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Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection

Although efforts have been taken to exploit diversity for yield and quality improvements, limited progress on using beneficial alleles in domesticated and undomesticated cotton varieties is limited. Given the complexity and limited amount of genomic information since the completion of four cotton ge...

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Autores principales: Lu, Xuke, Fu, Xiaoqiong, Wang, Delong, Wang, Junyi, Chen, Xiugui, Hao, Meirong, Wang, Junjuan, Gervers, Kyle A., Guo, Lixue, Wang, Shuai, Yin, Zujun, Fan, Weili, Shi, Chunwei, Wang, Xiaoge, Peng, Jun, Chen, Chao, Cui, Ruifeng, Shu, Na, Zhang, Binglei, Han, Mingge, Zhao, Xiaojie, Mu, Min, Yu, John Z., Ye, Wuwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6587942/
https://www.ncbi.nlm.nih.gov/pubmed/30407717
http://dx.doi.org/10.1111/pbi.13030
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author Lu, Xuke
Fu, Xiaoqiong
Wang, Delong
Wang, Junyi
Chen, Xiugui
Hao, Meirong
Wang, Junjuan
Gervers, Kyle A.
Guo, Lixue
Wang, Shuai
Yin, Zujun
Fan, Weili
Shi, Chunwei
Wang, Xiaoge
Peng, Jun
Chen, Chao
Cui, Ruifeng
Shu, Na
Zhang, Binglei
Han, Mingge
Zhao, Xiaojie
Mu, Min
Yu, John Z.
Ye, Wuwei
author_facet Lu, Xuke
Fu, Xiaoqiong
Wang, Delong
Wang, Junyi
Chen, Xiugui
Hao, Meirong
Wang, Junjuan
Gervers, Kyle A.
Guo, Lixue
Wang, Shuai
Yin, Zujun
Fan, Weili
Shi, Chunwei
Wang, Xiaoge
Peng, Jun
Chen, Chao
Cui, Ruifeng
Shu, Na
Zhang, Binglei
Han, Mingge
Zhao, Xiaojie
Mu, Min
Yu, John Z.
Ye, Wuwei
author_sort Lu, Xuke
collection PubMed
description Although efforts have been taken to exploit diversity for yield and quality improvements, limited progress on using beneficial alleles in domesticated and undomesticated cotton varieties is limited. Given the complexity and limited amount of genomic information since the completion of four cotton genomes, characterizing significant variations and haplotype block inheritance under artificial selection has been challenging. Here we sequenced Gossypium hirsutum L. cv CRI‐12 (the cotton variety with the largest acreage in China), its parental cultivars, and progeny cultivars, which were bred by the different institutes in China. In total, 3.3 million SNPs were identified and 118, 126 and 176 genes were remarkably correlated with Verticillium wilt, salinity and drought tolerance in CRI‐12, respectively. Transcriptome‐wide analyses of gene expression, and functional annotations, have provided support for the identification of genes tied to these tolerances. We totally discovered 58 116 haplotype blocks, among which 23 752 may be inherited and 1029 may be recombined under artificial selection. This survey of genetic diversity identified loci that may have been subject to artificial selection and documented the haplotype block inheritance and recombination, shedding light on the genetic mechanism of artificial selection and guiding breeding efforts for the genetic improvement of cotton.
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spelling pubmed-65879422019-07-02 Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection Lu, Xuke Fu, Xiaoqiong Wang, Delong Wang, Junyi Chen, Xiugui Hao, Meirong Wang, Junjuan Gervers, Kyle A. Guo, Lixue Wang, Shuai Yin, Zujun Fan, Weili Shi, Chunwei Wang, Xiaoge Peng, Jun Chen, Chao Cui, Ruifeng Shu, Na Zhang, Binglei Han, Mingge Zhao, Xiaojie Mu, Min Yu, John Z. Ye, Wuwei Plant Biotechnol J Research Articles Although efforts have been taken to exploit diversity for yield and quality improvements, limited progress on using beneficial alleles in domesticated and undomesticated cotton varieties is limited. Given the complexity and limited amount of genomic information since the completion of four cotton genomes, characterizing significant variations and haplotype block inheritance under artificial selection has been challenging. Here we sequenced Gossypium hirsutum L. cv CRI‐12 (the cotton variety with the largest acreage in China), its parental cultivars, and progeny cultivars, which were bred by the different institutes in China. In total, 3.3 million SNPs were identified and 118, 126 and 176 genes were remarkably correlated with Verticillium wilt, salinity and drought tolerance in CRI‐12, respectively. Transcriptome‐wide analyses of gene expression, and functional annotations, have provided support for the identification of genes tied to these tolerances. We totally discovered 58 116 haplotype blocks, among which 23 752 may be inherited and 1029 may be recombined under artificial selection. This survey of genetic diversity identified loci that may have been subject to artificial selection and documented the haplotype block inheritance and recombination, shedding light on the genetic mechanism of artificial selection and guiding breeding efforts for the genetic improvement of cotton. John Wiley and Sons Inc. 2018-12-03 2019-05 /pmc/articles/PMC6587942/ /pubmed/30407717 http://dx.doi.org/10.1111/pbi.13030 Text en © 2018 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. 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 Research Articles
Lu, Xuke
Fu, Xiaoqiong
Wang, Delong
Wang, Junyi
Chen, Xiugui
Hao, Meirong
Wang, Junjuan
Gervers, Kyle A.
Guo, Lixue
Wang, Shuai
Yin, Zujun
Fan, Weili
Shi, Chunwei
Wang, Xiaoge
Peng, Jun
Chen, Chao
Cui, Ruifeng
Shu, Na
Zhang, Binglei
Han, Mingge
Zhao, Xiaojie
Mu, Min
Yu, John Z.
Ye, Wuwei
Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title_full Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title_fullStr Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title_full_unstemmed Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title_short Resequencing of cv CRI‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
title_sort resequencing of cv cri‐12 family reveals haplotype block inheritance and recombination of agronomically important genes in artificial selection
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6587942/
https://www.ncbi.nlm.nih.gov/pubmed/30407717
http://dx.doi.org/10.1111/pbi.13030
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