Innovation and constraint leading to complex multicellularity in the Ascomycota
10.1038/ncomms14444
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sg-nus-scholar.10635-1744332023-09-21T08:28:08Z Innovation and constraint leading to complex multicellularity in the Ascomycota Nguyen, T.A Cissé, O.H Yun Wong, J Zheng, P Hewitt, D Nowrousian, M Stajich, J.E Jedd, G BIOLOGY (NU) divergence evolution gene expression genome genomics innovation phylogenetics yeast budding cell organelle fission yeast functional genomics genetic variability genome machine Pezizomycotina Ascomycetes biodiversity biology cytology fungal genome genetics molecular evolution phylogeny physiology sequence alignment transport at the cellular level whole genome sequencing Animalia Ascomycota Fungi Neolecta Neolecta irregularis Pezizomycotina Schizosaccharomycetaceae fungal DNA fungal protein Ascomycota Biodiversity Biological Transport Computational Biology DNA, Fungal Evolution, Molecular Fungal Proteins Genome, Fungal Phylogeny Sequence Alignment Whole Genome Sequencing 10.1038/ncomms14444 Nature Communications 8 14444 2020-09-04T03:42:25Z 2020-09-04T03:42:25Z 2017 Article Nguyen, T.A, Cissé, O.H, Yun Wong, J, Zheng, P, Hewitt, D, Nowrousian, M, Stajich, J.E, Jedd, G (2017). Innovation and constraint leading to complex multicellularity in the Ascomycota. Nature Communications 8 : 14444. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms14444 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174433 Nature Publishing Group Unpaywall 20200831 |
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divergence evolution gene expression genome genomics innovation phylogenetics yeast budding cell organelle fission yeast functional genomics genetic variability genome machine Pezizomycotina Ascomycetes biodiversity biology cytology fungal genome genetics molecular evolution phylogeny physiology sequence alignment transport at the cellular level whole genome sequencing Animalia Ascomycota Fungi Neolecta Neolecta irregularis Pezizomycotina Schizosaccharomycetaceae fungal DNA fungal protein Ascomycota Biodiversity Biological Transport Computational Biology DNA, Fungal Evolution, Molecular Fungal Proteins Genome, Fungal Phylogeny Sequence Alignment Whole Genome Sequencing |
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divergence evolution gene expression genome genomics innovation phylogenetics yeast budding cell organelle fission yeast functional genomics genetic variability genome machine Pezizomycotina Ascomycetes biodiversity biology cytology fungal genome genetics molecular evolution phylogeny physiology sequence alignment transport at the cellular level whole genome sequencing Animalia Ascomycota Fungi Neolecta Neolecta irregularis Pezizomycotina Schizosaccharomycetaceae fungal DNA fungal protein Ascomycota Biodiversity Biological Transport Computational Biology DNA, Fungal Evolution, Molecular Fungal Proteins Genome, Fungal Phylogeny Sequence Alignment Whole Genome Sequencing Nguyen, T.A Cissé, O.H Yun Wong, J Zheng, P Hewitt, D Nowrousian, M Stajich, J.E Jedd, G Innovation and constraint leading to complex multicellularity in the Ascomycota |
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10.1038/ncomms14444 |
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BIOLOGY (NU) |
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BIOLOGY (NU) Nguyen, T.A Cissé, O.H Yun Wong, J Zheng, P Hewitt, D Nowrousian, M Stajich, J.E Jedd, G |
format |
Article |
author |
Nguyen, T.A Cissé, O.H Yun Wong, J Zheng, P Hewitt, D Nowrousian, M Stajich, J.E Jedd, G |
author_sort |
Nguyen, T.A |
title |
Innovation and constraint leading to complex multicellularity in the Ascomycota |
title_short |
Innovation and constraint leading to complex multicellularity in the Ascomycota |
title_full |
Innovation and constraint leading to complex multicellularity in the Ascomycota |
title_fullStr |
Innovation and constraint leading to complex multicellularity in the Ascomycota |
title_full_unstemmed |
Innovation and constraint leading to complex multicellularity in the Ascomycota |
title_sort |
innovation and constraint leading to complex multicellularity in the ascomycota |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/174433 |
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1778169760460046336 |