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Widespread Whole Genome Duplications Contribute to Genome Complexity and Species Diversity in Angiosperms

摘要Gene duplications provide evolutionary potentials for generating novel functions,while polyploidization or whole genome duplication (WGD) doubles the chromosomes initially and results in hundreds to thousands of retained duplicates.WGDs are strongly supported by evidence commonly found in many species-rich lineages of eukaryotes,and thus are considered as a major driving force in species diversification.We performed comparative genomic and phylogenomic analyses of 59 public genomes/transcriptomes and 46 newly sequenced transcriptomes covering major lineages of angiosperms to detect large-scale gene duplication events by surveying tens of thousands of gene family trees.These analyses confirmed most of the previously reported WGDs and provided strong evidence for novel ones in many lineages.The detected WGDs supported a model of exponential gene loss during evolution with an estimated half-life of approximately 21.6 million years,and were correlated with both the emergence of lineages with high degrees of diversification and periods of global climate changes.The new datasets and analyses detected many novel WGDs widely spread during angiosperm evolution,uncovered preferential retention of gene functions in essential cellular metabolisms,and provided clues for the roles of WGD in promoting angiosperm radiation and enhancing their adaptation to environmental changes.

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作者单位 State Key Laboratory of Genetic Engineering and Collaborative Innovation Center for Genetics and Development,Ministry of Education Key Laboratory of Biodiversity Science and Ecological Engineering and Institute of Biodiversity Science,Institute of Plant Biology,Center for Evolutionary Biology,School of Life Sciences,Fudan University,Shanghai,China [1] State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops,Fujian Agriculture and Forestry University,Fuzhou,Fujian 350002,China [2] State Key Laboratory of Genetic Engineering and Collaborative Innovation Center for Genetics and Development,Ministry of Education Key Laboratory of Biodiversity Science and Ecological Engineering and Institute of Biodiversity Science,Institute of Plant Biology,Center for Evolutionary Biology,School of Life Sciences,Fudan University,Shanghai,China;Department of Botany,National Museum of Natural History,MRC 166,Smithsonian Institution,Washington,DC,USA [3] State Key Laboratory of Genetic Engineering and Collaborative Innovation Center for Genetics and Development,Ministry of Education Key Laboratory of Biodiversity Science and Ecological Engineering and Institute of Biodiversity Science,Institute of Plant Biology,Center for Evolutionary Biology,School of Life Sciences,Fudan University,Shanghai,China;Institutes of Biomedical Sciences,Fudan University,Shanghai,China [4]
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发布时间 2018-05-30(万方平台首次上网日期,不代表论文的发表时间)
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分子植物(英文版)

分子植物(英文版)

2018年11卷3期

414-428页

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