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Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis
by
You, Minsheng
, He, Haifang
, Li, Ruoyu
, Kong, Xiangrui
, Hu, Guiping
, Chen, Shuai
, Wang, Gang
, Shi, Yan
, Ye, Naixing
, Gong, Daping
, Zhan, Dongliang
, Shi, Longqing
, Zhao, Qian
, Wang, Wenling
, Ma, Yunran
, Zhang, Xingtan
, Wang, Pengjie
, Ming, Ray
, Xu, Xindan
, Ma, Dongna
, Vasseur, Liette
, Lin, Jing
, Wei, Liufeng
, Zhang, Lin
, Yu, Jiaxin
, Ma, Xiaokai
, Wang, Yibin
, Tang, Haibao
, Ma, Yaying
, Zhang, Shengcheng
, Liao, Zhenyang
, Qi, Rui
, Wang, Haifeng
in
631/208/212
/ 631/208/457
/ 631/449/2491
/ Agriculture
/ Animal Genetics and Genomics
/ Biomedical and Life Sciences
/ Biomedicine
/ Botanical research
/ Cancer Research
/ Gene Function
/ Genetic aspects
/ Genomics
/ Haplotypes
/ Human Genetics
/ Methods
/ Natural history
/ Tea (Plant)
2021
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Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis
by
You, Minsheng
, He, Haifang
, Li, Ruoyu
, Kong, Xiangrui
, Hu, Guiping
, Chen, Shuai
, Wang, Gang
, Shi, Yan
, Ye, Naixing
, Gong, Daping
, Zhan, Dongliang
, Shi, Longqing
, Zhao, Qian
, Wang, Wenling
, Ma, Yunran
, Zhang, Xingtan
, Wang, Pengjie
, Ming, Ray
, Xu, Xindan
, Ma, Dongna
, Vasseur, Liette
, Lin, Jing
, Wei, Liufeng
, Zhang, Lin
, Yu, Jiaxin
, Ma, Xiaokai
, Wang, Yibin
, Tang, Haibao
, Ma, Yaying
, Zhang, Shengcheng
, Liao, Zhenyang
, Qi, Rui
, Wang, Haifeng
in
631/208/212
/ 631/208/457
/ 631/449/2491
/ Agriculture
/ Animal Genetics and Genomics
/ Biomedical and Life Sciences
/ Biomedicine
/ Botanical research
/ Cancer Research
/ Gene Function
/ Genetic aspects
/ Genomics
/ Haplotypes
/ Human Genetics
/ Methods
/ Natural history
/ Tea (Plant)
2021
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Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis
by
You, Minsheng
, He, Haifang
, Li, Ruoyu
, Kong, Xiangrui
, Hu, Guiping
, Chen, Shuai
, Wang, Gang
, Shi, Yan
, Ye, Naixing
, Gong, Daping
, Zhan, Dongliang
, Shi, Longqing
, Zhao, Qian
, Wang, Wenling
, Ma, Yunran
, Zhang, Xingtan
, Wang, Pengjie
, Ming, Ray
, Xu, Xindan
, Ma, Dongna
, Vasseur, Liette
, Lin, Jing
, Wei, Liufeng
, Zhang, Lin
, Yu, Jiaxin
, Ma, Xiaokai
, Wang, Yibin
, Tang, Haibao
, Ma, Yaying
, Zhang, Shengcheng
, Liao, Zhenyang
, Qi, Rui
, Wang, Haifeng
in
631/208/212
/ 631/208/457
/ 631/449/2491
/ Agriculture
/ Animal Genetics and Genomics
/ Biomedical and Life Sciences
/ Biomedicine
/ Botanical research
/ Cancer Research
/ Gene Function
/ Genetic aspects
/ Genomics
/ Haplotypes
/ Human Genetics
/ Methods
/ Natural history
/ Tea (Plant)
2021
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Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis
Journal Article
Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis
2021
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Overview
Tea is an important global beverage crop and is largely clonally propagated. Despite previous studies on the species, its genetic and evolutionary history deserves further research. Here, we present a haplotype-resolved assembly of an Oolong tea cultivar, Tieguanyin. Analysis of allele-specific expression suggests a potential mechanism in response to mutation load during long-term clonal propagation. Population genomic analysis using 190
Camellia
accessions uncovered independent evolutionary histories and parallel domestication in two widely cultivated varieties, var.
sinensis
and var.
assamica
. It also revealed extensive intra- and interspecific introgressions contributing to genetic diversity in modern cultivars. Strong signatures of selection were associated with biosynthetic and metabolic pathways that contribute to flavor characteristics as well as genes likely involved in the Green Revolution in the tea industry. Our results offer genetic and molecular insights into the evolutionary history of
Camellia sinensis
and provide genomic resources to further facilitate gene editing to enhance desirable traits in tea crops.
Haplotype-resolved genome assembly of an Oolong tea cultivar Tieguanyin and population genomic analyses of 190
Camellia
accessions provide insights into the evolutionary history of the tea plant
Camellia sinensis
.
Publisher
Nature Publishing Group US,Nature Publishing Group
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