Literature DB >> 26377683

The Double-Reduction Landscape in Tetraploid Potato as Revealed by a High-Density Linkage Map.

Peter M Bourke1, Roeland E Voorrips1, Richard G F Visser1, Chris Maliepaard2.   

Abstract

The creation of genetic linkage maps in polyploid species has been a long-standing problem for which various approaches have been proposed. In the case of autopolyploids, a commonly used simplification is that random bivalents form during meiosis. This leads to relatively straightforward estimation of recombination frequencies using maximum likelihood, from which a genetic map can be derived. However, autopolyploids such as tetraploid potato (Solanum tuberosum L.) may exhibit additional features, such as double reduction, not normally encountered in diploid or allopolyploid species. In this study, we produced a high-density linkage map of tetraploid potato and used it to identify regions of double reduction in a biparental mapping population. The frequency of multivalents required to produce this degree of double reduction was determined through simulation. We also determined the effect that multivalents or preferential pairing between homologous chromosomes has on linkage mapping. Low levels of multivalents or preferential pairing do not adversely affect map construction when highly informative marker types and phases are used. We reveal the double-reduction landscape in tetraploid potato, clearly showing that this phenomenon increases with distance from the centromeres.
Copyright © 2015 by the Genetics Society of America.

Entities:  

Keywords:  double reduction; linkage mapping; multivalents; potato; tetraploid

Mesh:

Substances:

Year:  2015        PMID: 26377683      PMCID: PMC4649655          DOI: 10.1534/genetics.115.181008

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  31 in total

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5.  A graphical representation of genetic and physical maps: the Marey map.

Authors:  A Chakravarti
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6.  Meiosis in allopolyploid Crepis capillaris. II. Autotetraploids.

Authors:  G H Jones; J E Vincent
Journal:  Genome       Date:  1994-06       Impact factor: 2.166

7.  Cytogenetic studies in Solanum, sect. Tuberarium.

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  31 in total

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2.  Genetic Variance Partitioning and Genome-Wide Prediction with Allele Dosage Information in Autotetraploid Potato.

Authors:  Jeffrey B Endelman; Cari A Schmitz Carley; Paul C Bethke; Joseph J Coombs; Mark E Clough; Washington L da Silva; Walter S De Jong; David S Douches; Curtis M Frederick; Kathleen G Haynes; David G Holm; J Creighton Miller; Patricio R Muñoz; Felix M Navarro; Richard G Novy; Jiwan P Palta; Gregory A Porter; Kyle T Rak; Vidyasagar R Sathuvalli; Asunta L Thompson; G Craig Yencho
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3.  Haplotype reconstruction in connected tetraploid F1 populations.

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5.  Computation of the inverse additive relationship matrix for autopolyploid and multiple-ploidy populations.

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6.  The recombination landscape and multiple QTL mapping in a Solanum tuberosum cv. 'Atlantic'-derived F1 population.

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7.  Evidence of Genomic Exchanges between Homeologous Chromosomes in a Cross of Peanut with Newly Synthetized Allotetraploid Hybrids.

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8.  Genome-Wide Approach to Identify Quantitative Trait Loci for Drought Tolerance in Tetraploid Potato (Solanum tuberosum L.).

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