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Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut

Like many important crops, peanut is a polyploid that underwent polyploidization, evolution, and domestication. The wild allotetraploid peanut species Arachis monticola (A. monticola) is an important and unique link from the wild diploid species to cultivated tetraploid species in the Arachis lineag...

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Autores principales: Yin, Dongmei, Ji, Changmian, Song, Qingxin, Zhang, Wanke, Zhang, Xingguo, Zhao, Kunkun, Chen, Charles Y., Wang, Chuantang, He, Guohao, Liang, Zhe, Ma, Xingli, Li, Zhongfeng, Tang, Yueyi, Wang, Yuejun, Li, Ke, Ning, Longlong, Zhang, Hui, Zhao, Kai, Li, Xuming, Yu, Haiyan, Lei, Yan, Wang, Mingcheng, Ma, Liming, Zheng, Hongkun, Zhang, Yijing, Zhang, Jinsong, Hu, Wei, Chen, Z. Jeffrey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7029647/
https://www.ncbi.nlm.nih.gov/pubmed/32099754
http://dx.doi.org/10.1002/advs.201901672
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author Yin, Dongmei
Ji, Changmian
Song, Qingxin
Zhang, Wanke
Zhang, Xingguo
Zhao, Kunkun
Chen, Charles Y.
Wang, Chuantang
He, Guohao
Liang, Zhe
Ma, Xingli
Li, Zhongfeng
Tang, Yueyi
Wang, Yuejun
Li, Ke
Ning, Longlong
Zhang, Hui
Zhao, Kai
Li, Xuming
Yu, Haiyan
Lei, Yan
Wang, Mingcheng
Ma, Liming
Zheng, Hongkun
Zhang, Yijing
Zhang, Jinsong
Hu, Wei
Chen, Z. Jeffrey
author_facet Yin, Dongmei
Ji, Changmian
Song, Qingxin
Zhang, Wanke
Zhang, Xingguo
Zhao, Kunkun
Chen, Charles Y.
Wang, Chuantang
He, Guohao
Liang, Zhe
Ma, Xingli
Li, Zhongfeng
Tang, Yueyi
Wang, Yuejun
Li, Ke
Ning, Longlong
Zhang, Hui
Zhao, Kai
Li, Xuming
Yu, Haiyan
Lei, Yan
Wang, Mingcheng
Ma, Liming
Zheng, Hongkun
Zhang, Yijing
Zhang, Jinsong
Hu, Wei
Chen, Z. Jeffrey
author_sort Yin, Dongmei
collection PubMed
description Like many important crops, peanut is a polyploid that underwent polyploidization, evolution, and domestication. The wild allotetraploid peanut species Arachis monticola (A. monticola) is an important and unique link from the wild diploid species to cultivated tetraploid species in the Arachis lineage. However, little is known about A. monticola and its role in the evolution and domestication of this important crop. A fully annotated sequence of ≈2.6 Gb A. monticola genome and comparative genomics of the Arachis species is reported. Genomic reconstruction of 17 wild diploids from AA, BB, EE, KK, and CC groups and 30 tetraploids demonstrates a monophyletic origin of A and B subgenomes in allotetraploid peanuts. The wild and cultivated tetraploids undergo asymmetric subgenome evolution, including homoeologous exchanges, homoeolog expression bias, and structural variation (SV), leading to subgenome functional divergence during peanut domestication. Significantly, SV‐associated homoeologs tend to show expression bias and correlation with pod size increase from diploids to wild and cultivated tetraploids. Moreover, genomic analysis of disease resistance genes shows the unique alleles present in the wild peanut can be introduced into breeding programs to improve some resistance traits in the cultivated peanuts. These genomic resources are valuable for studying polyploid genome evolution, domestication, and improvement of peanut production and resistance.
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spelling pubmed-70296472020-02-25 Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut Yin, Dongmei Ji, Changmian Song, Qingxin Zhang, Wanke Zhang, Xingguo Zhao, Kunkun Chen, Charles Y. Wang, Chuantang He, Guohao Liang, Zhe Ma, Xingli Li, Zhongfeng Tang, Yueyi Wang, Yuejun Li, Ke Ning, Longlong Zhang, Hui Zhao, Kai Li, Xuming Yu, Haiyan Lei, Yan Wang, Mingcheng Ma, Liming Zheng, Hongkun Zhang, Yijing Zhang, Jinsong Hu, Wei Chen, Z. Jeffrey Adv Sci (Weinh) Full Papers Like many important crops, peanut is a polyploid that underwent polyploidization, evolution, and domestication. The wild allotetraploid peanut species Arachis monticola (A. monticola) is an important and unique link from the wild diploid species to cultivated tetraploid species in the Arachis lineage. However, little is known about A. monticola and its role in the evolution and domestication of this important crop. A fully annotated sequence of ≈2.6 Gb A. monticola genome and comparative genomics of the Arachis species is reported. Genomic reconstruction of 17 wild diploids from AA, BB, EE, KK, and CC groups and 30 tetraploids demonstrates a monophyletic origin of A and B subgenomes in allotetraploid peanuts. The wild and cultivated tetraploids undergo asymmetric subgenome evolution, including homoeologous exchanges, homoeolog expression bias, and structural variation (SV), leading to subgenome functional divergence during peanut domestication. Significantly, SV‐associated homoeologs tend to show expression bias and correlation with pod size increase from diploids to wild and cultivated tetraploids. Moreover, genomic analysis of disease resistance genes shows the unique alleles present in the wild peanut can be introduced into breeding programs to improve some resistance traits in the cultivated peanuts. These genomic resources are valuable for studying polyploid genome evolution, domestication, and improvement of peanut production and resistance. John Wiley and Sons Inc. 2019-11-28 /pmc/articles/PMC7029647/ /pubmed/32099754 http://dx.doi.org/10.1002/advs.201901672 Text en © 2019 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Yin, Dongmei
Ji, Changmian
Song, Qingxin
Zhang, Wanke
Zhang, Xingguo
Zhao, Kunkun
Chen, Charles Y.
Wang, Chuantang
He, Guohao
Liang, Zhe
Ma, Xingli
Li, Zhongfeng
Tang, Yueyi
Wang, Yuejun
Li, Ke
Ning, Longlong
Zhang, Hui
Zhao, Kai
Li, Xuming
Yu, Haiyan
Lei, Yan
Wang, Mingcheng
Ma, Liming
Zheng, Hongkun
Zhang, Yijing
Zhang, Jinsong
Hu, Wei
Chen, Z. Jeffrey
Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title_full Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title_fullStr Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title_full_unstemmed Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title_short Comparison of Arachis monticola with Diploid and Cultivated Tetraploid Genomes Reveals Asymmetric Subgenome Evolution and Improvement of Peanut
title_sort comparison of arachis monticola with diploid and cultivated tetraploid genomes reveals asymmetric subgenome evolution and improvement of peanut
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7029647/
https://www.ncbi.nlm.nih.gov/pubmed/32099754
http://dx.doi.org/10.1002/advs.201901672
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