Search Results - "Wei, Chendan"

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  1. 1

    Conversion between 100-million-year-old duplicated genes contributes to rice subspecies divergence by Wei, Chendan, Wang, Zhenyi, Wang, Jianyu, Teng, Jia, Shen, Shaoqi, Xiao, Qimeng, Bao, Shoutong, Feng, Yishan, Zhang, Yan, Li, Yuxian, Sun, Sangrong, Yue, Yuanshuai, Wu, Chunyang, Wang, Yanli, Zhou, Tianning, Xu, Wenbo, Yu, Jigao, Wang, Li, Wang, Jinpeng

    Published in BMC genomics (19-06-2021)
    “…Duplicated gene pairs produced by ancient polyploidy maintain high sequence similarity over a long period of time and may result from illegitimate…”
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    Journal Article
  2. 2

    Conversion between duplicated genes generated by polyploidization contributes to the divergence of poplar and willow by Wang, Jianyu, Zhang, Lan, Wang, Jiaqi, Hao, Yanan, Xiao, Qimeng, Teng, Jia, Shen, Shaoqi, Zhang, Yan, Feng, Yishan, Bao, Shoutong, Li, Yu, Yan, Zimo, Wei, Chendan, Wang, Li, Wang, Jinpeng

    Published in BMC plant biology (17-06-2022)
    “…Gene conversion has an important effect on duplicate genes produced by polyploidization. Poplar (Populus trichocarpa) and willow (Salix brachista) are leading…”
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    Journal Article
  3. 3

    Sequential Paleotetraploidization shaped the carrot genome by Wang, Jinpeng, Yu, Jigao, Li, Yuxian, Wei, Chendan, Guo, He, Liu, Ying, Zhang, Jin, Li, Xiuqing, Wang, Xiyin

    Published in BMC plant biology (31-01-2020)
    “…Carrot (Daucus carota subsp. carota L.) is an important root crop with an available high-quality genome. The carrot genome is thought to have undergone…”
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    Journal Article
  4. 4

    Paleopolyploidies and Genomic Fractionation in Major Eudicot Clades by Teng, Jia, Wang, Jianyu, Zhang, Lan, Wei, Chendan, Shen, Shaoqi, Xiao, Qimeng, Yue, Yuanshuai, Hao, Yanan, Ge, Weina, Wang, Jinpeng

    Published in Frontiers in plant science (31-05-2022)
    “…Eudicots account for ~75% of living angiosperms, containing important food and energy crops. Recently, high-quality genome sequences of several eudicots…”
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  5. 5

    Cotton Duplicated Genes Produced by Polyploidy Show Significantly Elevated and Unbalanced Evolutionary Rates, Overwhelmingly Perturbing Gene Tree Topology by Meng, Fanbo, Pan, Yuxin, Wang, Jinpeng, Yu, Jigao, Liu, Chao, Zhang, Zhikang, Wei, Chendan, Guo, He, Wang, Xiyin

    Published in Frontiers in genetics (23-04-2020)
    “…A phylogenetic tree can be used to illustrate the evolutionary relationship between a group of genes, especially duplicated genes, which are sources of genetic…”
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  6. 6

    Illegitimate Recombination Between Homeologous Genes in Wheat Genome by Liu, Chao, Wang, Jinpeng, Sun, Pengchuan, Yu, Jigao, Meng, Fanbo, Zhang, Zhikang, Guo, He, Wei, Chendan, Li, Xinyu, Shen, Shaoqi, Wang, Xiyin

    Published in Frontiers in plant science (21-07-2020)
    “…Polyploidies produce a large number of duplicated regions and genes in genomes, which have a long-term impact and stimulate genetic innovation. The high…”
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  7. 7

    Polyploidy Index and Its Implications for the Evolution of Polyploids by Wang, Jinpeng, Qin, Jun, Sun, Pengchuan, Ma, Xuelian, Yu, Jigao, Li, Yuxian, Sun, Sangrong, Lei, Tianyu, Meng, Fanbo, Wei, Chendan, Li, Xinyu, Guo, He, Liu, Xiaojian, Xia, Ruiyan, Wang, Li, Ge, Weina, Song, Xiaoming, Zhang, Lan, Guo, Di, Wang, Jinyu, Bao, Shoutong, Jiang, Shan, Feng, Yishan, Li, Xueping, Paterson, Andrew H., Wang, Xiyin

    Published in Frontiers in genetics (10-09-2019)
    “…Polyploidy has contributed to the divergence and domestication of plants; however, estimation of the relative roles that different types of polyploidy have…”
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  8. 8

    Illegitimate Recombination between Duplicated Genes Generated from Recursive Polyploidizations Accelerated the Divergence of the Genus Arachis by Shen, Shaoqi, Li, Yuxian, Wang, Jianyu, Wei, Chendan, Wang, Zhenyi, Ge, Weina, Yuan, Min, Zhang, Lan, Wang, Li, Sun, Sangrong, Teng, Jia, Xiao, Qimeng, Bao, Shoutong, Feng, Yishan, Zhang, Yan, Wang, Jiaqi, Hao, Yanan, Lei, Tianyu, Wang, Jinpeng

    Published in Genes (01-12-2021)
    “…The peanut ( L.) is the leading oil and food crop among the legume family. Extensive duplicate gene pairs generated from recursive polyploidizations with high…”
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