Catinot J, Huang J, Huang P, Tseng M, Chen Y, Gu S, Lo W, Wang L, Chen Y, Zimmerli L. 2015. ETHYLENE RESPONSE FACTOR 96 positively regulates Arabidopsis resistance to necrotrophic pathogens by direct binding to GCC elements of jasmonate- and ethylene-responsive defence genes. Plant, Cell & Environment, 38, 2721–2734.
Chen C, Chen H, Zhang Y, Thomas H R, Frank M H, He Y, Xia R. 2020. TBtools: an integrative toolkit developed for interactive analyses of big biological data. Molecular Plant, 13, 1194–1202.
Chen S, Wang P, Kong W, Chai K, Zhang S, Yu J, Wang Y, Jiang M, Lei W, Chen X, Wang W, Gao Y, Qu S, Wang F, Wang Y, Zhang Q, Gu M, Fang K, Ma C, Sun W, et al. 2023. Gene mining and genomics-assisted breeding empowered by the pangenome of tea plant Camellia sinensis. Nature Plants, 9, 1986–1999.
Guo M, Pan Y M, Dai Y L, Gao Z M. 2014. First report of brown blight disease caused by colletotrichum gloeosporioides on Camellia sinensis in Anhui Province, China. Plant Disease, 98, 284.
Hassan O, Kim S, Kim K, Chang T. 2023. First report of leaf anthracnose caused by Colletotrichum camelliae on tea plants (Camellia sinensis) in South Korea. Plant Disease, 107, 2881.
Hill J T, Demarest B L, Bisgrove B W, Gorsi B, Su Y, Yost H J. 2013. MMAPPR: Mutation mapping analysis pipeline for pooled RNA-seq. Genome Research, 23, 687–697.
Huang R, Wang J, Yao M, Ma C, Chen L. 2022. Quantitative trait loci mapping for free amino acid content using an albino population and SNP markers provides insight into the genetic improvement of tea plants. Horticulture Research, 9, uhab029.
Ikeda N, Amma S. 2004. Diallel analysis of resistance to anthracnose in tea (Camellia sinensis). Breeding Research, 6, 135–141.
Jeyaraj A, Elango T, Chen X, Zhuang J, Wang Y, Li X. 2023. Advances in understanding the mechanism of resistance to anthracnose and induced defence response in tea plants. Molecular Plant Pathology, 24, 1330–1346.
Jin J, Qu F, Huang H, Liu Q, Wei M, Zhou Y, Huang K, Cui Z, Chen J, Dai W, Zhu L, Yao M, Zhang Z, Chen L. 2023. Characterization of two O-methyltransferases involved in the biosynthesis of O-methylated catechins in tea plant. Nature Communications, 14, 5075.
Kim D, Langmead B, Salzberg S L. 2015. HISAT: A fast spliced aligner with low memory requirements. Nature Methods, 12, 357–360.
Li H L, Zhou T L, Mao Y X, Huang H T, Cui H C, Zheng X X, Zhao Y. 2023. Isolation and identification of anthracnose pathogen from Xihu Longjing plantation and screening of its plant-derived fungicides. Journal of Tea Science, 43, 194–204. (in Chinese)
Liu Y, Chen S, Chen J, Wang J, Wei M, Tian X, Chen L, Ma J. 2023a. Comprehensive analysis and expression profiles of the AP2/ERF gene family during spring bud break in tea plant (Camellia sinensis). BMC Plant Biology, 23, 206.
Liu Y, Chen S, Jiang C, Liu H, Wang J, He W, Moon D, Chen J, Chen L, Ma J. 2023b. Combined QTL mapping, GWAS and transcriptomic analysis revealed a candidate gene associated with the timing of spring bud flush in tea plant (Camellia sinensis). Horticulture Research, 10, uhad149.
Lu M, Zhao Y, Feng Y, Tang X, Zhao W, Yu K, Pan Y, Wang Q, Cui J, Zhang M, Jin J, Wang J, Zhao M, Schwab W, Song C. 2012. 2,4-dihydroxybenzoic acid, a novel SA derivative, controls plant immunity via UGT95B17-Mediated glucosylation: A case study in Camellia sinensis. Advanced Science, 11, 2307051.
Lu Q, Wang Y, Li N, Ni D, Yang Y, Wang X. 2018. Differences in the characteristics and pathogenicity of Colletotrichum camelliae and C. fructicola isolated from the tea plant [Camellia sinensis (L.) O. Kuntze]. Frontiers in Microbiology, 9, 3060.
Lu X, Jiang W, Zhang L, Zhang F, Zhang F, Shen Q, Wang G, Tang K. 2013. AaERF1 positively regulates the resistance to Botrytis cinerea in Artemisia annua. PLoS ONE, 8, e57657.
Orrock J M, Rathinasabapathi B, Spakes Richter B. 2020. Anthracnose in U.S. tea: pathogen characterization and susceptibility among six tea accessions. Plant Disease, 104, 1055–1059.
Ristaino J B, Madritch M, Trout C L, Parra G. 1998. PCR amplification of ribosomal DNA for species identification in the plant pathogen genus Phytophthora. Applied and Environmental Microbiology, 64, 948–954.
Shi N N, Du Y X, Ruan H C, Yang X J, Dai Y L, Gan L, Chen F R. 2018. First report of Colletotrichum fructicola causing anthracnose on Camellia sinensis in Guangdong Province, China. Plant Disease, 102, 241.
Shi Y, Sheng Y, Cai Z, Yang R, Li Q, Li X, Li D, Guo X, Lu J, Ye J, Wang K, Zhang L, Liang Y, Zheng X. 2019. Involvement of salicylic acid in anthracnose infection in tea plants revealed by transcriptome profiling. International Journal of Molecular Sciences, 20, 2439.
Tan L, Wang L, Zhou B, Liu Q, Chen S, Sun D, Zou Y, Chen W, Li P, Tang Q. 2020. Comparative transcriptional analysis reveled genes related to short winter-dormancy regulation in Camellia sinensis. Plant Growth Regulation, 92, 401–415.
Taniguchi F, Katsuyuki Y, Tanaka K, Ogino A. 2010. Identification of quantitative trait loci for resistance to anthracnose in the tea cultivar ‘Minamisayaka’ using an SSR-based linkage map. In: Proceedings of the 4th International Conference on 0-CHA(tea) Culture and Science. Japan.
Wang J, Liu L, Tang Q, Sun K, Zeng L, Wu Z. 2021. Evaluation and selection of suitable qRT-PCR reference genes for light responses in tea plant (Camellia sinensis). Scientia Horticulturae, 289, 110488.
Wang L, Wang Y, Cao H, Hao X, Zeng J, Yang Y, Wang X. 2016. Transcriptome analysis of an anthracnose-resistant tea plant cultivar reveals genes associated with resistance to Colletotrichum camelliae. PLoS ONE, 11, e0148535.
Wang P, Yu J, Jin S, Chen S, Yue C, Wang W, Gao S, Cao H, Zheng Y, Gu M, Chen X, Sun Y, Guo Y, Yang J, Zhang X, Ye N. 2021. Genetic basis of high aroma and stress tolerance in the oolong tea cultivar genome. Horticulture Research, 8, 107.
Wang S, Liu L, Mi X, Zhao S, An Y, Xia X, Guo R, Wei C. 2021. Multi-omics analysis to visualize the dynamic roles of defense genes in the response of tea plants to gray blight. The Plant Journal, 106, 862–875.
Wang X, Feng H, Chang Y, Ma C, Wang L, Hao X, Li A l, Cheng H, Wang L, Cui P, Jin J, Wang X, Wei K, Ai C, Zhao S, Wu Z, Li Y, Liu B, Wang G D, Chen L, et al. 2020. Population sequencing enhances understanding of tea plant evolution. Nature Communications, 11, 4447.
Wang Y, Hao X, Lu Q, Wang L, Qian W, Li N, Ding C, Wang X, Yang Y. 2018. Transcriptional analysis and histochemistry reveal that hypersensitive cell death and H2O2 have crucial roles in the resistance of tea plant (Camellia sinensis (L.) O. Kuntze) to anthracnose. Horticulture Research, 5, 18.
Wang Y, Hao X, Wang L, Bin X, Wang X, Yang Y. 2016. Diverse colletotrichum species cause anthracnose of tea plants (Camellia sinensis (L.) O. Kuntze) in China. Scientific Reports, 6, 35287.
Wei K, Wang L, Zhang Y, Ruan L, Li H, Wu L, Xu L, Zhang C, Zhou X, Cheng H, Edwards R. 2019. A coupled role for CsMYB75 and CsGSTF1 in anthocyanin hyperaccumulation in purple tea. The Plant Journal, 97, 825–840.
Xia E, Zhang H, Sheng J, Li K, Zhang Q, Kim C, Zhang Y, Liu Y, Zhu T, Li W, Huang H, Tong Y, Nan H, Shi C, Shi C, Jiang J, Mao S, Jiao J, Zhang D, Zhao Y, et al. 2017. The tea tree genome provides insights into tea flavor and independent evolution of caffeine biosynthesis. Molecular Plant, 10, 866–877.
Xu L, Tan L, Wang L, Qi G, Cheng H, Wei K. 2016. QTL analysis for anthracnose resistance in tea plant (Camellia sinensis). Journal of Tea Science, 36, 432–439. (in Chinese)
Yoshida K, Ogino A, Yamada K, Sonoda R. 2010. Induction of disease resistance in tea (Camellia sinensis L.) by plant activators. Japan Agricultural Research Quarterly, 44, 391–398.
Yoshida K, Takeda Y. 2006. Evaluation of anthracnose resistance among tea genetic resources by wound-inoculation assay. Japan Agricultural Research Quarterly, 40, 379–386.
Zang Z, Lv Y, Liu S, Yang W, Ci J, Ren X, Wang Z, Wu H, Ma W, Jiang L, Yang W. 2020. A novel ERF transcription factor, ZmERF105, positively regulates maize resistance to Exserohilum turcicum. Frontiers in Plant Science, 11, 850.
Zhang C, Liu H, Wang J, Li Y, Liu D, Ye Y, Huang R, Li S, Chen L, Chen J, Yao M, Ma C. 2023. A key mutation in magnesium chelatase I subunit leads to a chlorophyll-deficient mutant of tea (Camellia sinensis). Journal of Experimental Botany, 75, 935–946.
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