Literature DB >> 23479086

A radiation hybrid map of chromosome 1D reveals synteny conservation at a wheat speciation locus.

Monika K Michalak de Jimenez1, Filippo M Bassi, Farhad Ghavami, Kristin Simons, Rissa Dizon, Raed I Seetan, Loai M Alnemer, Anne M Denton, Münevver Doğramacı, Hana Šimková, Jaroslav Doležel, Kiran Seth, Ming-Cheng Luo, Jan Dvorak, Yong Qiang Gu, Shahryar F Kianian.   

Abstract

The species cytoplasm specific (scs) genes affect nuclear-cytoplasmic interactions in interspecific hybrids. A radiation hybrid (RH) mapping population of 188 individuals was employed to refine the location of the scs (ae) locus on Triticum aestivum chromosome 1D. "Wheat Zapper," a comparative genomics tool, was used to predict synteny between wheat chromosome 1D, Oryza sativa, Brachypodium distachyon, and Sorghum bicolor. A total of 57 markers were developed based on synteny or literature and genotyped to produce a RH map spanning 205.2 cR. A test-cross methodology was devised for phenotyping of RH progenies, and through forward genetic, the scs (ae) locus was pinpointed to a 1.1 Mb-segment containing eight genes. Further, the high resolution provided by RH mapping, combined with chromosome-wise synteny analysis, located the ancestral point of fusion between the telomeric and centromeric repeats of two paleochromosomes that originated chromosome 1D. Also, it indicated that the centromere of this chromosome is likely the result of a neocentromerization event, rather than the conservation of an ancestral centromere as previously believed. Interestingly, location of scs locus in the vicinity of paleofusion is not associated with the expected disruption of synteny, but rather with a good degree of conservation across grass species. Indeed, these observations advocate the evolutionary importance of this locus as suggested by "Maan's scs hypothesis."

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Year:  2013        PMID: 23479086     DOI: 10.1007/s10142-013-0318-3

Source DB:  PubMed          Journal:  Funct Integr Genomics        ISSN: 1438-793X            Impact factor:   3.410


  63 in total

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Journal:  Theor Appl Genet       Date:  2013-05-29       Impact factor: 5.699

2.  Mapping nonrecombining regions in barley using multicolor FISH.

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3.  Physical mapping of chromosome 4J of Thinopyrum bessarabicum using gamma radiation-induced aberrations.

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4.  Chromosomal genomics facilitates fine mapping of a Russian wheat aphid resistance gene.

Authors:  Helena Staňková; Miroslav Valárik; Nora L V Lapitan; Paul J Berkman; Jacqueline Batley; David Edwards; Ming-Cheng Luo; Zuzana Tulpová; Marie Kubaláková; Nils Stein; Jaroslav Doležel; Hana Šimková
Journal:  Theor Appl Genet       Date:  2015-04-11       Impact factor: 5.699

5.  Wheat Zapper: a flexible online tool for colinearity studies in grass genomes.

Authors:  Loai M Alnemer; Raed I Seetan; Filippo M Bassi; Charith Chitraranjan; Adam Helsene; Paul Loree; Steve Bou Goshn; Yong Q Gu; Ming-Cheng Luo; M Javed Iqbal; Gerard R Lazo; Anne M Denton; Shahryar F Kianian
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6.  Fast-forward genetics by radiation hybrids to saturate the locus regulating nuclear-cytoplasmic compatibility in Triticum.

Authors:  Filippo M Bassi; Farhad Ghavami; Matthew J Hayden; Yi Wang; Kerrie L Forrest; Stephan Kong; Rhoderissa Dizon; Monika K Michalak de Jimenez; Steven W Meinhardt; Mohamed Mergoum; Yong Q Gu; Shahryar F Kianian
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Review 9.  Genetic and Molecular Genetic Basis of Nuclear-Plastid Incompatibilities.

Authors:  Vera S Bogdanova
Journal:  Plants (Basel)       Date:  2019-12-23

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  10 in total

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