Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping

The hexaploid sweetpotato (Ipomoea batatas (L.) Lam., 2n = 6x = 90) is an important staple food crop worldwide and plays a vital role in alleviating famine in developing countries. Due to its high ploidy level, genetic studies in sweetpotato lag behind major diploid crops significantly. We built an...

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Main Authors: Marcelo Mollinari, Bode A. Olukolu, Guilherme da S. Pereira, Awais Khan, Dorcus Gemenet, G. Craig Yencho, Zhao-Bang Zeng
Format: Article
Language:English
Published: Oxford University Press 2020-01-01
Series:G3: Genes, Genomes, Genetics
Subjects:
Online Access:http://g3journal.org/lookup/doi/10.1534/g3.119.400620
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spelling doaj-3aa0d908741842b195687753b4c6c4f62021-07-02T08:33:28ZengOxford University PressG3: Genes, Genomes, Genetics2160-18362020-01-0110128129210.1534/g3.119.40062025Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus MappingMarcelo MollinariBode A. OlukoluGuilherme da S. PereiraAwais KhanDorcus GemenetG. Craig YenchoZhao-Bang ZengThe hexaploid sweetpotato (Ipomoea batatas (L.) Lam., 2n = 6x = 90) is an important staple food crop worldwide and plays a vital role in alleviating famine in developing countries. Due to its high ploidy level, genetic studies in sweetpotato lag behind major diploid crops significantly. We built an ultra-dense multilocus integrated genetic map and characterized the inheritance system in a sweetpotato full-sib family using our newly developed software, MAPpoly. The resulting genetic map revealed 96.5% collinearity between I. batatas and its diploid relative I. trifida. We computed the genotypic probabilities across the whole genome for all individuals in the mapping population and inferred their complete hexaploid haplotypes. We provide evidence that most of the meiotic configurations (73.3%) were resolved in bivalents, although a small portion of multivalent signatures (15.7%), among other inconclusive configurations (11.0%), were also observed. Except for low levels of preferential pairing in linkage group 2, we observed a hexasomic inheritance mechanism in all linkage groups. We propose that the hexasomic-bivalent inheritance promotes stability to the allelic transmission in sweetpotato.http://g3journal.org/lookup/doi/10.1534/g3.119.400620polyploidygenetic linkagehexasomic inheritancehaplotypingpreferential pairingmultivalent
collection DOAJ
language English
format Article
sources DOAJ
author Marcelo Mollinari
Bode A. Olukolu
Guilherme da S. Pereira
Awais Khan
Dorcus Gemenet
G. Craig Yencho
Zhao-Bang Zeng
spellingShingle Marcelo Mollinari
Bode A. Olukolu
Guilherme da S. Pereira
Awais Khan
Dorcus Gemenet
G. Craig Yencho
Zhao-Bang Zeng
Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
G3: Genes, Genomes, Genetics
polyploidy
genetic linkage
hexasomic inheritance
haplotyping
preferential pairing
multivalent
author_facet Marcelo Mollinari
Bode A. Olukolu
Guilherme da S. Pereira
Awais Khan
Dorcus Gemenet
G. Craig Yencho
Zhao-Bang Zeng
author_sort Marcelo Mollinari
title Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
title_short Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
title_full Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
title_fullStr Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
title_full_unstemmed Unraveling the Hexaploid Sweetpotato Inheritance Using Ultra-Dense Multilocus Mapping
title_sort unraveling the hexaploid sweetpotato inheritance using ultra-dense multilocus mapping
publisher Oxford University Press
series G3: Genes, Genomes, Genetics
issn 2160-1836
publishDate 2020-01-01
description The hexaploid sweetpotato (Ipomoea batatas (L.) Lam., 2n = 6x = 90) is an important staple food crop worldwide and plays a vital role in alleviating famine in developing countries. Due to its high ploidy level, genetic studies in sweetpotato lag behind major diploid crops significantly. We built an ultra-dense multilocus integrated genetic map and characterized the inheritance system in a sweetpotato full-sib family using our newly developed software, MAPpoly. The resulting genetic map revealed 96.5% collinearity between I. batatas and its diploid relative I. trifida. We computed the genotypic probabilities across the whole genome for all individuals in the mapping population and inferred their complete hexaploid haplotypes. We provide evidence that most of the meiotic configurations (73.3%) were resolved in bivalents, although a small portion of multivalent signatures (15.7%), among other inconclusive configurations (11.0%), were also observed. Except for low levels of preferential pairing in linkage group 2, we observed a hexasomic inheritance mechanism in all linkage groups. We propose that the hexasomic-bivalent inheritance promotes stability to the allelic transmission in sweetpotato.
topic polyploidy
genetic linkage
hexasomic inheritance
haplotyping
preferential pairing
multivalent
url http://g3journal.org/lookup/doi/10.1534/g3.119.400620
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