- The overall statistics of functional annotation of Camellia genes are shown as below.
GeneName | Gene models | Annotated to NR database | Annotated to PFAM database | Annotated to Interpro database | Annotated to KEGG database | Annotated to GO database | Transcription factors |
---|---|---|---|---|---|---|---|
Yunkang10 | 36,951 | 33,978 | 24,879 | 28,982 | 26,935 | 21,583 | 1,804 |
Shuchazao (v1) | 33,932 | 33.382 | 26,436 | 30,270 | 26,604 | 23,178 | 2,486 |
Shuchazao (v2) | 50,525 | 45,673 | 34,110 | 39,539 | 27,668 | 26,617 | 2,884 |
Biyun | 40,808 | 38,951 | 29,391 | 34,141 | 30,326 | 25,285 | 2,386 |
Longjing43 | 33,556 | 31,839 | 25,223 | 28,364 | 25,051 | 21,554 | 1,911 |
Wild tea (DASZ) | 33,021 | 30,659 | 23,411 | 26,801 | 23,368 | 19,967 | 2,081 |
Huangdan | 43,779 | 38,531 | 29,669 | 32,889 | 29,283 | 24,245 | 2,495 |
Tieguanyin | 45,901 | 43,595 | 35,572 | 38,960 | 35,034 | 29,229 | 3,186 |
C.oleifera | 54,172 | 50,618 | 37,071 | 43,834 | 39,380 | 32,263 | 3,215 |
C.chekiangoleosa | 64,608 | 64,384 | 43,199 | 49,867 | 44,526 | 35,515 | 3,336 |
Related References:
Xia, E.H. et al. The Tea Tree Genome Provides Insights into Tea Flavor and Independent Evolution of Caffeine Biosynthesis. Molecular Plant 10, 866-877 (2017).
Xia, E.H. et al. The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and Adaptation. Molecular Plant 13, 1013-1026 (2020).
Wang, X.C. et al. Population sequencing enhances understanding of tea plant evolution. Nature Commounications 11, 4447 (2020).
Zhang, W.Y. et al. Genome assembly of wild tea tree DASZ reveals pedigree and selection history of tea varieties. Nature Commounications 11, 3719 (2020).
Zhang, Q.J. et al. The Chromosome-Level Reference Genome of Tea Tree Unveils Recent Bursts of Non-autonomous LTR Retrotransposons in Driving Genome Size Evolution. Molecular Plant 7,
935-938 (2020).
Wang, P.J. et al. Genetic basis of high aroma and stress tolerance in the oolong tea cultivar genome. Horticulture Research 8, 107 (2021).
Zhang, X.T. et al. Haplotype-resolved genome assembly provides insights into evolutionary history of the tea plant Camellia sinensis. Nature Genetics 53, 1250-1259 (2021).
Sheng, T.F. et al. The reference genome of Camellia chekiangoleosa provides insights into Camellia evolution and tea oil biosynthesis. Horticulture Research uhab083 (2022).
Gong, W.F. et al. Chromosome-level genome of Camellia lanceoleosa provides a valuable resource for understanding genome evolution and self-incompatibility. The Plant Journal 3, 881-898 (2022).