdery mildew resistance gene Pl1 were identified and are presently used in marker-assisted selection in apple breeding…”
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    News of Malus × robusta 5 candidate resistance gene by Fahrentrapp, J, Broggini, G. A. L, Gessler, C, Kellerhals, M, Peil, A, Malnoy, M, Richter, K

    Published in Acta horticulturae (20-08-2014)
    “…Malus × robusta 5 is a crab apple highly resistant against the disease fire blight attributed to a potential resistance gene at the top of linkage group three…”
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    Comparative mapping of fire blight resistance in Malus by Peil, A, Wohner, T, Hanke, M. V, Flachowsky, H, Richter, K, Wensing, A, Emeriewen, O, Malnoy, M, LeRoux, P. M, Patocchi, A, Kilian, A

    Published in Acta horticulturae (01-01-2014)
    “…Fire blight, caused by enterobacterium Erwinia amylovora, is the most important bacterial disease affecting pome fruit. It can cause devastating economic…”
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    Sex-linked AFLP markers indicate a pseudoautosomal region in hemp (Cannabis sativa L.) by PEIL, A, FLACHOWSKY, H, SCHUMANN, E, WEBER, W. E

    Published in Theoretical and applied genetics (01-06-2003)
    “…In dioecious plants of hemp ( Cannabis sativa L.), males are regarded as heterogametic XY and females as homogametic XX, although it is difficult to…”
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    Fine mapping of the fire blight resistance locus in Malus × robusta 5 on linkage group 3 by Fahrentrapp, J, Broggini, G.A.L, Gessler, C, Kellerhals, M, Peil, A, Malnoy, M, Richter, K

    Published in Acta horticulturae (28-02-2013)
    “…Fire blight is one of the most damaging diseases in the majority of apple (Malus × domestica) producing countries worldwide. The resistance to Erwinia…”
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    Functional characterization of two antagonistic acting flowering genes in apple Malus × domestica Borkh by Flachowsky, H, Peil, A, Hanke, M.V, Tränkner, C, Szankowski, I, Lehmann, S

    Published in Acta horticulturae (31-03-2012)
    “…Apple Malus × domestica Borkh. has a long period of juvenility during which plants are unable to produce flowers and fruits. Flowering is only possible on…”
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    Selection for fire blight resistance of apple genotypes originating from European genetic resources and breeding programs by Sobiczewski, P, Mikicinski, A, Lewandowski, M, Zurawicz, E, Peil, A, Richter, K, Kellerhals, M

    Published in Acta horticulturae (01-01-2011)
    “…The study was conducted at two locations (RIPF, JKI) in 2007-2010 on apple genotypes originating from Belgium, Hungary, Germany, Poland, Sweden and…”
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    Development of a multiallelic SCAR marker for the scab resistance gene Vr1/Vh4/Vx from R12740-7A apple and its utility for molecular breeding by Boudichevskaia, A, Flachowsky, H, Peil, A, Fischer, C, Dunemann, F

    Published in Tree genetics & genomes (01-10-2006)
    “…A major scab resistance gene initially called Vr1 was identified in the apple cultivar "Regia" derived from the Malus scab resistance source R12740-7A (Russian…”
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    Fine mapping of fire blight resistance locus in Malus x robusta 5 on linkage group 3 by Fahrentrapp, J, Broggini, G.A.L, Gessler, C, Peil, A, Kellerhals, M, Malnoy, M, Richter, K

    Published in Acta horticulturae (2011)
    “…Fire blight is one of the most damaging diseases in the majority of apple (Malus x domestica) producing countries worldwide. The region of the quantitative…”
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    Application of AFLP for the detection of sex-specific markers in hemp by Flachowsky, H., Schumann, E., Weber, W. E., Peil, A.

    Published in Plant breeding (01-08-2001)
    “…Two dioecious hemp accessions (Can18 and Can17) were tested by bulked segregant analysis for polymorphisms between male and female bulks with amplified…”
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