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The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
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The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
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The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis

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The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis
Journal Article

The chromosome‐level genome sequence of the camphor tree provides insights into Lauraceae evolution and terpene biosynthesis

2022
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Overview
According to the main volatile components of leaf essential oils (LEOs), such as monoterpenes, sesquiterpenes and diterpenes, camphor trees can be subdivided into five chemotypes: the borneol, camphor, cineole, linalool and nerolidol types. Through ab initio modelling, protein-based searches and transcript analysis of long-read isoform sequencing and short-read RNA sequencing data, a high-confidence set of 29 919 protein-coding gene models (concealing 37 295 protein-coding transcripts) was predicted by Maker2 in the C. camphora genome and was located on the 12 pseudochromosomes. Acknowledgements This work is supported by grants from the National Natural Science Foundation of China (Grant Nos. 32060354, 31860079 and 32160397) and the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD).

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