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Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution
by
Tsai, Isheng J.
, Wu, Yu-Wei
, Leebens-Mack, James H.
, Wu, Chung-Shien
, Wu, Kun-Pin
, Hsu, Min-Hung
, Ke, Huei-Mien
, Chaw, Shu-Miaw
, Sudianto, Edi
, Wang, Ling-Ni
, Hsu, Chih-Yao
, Lin, Chan-Yi Ivy
, Wang, Han-Yu
, Chang, Lo-Yu
, Yang, Hui-Ting
, Liu, Yu-Ching
in
13/31
/ 45/22
/ 45/23
/ 45/90
/ 45/91
/ 631/208/212/2304
/ 631/208/212/2306
/ 631/208/212/748
/ 631/449/2669
/ Alkyl and Aryl Transferases - genetics
/ Annotations
/ Biomedical and Life Sciences
/ Camphor
/ Cinnamomum
/ Cinnamomum camphora
/ Cinnamomum camphora - genetics
/ Divergence
/ DNA Transposable Elements
/ Evolution
/ Evolution, Molecular
/ Flowering
/ Flowering plants
/ Genome, Plant
/ Genomes
/ Lauraceae
/ Laurales
/ Life Sciences
/ Magnoliales
/ Magnoliopsida - genetics
/ Molecular Sequence Annotation
/ Monoterpenes
/ Multigene Family
/ Phylogeny
/ Plant Proteins - genetics
/ Plant Sciences
/ Polymorphism, Single Nucleotide
/ Reproduction (copying)
/ Sesquiterpenes
/ Synteny
2019
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Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution
by
Tsai, Isheng J.
, Wu, Yu-Wei
, Leebens-Mack, James H.
, Wu, Chung-Shien
, Wu, Kun-Pin
, Hsu, Min-Hung
, Ke, Huei-Mien
, Chaw, Shu-Miaw
, Sudianto, Edi
, Wang, Ling-Ni
, Hsu, Chih-Yao
, Lin, Chan-Yi Ivy
, Wang, Han-Yu
, Chang, Lo-Yu
, Yang, Hui-Ting
, Liu, Yu-Ching
in
13/31
/ 45/22
/ 45/23
/ 45/90
/ 45/91
/ 631/208/212/2304
/ 631/208/212/2306
/ 631/208/212/748
/ 631/449/2669
/ Alkyl and Aryl Transferases - genetics
/ Annotations
/ Biomedical and Life Sciences
/ Camphor
/ Cinnamomum
/ Cinnamomum camphora
/ Cinnamomum camphora - genetics
/ Divergence
/ DNA Transposable Elements
/ Evolution
/ Evolution, Molecular
/ Flowering
/ Flowering plants
/ Genome, Plant
/ Genomes
/ Lauraceae
/ Laurales
/ Life Sciences
/ Magnoliales
/ Magnoliopsida - genetics
/ Molecular Sequence Annotation
/ Monoterpenes
/ Multigene Family
/ Phylogeny
/ Plant Proteins - genetics
/ Plant Sciences
/ Polymorphism, Single Nucleotide
/ Reproduction (copying)
/ Sesquiterpenes
/ Synteny
2019
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Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution
by
Tsai, Isheng J.
, Wu, Yu-Wei
, Leebens-Mack, James H.
, Wu, Chung-Shien
, Wu, Kun-Pin
, Hsu, Min-Hung
, Ke, Huei-Mien
, Chaw, Shu-Miaw
, Sudianto, Edi
, Wang, Ling-Ni
, Hsu, Chih-Yao
, Lin, Chan-Yi Ivy
, Wang, Han-Yu
, Chang, Lo-Yu
, Yang, Hui-Ting
, Liu, Yu-Ching
in
13/31
/ 45/22
/ 45/23
/ 45/90
/ 45/91
/ 631/208/212/2304
/ 631/208/212/2306
/ 631/208/212/748
/ 631/449/2669
/ Alkyl and Aryl Transferases - genetics
/ Annotations
/ Biomedical and Life Sciences
/ Camphor
/ Cinnamomum
/ Cinnamomum camphora
/ Cinnamomum camphora - genetics
/ Divergence
/ DNA Transposable Elements
/ Evolution
/ Evolution, Molecular
/ Flowering
/ Flowering plants
/ Genome, Plant
/ Genomes
/ Lauraceae
/ Laurales
/ Life Sciences
/ Magnoliales
/ Magnoliopsida - genetics
/ Molecular Sequence Annotation
/ Monoterpenes
/ Multigene Family
/ Phylogeny
/ Plant Proteins - genetics
/ Plant Sciences
/ Polymorphism, Single Nucleotide
/ Reproduction (copying)
/ Sesquiterpenes
/ Synteny
2019
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Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution
Journal Article
Stout camphor tree genome fills gaps in understanding of flowering plant genome evolution
2019
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Overview
We present reference-quality genome assembly and annotation for the stout camphor tree (
Cinnamomum kanehirae
(Laurales, Lauraceae)), the first sequenced member of the Magnoliidae comprising four orders (Laurales, Magnoliales, Canellales and Piperales) and over 9,000 species. Phylogenomic analysis of 13 representative seed plant genomes indicates that magnoliid and eudicot lineages share more recent common ancestry than monocots. Two whole-genome duplication events were inferred within the magnoliid lineage: one before divergence of Laurales and Magnoliales and the other within the Lauraceae. Small-scale segmental duplications and tandem duplications also contributed to innovation in the evolutionary history of
Cinnamomum
. For example, expansion of the terpenoid synthase gene subfamilies within the Laurales spawned the diversity of
Cinnamomum
monoterpenes and sesquiterpenes.
A high-quality reference genome of the stout camphor tree reveals its genome evolution and supports that magnoliid and eudicot lineages share more common ancestry relative to monocots.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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