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Haplotype-resolved genome assembly and allele- specific gene expression in cultivated ginger 被引量:4
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作者 Shi-Ping Cheng kai-hua jia +23 位作者 Hui Liu Ren-Gang Zhang Zhi-Chao Li Shan-Shan Zhou Tian-Le Shi Ai-Chu Ma Cong-Wen Yu Chan Gao Guang-Lei Cao Wei Zhao Shuai Nie Jing-Fang Guo Si-Qian jiao Xue-Chan Tian Xue-Mei Yan Yu-Tao Bao Quan-Zheng Yun Xin-Zhu Wang Ilga Porth Yousry AEl-Kassaby Xiao-Ru Wang Zhen Li Yves Van de Peer jian-Feng Mao 《Horticulture Research》 SCIE 2021年第1期2531-2545,共15页
Ginger(Zingiber officinale)is one of the most valued spice plants worldwide;it is prized for its culinary and folk medicinal applications and is therefore of high economic and cultural importance.Here,we present a hap... Ginger(Zingiber officinale)is one of the most valued spice plants worldwide;it is prized for its culinary and folk medicinal applications and is therefore of high economic and cultural importance.Here,we present a haplotype-resolved,chromosome-scale assembly for diploid ginger anchored to 11 pseudochromosome pairs with a total length of 3.1 Gb.Remarkable structural variation was identified between haplotypes,and two inversions larger than 15Mb on chromosome 4 may be associated with ginger infertility.We performed a comprehensive,spatiotemporal,genome-wide analysis of allelic expression patterns,revealing that most alleles are coordinately expressed.The alleles that exhibited the largest differences in expression showed closer proximity to transposable elements,greater coding sequence divergence,more relaxed selection pressure,and more transcription factor binding site differences.We also predicted the transcription factors potentially regulating 6-gingerol biosynthesis.Our allele-aware assembly provides a powerful platform for future functional genomics,molecular breeding,and genome editing in ginger. 展开更多
关键词 RESOLVED CLOSER breeding
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Chromosome-scale assembly and evolution of the tetraploid Salvia splendens (Lamiaceae) genome 被引量:1
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作者 kai-hua jia Hui Liu +18 位作者 Ren-Gang Zhang Jie Xu Shan-Shan Zhou Si-Qian jiao Xue-Mei Yan Xue-Chan Tian Tian-Le Shi Hang Luo Zhi-Chao Li Yu-Tao Bao Shuai Nie Jing-Fang Guo Ilga Porth Yousry AEl-Kassaby Xiao-Ru Wang Charles Chen Yves Van de Peer Wei Zhao jian-Feng Mao 《Horticulture Research》 SCIE 2021年第1期2721-2735,共15页
Polyploidization plays a key role in plant evolution,but the forces driving the fate of homoeologs in polyploid genomes,i.e.,paralogs resulting from a whole-genome duplication(WGD)event,remain to be elucidated.Here,we... Polyploidization plays a key role in plant evolution,but the forces driving the fate of homoeologs in polyploid genomes,i.e.,paralogs resulting from a whole-genome duplication(WGD)event,remain to be elucidated.Here,we present a chromosome-scale genome assembly of tetraploid scarlet sage(Salvia splendens),one of the most diverse ornamental plants.We found evidence for three WGD events following an older WGD event shared by most eudicots(theγevent).A comprehensive,spatiotemporal,genome-wide analysis of homoeologs from the most recent WGD unveiled expression asymmetries,which could be associated with genomic rearrangements,transposable element proximity discrepancies,coding sequence variation,selection pressure,and transcription factor binding site differences.The observed differences between homoeologs may reflect the first step toward sub-and/or neofunctionalization.This assembly provides a powerful tool for understanding WGD and gene and genome evolution and is useful in developing functional genomics and genetic engineering strategies for scarlet sage and other Lamiaceae species. 展开更多
关键词 SPECIES EVOLUTION ASSEMBLY
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Telomere-to-telomere genome assemblies of cultivated and wild soybean provide insights into evolution and domestication under structural variation
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作者 kai-hua jia Xiaoyan Zhang +13 位作者 Lei-Lei Li Tian-Le Shi Dan Liu Yongyi Yang Yunzhe Cong Runfang Li Yanyan Pu Yongchao Gong Xue Chen Yu-Jun Si Rumei Tian Zhenya Qian Hanfeng Ding Nana Li 《Plant Communications》 SCIE CSCD 2024年第8期92-95,共4页
Dear Editor,Soybean(Glycine max)is a critical crop worldwide,renowned as a major source of edible oil and protein.It was domesticated approximately 5000-9000 years ago in China,between latitudes 32°N and 40°... Dear Editor,Soybean(Glycine max)is a critical crop worldwide,renowned as a major source of edible oil and protein.It was domesticated approximately 5000-9000 years ago in China,between latitudes 32°N and 40°N,from its wild progenitor,Glycine soja.In recent years,numerous genome assemblies for both cultivated and wild soybeans have been published,with cultivated soybean genomes even achieving telomere-to-telomere(T2T)completeness(Zhang et al.,2023a,2023b;Wang et al.,2023;Huang et al.,2024). 展开更多
关键词 soybean INSIGHT EVOLUTION
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