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Xingwen Zhou
Xingwen Zhou
Yulin Normal University
Biology
Camellia nitidissima
Biochemistry
Camellia
Botany
4
Papers
49
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Functional Diversification of the Dihydroflavonol 4-Reductase from Camellia nitidissima Chi. in the Control of Polyphenol Biosynthesis.
2020
Genes
Jiang LiNa
Zhengqi Fan
Ran Tong
Xingwen Zhou
Jiyuan Li
Hengfu Yin
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De novo Assembly of the Camellia nitidissima Transcriptome Reveals Key Genes of Flower Pigment Biosynthesis
2017
Frontiers in Plant Science
Xingwen Zhou
Jiyuan Li
Yulin Zhu
Sui Ni
Jinling Chen
Xiaojuan Feng
Yunfeng Zhang
Shuangquan Li
Hongguang Zhu
Yuanguang Wen
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Functional analyses of a flavonol synthase-like gene from Camellia nitidissima reveal its roles in flavonoid metabolism during floral pigmentation
2013
Journal of Biosciences
Xingwen Zhou
Zhengqi Fan
Yue Chen
Yu-Lin Zhu
Jiyuan Li
Hengfu Yin
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Citations (24)
The potential role of B-function gene involved in floral development for double flowers formation in Camellia changii Ye
2011
African Journal of Biotechnology
Gaopu Zhu
Jiyuan Li
Sui Ni
Zhengqi Fan
Hengfu Yin
Xinlei Li
Xingwen Zhou
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Citations (2)
1