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Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis.

Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Research Abstract Details 

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  • Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Abstract Text:

    k-b limK-B Lim,m s ramannaM S Ramanna,e jacobsenE Jacobsen,j m van tuylJ M van Tuyl,

    An allotriploid (ALA, 2n=3 x=36) BC(1) plant was obtained by backcrossing a diploid F(1) interspecific hybrid (LA, 2n=2 x=24), derived from a Lilium longiflorum (L genome) and an Asiatic hybrid (A genome), to the latter parent. This allotriploid was backcrossed to a diploid Asiatic hybrid (2n=2 x=24) and to an allotetraploid (LLAA, 2n=4 x=48) LA hybrid. A total of 25 plants of these crosses were examined for ploidy level, and 12 individuals were analyzed for their genome constitution through genomic in situ hybridization (GISH). In most cases the progenies from the triploid-diploid (3 x-2 x) crosses consisted of aneuploids. Further more, there was evidence for the formation of near-haploid (x=12+2) to triploid (3 x=36) gametes in the allotriploid BC(1) plant. The progenies of triploid-tetraploid (3 x-4 x) cross also consisted of mostly aneuploids but in this case the triploid female parent had contributed predominantly near-triploid (2n) gametes for the origin of BC(2) progenies. The different ploidy levels observed between 3 x-2 x and 3 x-4 x crosses are possibly caused by preferential fertilization or survival resulting in a different ratio of chromosome numbers between the embryo and endosperm. Though Lilium has a tetrasporic, eight-nucleate type of embryo sac formation (Fritillaria type), the observed difference between the progeny types in 3 x-2 x and 3 x-4 x crosses is comparable to that of observed in monosporic eight nucleate types (Polygonum type) that predominate in most genera of Angiosperms. An important feature of the genome constitution of the progenies was that the homoeologous recombinant chromosomes were transmitted intact from BC(1) to BC(2) progenies in variable numbers. In addition, there was evidence for the occurrence of new homoeologous recombinations in the triploid BC(1). Of the two euploid BC(2) plants one had originated through the parthenogenetic development of a 2n egg and the other had originated through indeterminate meiotic restitution (IMR).

    Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Publishing Authors By Initials

    kb limKB Lim,ms ramannaMS Ramanna,e jacobsenE Jacobsen,jm van tuylJM van Tuyl,

    For similar genetic processes: recombination, genetic research abstracts see: genetic processes: recombination, genetic research

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    Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: TAG. Theoretical and applied genetics. Theoretisch

    VOLUME: 106

    Page Numbers: 568-74

    Journal Abbreviation:

    ISSN: 0040-5752

    DAY: 28

    MONTH: 08

    YEAR: 2002

    Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 145600

    Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Keywords Mesh Terms:

    KEYWORDS: Recombination, Genetic

    MESH TERMS: genetics

    Chemical & Substance for Abstract: Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis. Information

    Substance Name: DNA, Plant

    Registry Number: 0

    Grant and Affiliation Information for Evaluation of BC2 progenies derived from 3x-2x and 3x-4x crosses of Lilium hybrids: a GISH analysis.

    AFFILIATION: National Institute of Agricultural Biotechnology, RDA, Suwon, Korea.

    Country: Germany

    Germany Research PublicationGermany Research Publication

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    MEDLINETA: Theor Appl Genet

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