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Xiaochun Wan
Researcher at Anhui Agricultural University
Publications - 406
Citations - 13740
Xiaochun Wan is an academic researcher from Anhui Agricultural University. The author has contributed to research in topics: Camellia sinensis & Medicine. The author has an hindex of 49, co-authored 350 publications receiving 8558 citations. Previous affiliations of Xiaochun Wan include University of Reading & Université de Montréal.
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Draft genome sequence of Camellia sinensis var. sinensis provides insights into the evolution of the tea genome and tea quality.
Chaoling Wei,Hua Yang,Songbo Wang,Jian Zhao,Chun Liu,Liping Gao,En-Hua Xia,Ying Lu,Yuling Tai,Guangbiao She,Jun Sun,Haisheng Cao,Wei Tong,Qiang Gao,Yeyun Li,Wei-Wei Deng,Xiaolan Jiang,Wenzhao Wang,Qi Chen,Shihua Zhang,Haijing Li,Junlan Wu,Ping Wang,Penghui Li,Chengying Shi,Fengya Zheng,Jianbo Jian,Bei Huang,Dai Shan,Mingming Shi,Congbing Fang,Yi Yue,Fangdong Li,Daxiang Li,Shu Wei,Bin Han,Chang-Jun Jiang,Ye Yin,Tao Xia,Zhengzhu Zhang,Jeffrey L. Bennetzen,Shancen Zhao,Xiaochun Wan +42 more
TL;DR: A high-quality genome assembly of Camellia sinensis var.
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COVID-19: immunopathogenesis and Immunotherapeutics.
TL;DR: The immunopathology of COVID-19 is discussed, its potential mechanisms, and clinical implications to aid the development of new therapeutic strategies against COIDs, which includes enhancing anti-viral immunity while inhibiting systemic inflammation.
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Deep sequencing of the Camellia sinensis transcriptome revealed candidate genes for major metabolic pathways of tea-specific compounds
Chengying Shi,Hua Yang,Chaoling Wei,Oliver Yu,Oliver Yu,Zhengzhu Zhang,Chang-Jun Jiang,Jun Sun,Yeyun Li,Qi Chen,Tao Xia,Xiaochun Wan +11 more
TL;DR: The coverage of the transcriptome is comprehensive enough to discover all known genes of several major metabolic pathways, and can serve as an important public information platform for gene expression, genomics, and functional genomic studies in C. sinensis.
Journal ArticleDOI
Applications of chitosan nanoparticles to enhance absorption and bioavailability of tea polyphenols: A review
TL;DR: The fabrication methods and potential benefits of chitosan nanoparticles as delivery systems for tea polyphenols for their enhanced absorption in the GI tract are described.
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Metabolic profiling of strawberry (Fragaria×ananassa Duch.) during fruit development and maturation
Juanjuan Zhang,Xin Wang,Oliver Yu,Oliver Yu,Juanjuan Tang,Xungang Gu,Xiaochun Wan,Congbing Fang +7 more
TL;DR: The results not only confirmed published metabolic data but also revealed new insights into strawberry fruit composition and metabolite changes, thus demonstrating the value of metabolomics as a functional genomics tool in characterizing the mechanism of fruit quality formation.