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The complete chloroplast genome of Cinnamomum camphora and its comparison with related Lauraceae species
by
Xu, Li-An
, Chen, Caihui
, Zheng, Yongjie
, Li, Jiang
, Wu, Yanfang
, Liu, Sian
, Zhong, Yongda
, Xu, Meng
in
Analysis
/ Bioinformatics
/ Camphor trees
/ Chloroplast genome
/ Chloroplasts
/ Cinnamomum camphora
/ Conservation Biology
/ Deoxyribonucleic acid
/ DNA
/ DNA sequencing
/ Essential oils
/ Evolution
/ Forestry
/ Genera
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetics
/ Genomes
/ Genomics
/ Herbal medicine
/ Identification
/ Identification and classification
/ Illumina sequencing
/ Inverted repeat
/ Lauraceae
/ Methods
/ Mitochondrial DNA
/ Molecular Biology
/ Morphology
/ Phylogenetics
/ Phylogeny
/ Plant biology
/ Plant Science
/ Plant sciences
/ Proteins
/ Simple sequence repeats
/ Taxonomy
/ Transfer RNA
2017
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The complete chloroplast genome of Cinnamomum camphora and its comparison with related Lauraceae species
by
Xu, Li-An
, Chen, Caihui
, Zheng, Yongjie
, Li, Jiang
, Wu, Yanfang
, Liu, Sian
, Zhong, Yongda
, Xu, Meng
in
Analysis
/ Bioinformatics
/ Camphor trees
/ Chloroplast genome
/ Chloroplasts
/ Cinnamomum camphora
/ Conservation Biology
/ Deoxyribonucleic acid
/ DNA
/ DNA sequencing
/ Essential oils
/ Evolution
/ Forestry
/ Genera
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetics
/ Genomes
/ Genomics
/ Herbal medicine
/ Identification
/ Identification and classification
/ Illumina sequencing
/ Inverted repeat
/ Lauraceae
/ Methods
/ Mitochondrial DNA
/ Molecular Biology
/ Morphology
/ Phylogenetics
/ Phylogeny
/ Plant biology
/ Plant Science
/ Plant sciences
/ Proteins
/ Simple sequence repeats
/ Taxonomy
/ Transfer RNA
2017
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The complete chloroplast genome of Cinnamomum camphora and its comparison with related Lauraceae species
by
Xu, Li-An
, Chen, Caihui
, Zheng, Yongjie
, Li, Jiang
, Wu, Yanfang
, Liu, Sian
, Zhong, Yongda
, Xu, Meng
in
Analysis
/ Bioinformatics
/ Camphor trees
/ Chloroplast genome
/ Chloroplasts
/ Cinnamomum camphora
/ Conservation Biology
/ Deoxyribonucleic acid
/ DNA
/ DNA sequencing
/ Essential oils
/ Evolution
/ Forestry
/ Genera
/ Genes
/ Genetic aspects
/ Genetic engineering
/ Genetics
/ Genomes
/ Genomics
/ Herbal medicine
/ Identification
/ Identification and classification
/ Illumina sequencing
/ Inverted repeat
/ Lauraceae
/ Methods
/ Mitochondrial DNA
/ Molecular Biology
/ Morphology
/ Phylogenetics
/ Phylogeny
/ Plant biology
/ Plant Science
/ Plant sciences
/ Proteins
/ Simple sequence repeats
/ Taxonomy
/ Transfer RNA
2017
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The complete chloroplast genome of Cinnamomum camphora and its comparison with related Lauraceae species
Journal Article
The complete chloroplast genome of Cinnamomum camphora and its comparison with related Lauraceae species
2017
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Overview
Cinnamomum camphora , a member of the Lauraceae family, is a valuable aromatic and timber tree that is indigenous to the south of China and Japan. All parts of Cinnamomum camphora have secretory cells containing different volatile chemical compounds that are utilized as herbal medicines and essential oils. Here, we reported the complete sequencing of the chloroplast genome of Cinnamomum camphora using illumina technology. The chloroplast genome of Cinnamomum camphora is 152,570 bp in length and characterized by a relatively conserved quadripartite structure containing a large single copy region of 93,705 bp, a small single copy region of 19,093 bp and two inverted repeat (IR) regions of 19,886 bp. Overall, the genome contained 123 coding regions, of which 15 were repeated in the IR regions. An analysis of chloroplast sequence divergence revealed that the small single copy region was highly variable among the different genera in the Lauraceae family. A total of 40 repeat structures and 83 simple sequence repeats were detected in both the coding and non-coding regions. A phylogenetic analysis indicated that Calycanthus is most closely related to Lauraceae , both being members of Laurales , which forms a sister group to Magnoliids . The complete sequence of the chloroplast of Cinnamomum camphora will aid in in-depth taxonomical studies of the Lauraceae family in the future. The genetic sequence information will also have valuable applications for chloroplast genetic engineering.
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