Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes

Abstract Background After cereals, root and tuber crops are the main source of starch in the human diet. Starch biosynthesis was certainly a significant target for selection during the domestication of these crops. But domestication of these root and tubers crops is also associated with gigantism of...

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Published in:BMC Genomics
Main Authors: Roland Akakpo, Nora Scarcelli, Hana Chaïr, Alexandre Dansi, Gustave Djedatin, Anne-Céline Thuillet, Bénédicte Rhoné, Olivier François, Karine Alix, Yves Vigouroux
Format: Article
Language:English
Published: BMC 2017-10-01
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Online Access:http://link.springer.com/article/10.1186/s12864-017-4143-2
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author Roland Akakpo
Nora Scarcelli
Hana Chaïr
Alexandre Dansi
Gustave Djedatin
Anne-Céline Thuillet
Bénédicte Rhoné
Olivier François
Karine Alix
Yves Vigouroux
author_facet Roland Akakpo
Nora Scarcelli
Hana Chaïr
Alexandre Dansi
Gustave Djedatin
Anne-Céline Thuillet
Bénédicte Rhoné
Olivier François
Karine Alix
Yves Vigouroux
author_sort Roland Akakpo
collection DOAJ
container_title BMC Genomics
description Abstract Background After cereals, root and tuber crops are the main source of starch in the human diet. Starch biosynthesis was certainly a significant target for selection during the domestication of these crops. But domestication of these root and tubers crops is also associated with gigantism of storage organs and changes of habitat. Results We studied here, the molecular basis of domestication in African yam, Dioscorea rotundata. The genomic diversity in the cultivated species is roughly 30% less important than its wild relatives. Two percent of all the genes studied showed evidences of selection. Two genes associated with the earliest stages of starch biosynthesis and storage, the sucrose synthase 4 and the sucrose-phosphate synthase 1 showed evidence of selection. An adventitious root development gene, a SCARECROW-LIKE gene was also selected during yam domestication. Significant selection for genes associated with photosynthesis and phototropism were associated with wild to cultivated change of habitat. If the wild species grow as vines in the shade of their tree tutors, cultivated yam grows in full light in open fields. Conclusions Major rewiring of aerial development and adaptation for efficient photosynthesis in full light characterized yam domestication.
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spelling doaj-art-ab052d55e667412d95f55e4fceebd67f2025-08-19T20:15:16ZengBMCBMC Genomics1471-21642017-10-011811910.1186/s12864-017-4143-2Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genesRoland Akakpo0Nora Scarcelli1Hana Chaïr2Alexandre Dansi3Gustave Djedatin4Anne-Céline Thuillet5Bénédicte Rhoné6Olivier François7Karine Alix8Yves Vigouroux9Institut de Recherche pour le Développement, Université de Montpellier, Unité Mixte de Recherche Diversité Adaptation et Développement des Plantes (UMR DIADE)Institut de Recherche pour le Développement, Université de Montpellier, Unité Mixte de Recherche Diversité Adaptation et Développement des Plantes (UMR DIADE)Centre International de la Recherche Agronomique pour le Développement, UMR AGAPFaculté des Sciences et Techniques de Dassa, Laboratoire de Biotechnologie, Ressources Génétiques et Amélioration des Espèces Animales et Végétales (BIORAVE), Université d’AbomeyFaculté des Sciences et Techniques de Dassa, Laboratoire de Biotechnologie, Ressources Génétiques et Amélioration des Espèces Animales et Végétales (BIORAVE), Université d’AbomeyInstitut de Recherche pour le Développement, Université de Montpellier, Unité Mixte de Recherche Diversité Adaptation et Développement des Plantes (UMR DIADE)Institut de Recherche pour le Développement, Université de Montpellier, Unité Mixte de Recherche Diversité Adaptation et Développement des Plantes (UMR DIADE)Université de GrenobleUnité Mixte de Recherche Génétique Quantitative et Evolutive – Le Moulon, INRA – Univ. Paris-Sud – CNRS – AgroParisTech, Université Paris-SaclayInstitut de Recherche pour le Développement, Université de Montpellier, Unité Mixte de Recherche Diversité Adaptation et Développement des Plantes (UMR DIADE)Abstract Background After cereals, root and tuber crops are the main source of starch in the human diet. Starch biosynthesis was certainly a significant target for selection during the domestication of these crops. But domestication of these root and tubers crops is also associated with gigantism of storage organs and changes of habitat. Results We studied here, the molecular basis of domestication in African yam, Dioscorea rotundata. The genomic diversity in the cultivated species is roughly 30% less important than its wild relatives. Two percent of all the genes studied showed evidences of selection. Two genes associated with the earliest stages of starch biosynthesis and storage, the sucrose synthase 4 and the sucrose-phosphate synthase 1 showed evidence of selection. An adventitious root development gene, a SCARECROW-LIKE gene was also selected during yam domestication. Significant selection for genes associated with photosynthesis and phototropism were associated with wild to cultivated change of habitat. If the wild species grow as vines in the shade of their tree tutors, cultivated yam grows in full light in open fields. Conclusions Major rewiring of aerial development and adaptation for efficient photosynthesis in full light characterized yam domestication.http://link.springer.com/article/10.1186/s12864-017-4143-2DomesticationDioscorea spp.AdaptationPopulation genomics, selectionRoot developmentStarch biosynthesis
spellingShingle Roland Akakpo
Nora Scarcelli
Hana Chaïr
Alexandre Dansi
Gustave Djedatin
Anne-Céline Thuillet
Bénédicte Rhoné
Olivier François
Karine Alix
Yves Vigouroux
Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
Domestication
Dioscorea spp.
Adaptation
Population genomics, selection
Root development
Starch biosynthesis
title Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
title_full Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
title_fullStr Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
title_full_unstemmed Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
title_short Molecular basis of African yam domestication: analyses of selection point to root development, starch biosynthesis, and photosynthesis related genes
title_sort molecular basis of african yam domestication analyses of selection point to root development starch biosynthesis and photosynthesis related genes
topic Domestication
Dioscorea spp.
Adaptation
Population genomics, selection
Root development
Starch biosynthesis
url http://link.springer.com/article/10.1186/s12864-017-4143-2
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