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Tea plants (Camellia sinensis) present an excellent system to study evolution and diversification of specialized metabolites due to their abundance in classes, numbers and contents. A large number of tea cultivars have been cultivated throughout the world not only because of their adaption to differ...
2020-10-05 | MTBLS1405 | MetaboLights
Tea quality is primarily determined by the accumulation of specialized metabolites in fresh leaves; however, the mechanisms by which propagation methods influence tea qual-ity through plant–soil–microbiome interactions remain poorly understood. Here, sexually propagated (SR) and asexually propagated...
2026-08-05 | MTBLS15257 | MetaboLights
Leaf colour variation is observed in several plants. We obtained two types of branches with yellow (H1) and variegated (H2) leaves from Camellia sinensis. To reveal the mechanisms that underlie the leaf colour variations, proteomic analysis using label-free MS-based approach was performed using leav...
ORGANISM(S): Camellia sinensis 
2018-10-26 | PXD004750 | Pride

The section Oleifera (Theaceae) has attracted attention for the high levels of unsaturated fatty acids found in its seeds. Here, we report the chromosome-scale genome of the sect. Oleifera using diploid wild Camellia lanceoleosa with a final size of 3.00 Gb and an N50 s...

2022-07-14 | MTBLS3769 | MetaboLights
The RNA-Seq was used to analyze the expression profiling of genes in different ablescent stages of 'Anji Baicha' Examination of three tea leaf samples in yellow stage, white stage and green stage
ORGANISM(S): Camellia sinensis 
Solexa sequencing technology was used to perform high throughput sequencing of the small RNA library from the cold treatment of tea leaves. Subsequently, aligning these sequencing date with plant known miRNAs, we characterized 112 C. sinensis conserved miRNAs. In addition, 215 potential candidate mi...
ORGANISM(S): Camellia sinensis 
Microarray analysis is being performed with cultivated selections using custom designed arrays. Custom designed arrays include the design of microarray probes using clearly described bioinformatics methods. We have used the sequence data related to fungal resistance from Camellia Sp. and Arabidopsis...
ORGANISM(S): Camellia sinensis 
Cell wall proteins (CWPs) probably play a vital role in fluoride accumulation/detoxification of C. sinensis leaves. However, there has been a lack in CWP identification and characterization up to now. This study is aimed to characterize cell wall proteome of C. sinensis leaves and to develop more CW...
ORGANISM(S): Camellia sinensis 
2022-02-17 | PXD026772 | Pride
Tea (Camellia sinensis (L.) O. Kuntze) is an important non-alcoholic commercial beverage crop. Tea tree is a perennial plant, and winter dormancy is its part of biological adaptation to environmental changes. We recently discovered a novel tea tree cultivar that can generate tender shoots in winter,...
ORGANISM(S): Camellia sinensis 
2022-02-23 | PXD008958 | Pride
Camellia sinensis Raw sequence reads
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