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The asparagus genome sheds light on the origin and evolution of a young Y chromosome

Sex chromosomes evolved from autosomes many times across the eukaryote phylogeny. Several models have been proposed to explain this transition, some involving male and female sterility mutations linked in a region of suppressed recombination between X and Y (or Z/W, U/V) chromosomes. Comparative and...

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Autores principales: Harkess, Alex, Zhou, Jinsong, Xu, Chunyan, Bowers, John E., Van der Hulst, Ron, Ayyampalayam, Saravanaraj, Mercati, Francesco, Riccardi, Paolo, McKain, Michael R., Kakrana, Atul, Tang, Haibao, Ray, Jeremy, Groenendijk, John, Arikit, Siwaret, Mathioni, Sandra M., Nakano, Mayumi, Shan, Hongyan, Telgmann-Rauber, Alexa, Kanno, Akira, Yue, Zhen, Chen, Haixin, Li, Wenqi, Chen, Yanling, Xu, Xiangyang, Zhang, Yueping, Luo, Shaochun, Chen, Helong, Gao, Jianming, Mao, Zichao, Pires, J. Chris, Luo, Meizhong, Kudrna, Dave, Wing, Rod A., Meyers, Blake C., Yi, Kexian, Kong, Hongzhi, Lavrijsen, Pierre, Sunseri, Francesco, Falavigna, Agostino, Ye, Yin, Leebens-Mack, James H., Chen, Guangyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5665984/
https://www.ncbi.nlm.nih.gov/pubmed/29093472
http://dx.doi.org/10.1038/s41467-017-01064-8
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author Harkess, Alex
Zhou, Jinsong
Xu, Chunyan
Bowers, John E.
Van der Hulst, Ron
Ayyampalayam, Saravanaraj
Mercati, Francesco
Riccardi, Paolo
McKain, Michael R.
Kakrana, Atul
Tang, Haibao
Ray, Jeremy
Groenendijk, John
Arikit, Siwaret
Mathioni, Sandra M.
Nakano, Mayumi
Shan, Hongyan
Telgmann-Rauber, Alexa
Kanno, Akira
Yue, Zhen
Chen, Haixin
Li, Wenqi
Chen, Yanling
Xu, Xiangyang
Zhang, Yueping
Luo, Shaochun
Chen, Helong
Gao, Jianming
Mao, Zichao
Pires, J. Chris
Luo, Meizhong
Kudrna, Dave
Wing, Rod A.
Meyers, Blake C.
Yi, Kexian
Kong, Hongzhi
Lavrijsen, Pierre
Sunseri, Francesco
Falavigna, Agostino
Ye, Yin
Leebens-Mack, James H.
Chen, Guangyu
author_facet Harkess, Alex
Zhou, Jinsong
Xu, Chunyan
Bowers, John E.
Van der Hulst, Ron
Ayyampalayam, Saravanaraj
Mercati, Francesco
Riccardi, Paolo
McKain, Michael R.
Kakrana, Atul
Tang, Haibao
Ray, Jeremy
Groenendijk, John
Arikit, Siwaret
Mathioni, Sandra M.
Nakano, Mayumi
Shan, Hongyan
Telgmann-Rauber, Alexa
Kanno, Akira
Yue, Zhen
Chen, Haixin
Li, Wenqi
Chen, Yanling
Xu, Xiangyang
Zhang, Yueping
Luo, Shaochun
Chen, Helong
Gao, Jianming
Mao, Zichao
Pires, J. Chris
Luo, Meizhong
Kudrna, Dave
Wing, Rod A.
Meyers, Blake C.
Yi, Kexian
Kong, Hongzhi
Lavrijsen, Pierre
Sunseri, Francesco
Falavigna, Agostino
Ye, Yin
Leebens-Mack, James H.
Chen, Guangyu
author_sort Harkess, Alex
collection PubMed
description Sex chromosomes evolved from autosomes many times across the eukaryote phylogeny. Several models have been proposed to explain this transition, some involving male and female sterility mutations linked in a region of suppressed recombination between X and Y (or Z/W, U/V) chromosomes. Comparative and experimental analysis of a reference genome assembly for a double haploid YY male garden asparagus (Asparagus officinalis L.) individual implicates separate but linked genes as responsible for sex determination. Dioecy has evolved recently within Asparagus and sex chromosomes are cytogenetically identical with the Y, harboring a megabase segment that is missing from the X. We show that deletion of this entire region results in a male-to-female conversion, whereas loss of a single suppressor of female development drives male-to-hermaphrodite conversion. A single copy anther-specific gene with a male sterile Arabidopsis knockout phenotype is also in the Y-specific region, supporting a two-gene model for sex chromosome evolution.
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spelling pubmed-56659842017-11-07 The asparagus genome sheds light on the origin and evolution of a young Y chromosome Harkess, Alex Zhou, Jinsong Xu, Chunyan Bowers, John E. Van der Hulst, Ron Ayyampalayam, Saravanaraj Mercati, Francesco Riccardi, Paolo McKain, Michael R. Kakrana, Atul Tang, Haibao Ray, Jeremy Groenendijk, John Arikit, Siwaret Mathioni, Sandra M. Nakano, Mayumi Shan, Hongyan Telgmann-Rauber, Alexa Kanno, Akira Yue, Zhen Chen, Haixin Li, Wenqi Chen, Yanling Xu, Xiangyang Zhang, Yueping Luo, Shaochun Chen, Helong Gao, Jianming Mao, Zichao Pires, J. Chris Luo, Meizhong Kudrna, Dave Wing, Rod A. Meyers, Blake C. Yi, Kexian Kong, Hongzhi Lavrijsen, Pierre Sunseri, Francesco Falavigna, Agostino Ye, Yin Leebens-Mack, James H. Chen, Guangyu Nat Commun Article Sex chromosomes evolved from autosomes many times across the eukaryote phylogeny. Several models have been proposed to explain this transition, some involving male and female sterility mutations linked in a region of suppressed recombination between X and Y (or Z/W, U/V) chromosomes. Comparative and experimental analysis of a reference genome assembly for a double haploid YY male garden asparagus (Asparagus officinalis L.) individual implicates separate but linked genes as responsible for sex determination. Dioecy has evolved recently within Asparagus and sex chromosomes are cytogenetically identical with the Y, harboring a megabase segment that is missing from the X. We show that deletion of this entire region results in a male-to-female conversion, whereas loss of a single suppressor of female development drives male-to-hermaphrodite conversion. A single copy anther-specific gene with a male sterile Arabidopsis knockout phenotype is also in the Y-specific region, supporting a two-gene model for sex chromosome evolution. Nature Publishing Group UK 2017-11-02 /pmc/articles/PMC5665984/ /pubmed/29093472 http://dx.doi.org/10.1038/s41467-017-01064-8 Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Harkess, Alex
Zhou, Jinsong
Xu, Chunyan
Bowers, John E.
Van der Hulst, Ron
Ayyampalayam, Saravanaraj
Mercati, Francesco
Riccardi, Paolo
McKain, Michael R.
Kakrana, Atul
Tang, Haibao
Ray, Jeremy
Groenendijk, John
Arikit, Siwaret
Mathioni, Sandra M.
Nakano, Mayumi
Shan, Hongyan
Telgmann-Rauber, Alexa
Kanno, Akira
Yue, Zhen
Chen, Haixin
Li, Wenqi
Chen, Yanling
Xu, Xiangyang
Zhang, Yueping
Luo, Shaochun
Chen, Helong
Gao, Jianming
Mao, Zichao
Pires, J. Chris
Luo, Meizhong
Kudrna, Dave
Wing, Rod A.
Meyers, Blake C.
Yi, Kexian
Kong, Hongzhi
Lavrijsen, Pierre
Sunseri, Francesco
Falavigna, Agostino
Ye, Yin
Leebens-Mack, James H.
Chen, Guangyu
The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title_full The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title_fullStr The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title_full_unstemmed The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title_short The asparagus genome sheds light on the origin and evolution of a young Y chromosome
title_sort asparagus genome sheds light on the origin and evolution of a young y chromosome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5665984/
https://www.ncbi.nlm.nih.gov/pubmed/29093472
http://dx.doi.org/10.1038/s41467-017-01064-8
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