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收藏Trehalose-6-phosphate synthase gene CsTPS11 enhances cold hardiness in tea plants via modulating trehalose metabolism and CBF signaling pathway茶树海藻糖-6-磷酸合酶基因CsTPS11通过调控海藻糖代谢和CBF信号通路来增强茶树抗寒性
Wang, Yujie; Zheng, Yiqian; Shen, Xinbo; Lin, Jiahuang; Wang, Lu; Ding, Changqing; Ye, Meng; Huang, Jianyan; Hao, Xinyuan; Wang, Xinchao; Li, Nana
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收藏Integrated metabolomic, transcriptomic, and proteomic analyses reveal changes in the non-volatile metabolite profile of LED light-withered oolong tea整合代谢组学、转录组学和蛋白质组学分析揭示了LED光照萎凋乌龙茶非挥发性代谢物谱的变化
Li, Qiuming; Zheng, Yucheng; Lin, Hongzheng; Wu, Yongpeng; He, Jihang; Yu, Xinru; Ling, Mingxing; Li, Xiang; Lin, Jinke; Hao, Zhilong; Wang, Xinchao; Sun, Yun
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收藏Profiling flavor quality and chemical signatures of China's representative large-leaf congou black teas by sensory evaluation, metabolite profiling, quantification, and flavor supplementation validation通过感官评价、代谢物分析、定量分析和风味补充验证对中国代表性大叶工夫红茶的风味品质和化学特征进行表征
Zhang, Shan; Zhang, Qianting; Gan, Zijuan; Niu, Linchi; Chen, Le; Feng, Yuning; Zhou, Qinghua; Wang, Xinchao; Jiang, Yongwen; Yuan, Haibo; Deng, Yuliang; Li, Jia
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收藏A Novel Water-soluble Triphenylamine-based Fluorescent Probes for Real-time Monitoring of HSO3-/SO32- in Food Samples and Living Cells一种基于三苯胺的水溶性新型荧光探针,用于食品样品和活细胞中HSO₃⁻/SO₃²⁻的实时监测
Li, Xiujuan; Ma, Xinyuan; Chen, Zhaogang; Wang, Shoucheng; Liu, Fengjin; Ding, Jiancai; Jiang, Hao; Wu, Hang; Li, Xiufang; Wang, Xinchao
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收藏Analysis of the two-component system gene family and the positive role of CsRR5 in cold stress response in tea plants茶树中两-component系统基因家族的分析以及CsRR5在冷胁迫响应中的积极作用
Dong, Xiaobin; Ding, Changqing; Zhang, Xuening; Lei, Lei; Chen, Yao; Fu, Qianyuan; Yang, Ying; Hao, Yuwan; Ye, Meng; Zeng, Jianming; Wang, Xinchao; Qian, Wenjun; Huang, Jianyan
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收藏Hexokinase gene CsHXK4 positively regulates cold resistance in tea plants (Camellia sinensis)己糖激酶基因CsHXK4正向调节茶树的抗寒性 (Camellia sinensis)
Wang, Yujie; Zheng, Yiqian; Wang, Lu; Ye, Yufan; Shen, Xinbo; Hao, Xinyuan; Ding, Changqing; Yang, Yajun; Wang, Xinchao; Li, Nana
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收藏Integrated metabolomics and proteomics analyses reveal the molecular mechanism underlying the yellow leaf phenotype of Camellia sinensis
Li, Nana; He, Weizhong; Ye, Yufan; He, Mingn'Iing; Di, Tain'Iei; Hao, Xinyuan; Ding, Changqing; Yang, Yajun; Wang, Lu; Wang, Xinchao
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收藏CsCIPK20 Improves Tea Plant Cold Tolerance by Modulating Ascorbic Acid Synthesis Through Attenuation of CsCSN5-CsVTC1 InteractionCsCIPK20通过减弱CsCSN5-CsVTC1相互作用来调节抗坏血酸的合成,从而改善茶树的耐寒性
Di, Taimei; Wu, Yedie; Wang, Jie; He, Mingming; Huang, Jianyan; Li, Nana; Hao, Xinyuan; Ding, Changqing; Zeng, Jianming; Yang, Yajun; Wang, Xinchao; Wang, Lu
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