The tepary bean genome provides insight into evolution and domestication under heat stress

In contrast to common bean, tepary bean is highly adapted to heat and drought. Here, the authors assemble the genomes of tepary bean landrace and wild accession, discuss the possible mechanism for resilience to heat stress, and reveal a reduced disease resistance gene repertoire.

Bibliographic Details
Main Authors: Samira Mafi Moghaddam, Atena Oladzad, Chushin Koh, Larissa Ramsay, John P. Hart, Sujan Mamidi, Genevieve Hoopes, Avinash Sreedasyam, Andrew Wiersma, Dongyan Zhao, Jane Grimwood, John P. Hamilton, Jerry Jenkins, Brieanne Vaillancourt, Joshua C. Wood, Jeremy Schmutz, Sateesh Kagale, Timothy Porch, Kirstin E. Bett, C. Robin Buell, Phillip E. McClean
Format: Article
Language:English
Published: Nature Publishing Group 2021-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-22858-x
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spelling doaj-015cb6ed091e4c3f98c8f7c74392a4a12021-05-11T14:48:25ZengNature Publishing GroupNature Communications2041-17232021-05-0112111410.1038/s41467-021-22858-xThe tepary bean genome provides insight into evolution and domestication under heat stressSamira Mafi Moghaddam0Atena Oladzad1Chushin Koh2Larissa Ramsay3John P. Hart4Sujan Mamidi5Genevieve Hoopes6Avinash Sreedasyam7Andrew Wiersma8Dongyan Zhao9Jane Grimwood10John P. Hamilton11Jerry Jenkins12Brieanne Vaillancourt13Joshua C. Wood14Jeremy Schmutz15Sateesh Kagale16Timothy Porch17Kirstin E. Bett18C. Robin Buell19Phillip E. McClean20Department of Plant Biology, Michigan State UniversityDepartment of Plant Sciences and Genomics and Bioinformatics Program, North Dakota State UniversityDepartment of Plant Sciences, University of SaskatchewanDepartment of Plant Sciences, University of SaskatchewanUSDA-ARS-Tropical Agriculture Research StationHudsonAlpha Institute for BiotechnologyDepartment of Plant Biology, Michigan State UniversityHudsonAlpha Institute for BiotechnologyDepartment of Plant Biology, Michigan State UniversityDepartment of Plant Biology, Michigan State UniversityHudsonAlpha Institute for BiotechnologyDepartment of Plant Biology, Michigan State UniversityHudsonAlpha Institute for BiotechnologyDepartment of Plant Biology, Michigan State UniversityDepartment of Plant Biology, Michigan State UniversityHudsonAlpha Institute for BiotechnologyNational Research Council CanadaUSDA-ARS-Tropical Agriculture Research StationDepartment of Plant Sciences, University of SaskatchewanDepartment of Plant Biology, Michigan State UniversityDepartment of Plant Sciences and Genomics and Bioinformatics Program, North Dakota State UniversityIn contrast to common bean, tepary bean is highly adapted to heat and drought. Here, the authors assemble the genomes of tepary bean landrace and wild accession, discuss the possible mechanism for resilience to heat stress, and reveal a reduced disease resistance gene repertoire.https://doi.org/10.1038/s41467-021-22858-x
collection DOAJ
language English
format Article
sources DOAJ
author Samira Mafi Moghaddam
Atena Oladzad
Chushin Koh
Larissa Ramsay
John P. Hart
Sujan Mamidi
Genevieve Hoopes
Avinash Sreedasyam
Andrew Wiersma
Dongyan Zhao
Jane Grimwood
John P. Hamilton
Jerry Jenkins
Brieanne Vaillancourt
Joshua C. Wood
Jeremy Schmutz
Sateesh Kagale
Timothy Porch
Kirstin E. Bett
C. Robin Buell
Phillip E. McClean
spellingShingle Samira Mafi Moghaddam
Atena Oladzad
Chushin Koh
Larissa Ramsay
John P. Hart
Sujan Mamidi
Genevieve Hoopes
Avinash Sreedasyam
Andrew Wiersma
Dongyan Zhao
Jane Grimwood
John P. Hamilton
Jerry Jenkins
Brieanne Vaillancourt
Joshua C. Wood
Jeremy Schmutz
Sateesh Kagale
Timothy Porch
Kirstin E. Bett
C. Robin Buell
Phillip E. McClean
The tepary bean genome provides insight into evolution and domestication under heat stress
Nature Communications
author_facet Samira Mafi Moghaddam
Atena Oladzad
Chushin Koh
Larissa Ramsay
John P. Hart
Sujan Mamidi
Genevieve Hoopes
Avinash Sreedasyam
Andrew Wiersma
Dongyan Zhao
Jane Grimwood
John P. Hamilton
Jerry Jenkins
Brieanne Vaillancourt
Joshua C. Wood
Jeremy Schmutz
Sateesh Kagale
Timothy Porch
Kirstin E. Bett
C. Robin Buell
Phillip E. McClean
author_sort Samira Mafi Moghaddam
title The tepary bean genome provides insight into evolution and domestication under heat stress
title_short The tepary bean genome provides insight into evolution and domestication under heat stress
title_full The tepary bean genome provides insight into evolution and domestication under heat stress
title_fullStr The tepary bean genome provides insight into evolution and domestication under heat stress
title_full_unstemmed The tepary bean genome provides insight into evolution and domestication under heat stress
title_sort tepary bean genome provides insight into evolution and domestication under heat stress
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2021-05-01
description In contrast to common bean, tepary bean is highly adapted to heat and drought. Here, the authors assemble the genomes of tepary bean landrace and wild accession, discuss the possible mechanism for resilience to heat stress, and reveal a reduced disease resistance gene repertoire.
url https://doi.org/10.1038/s41467-021-22858-x
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