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.
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Nature Portfolio
2021
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oai:doaj.org-article:015cb6ed091e4c3f98c8f7c74392a4a12021-12-02T14:35:38ZThe tepary bean genome provides insight into evolution and domestication under heat stress10.1038/s41467-021-22858-x2041-1723https://doaj.org/article/015cb6ed091e4c3f98c8f7c74392a4a12021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22858-xhttps://doaj.org/toc/2041-1723In 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.Samira Mafi MoghaddamAtena OladzadChushin KohLarissa RamsayJohn P. HartSujan MamidiGenevieve HoopesAvinash SreedasyamAndrew WiersmaDongyan ZhaoJane GrimwoodJohn P. HamiltonJerry JenkinsBrieanne VaillancourtJoshua C. WoodJeremy SchmutzSateesh KagaleTimothy PorchKirstin E. BettC. Robin BuellPhillip E. McCleanNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021) |
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DOAJ |
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Science Q |
spellingShingle |
Science Q 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 |
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. |
format |
article |
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 |
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 Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/015cb6ed091e4c3f98c8f7c74392a4a1 |
work_keys_str_mv |
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