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2.       Si C, He C, Teixeira da Silva JA, Yu Z, Duan J. Metabolic accumulation and related synthetic genes of O-acetyl groups in mannan polysaccharides of Dendrobium officinale. Protoplasma, 2022, 259, 641-657.

3.       He C, Liu X, Teixeira da Silva JA, Wang H, Peng T, Zhang M, Si C, Yu Z, Tan J, Zhang J, Luo J, Duan J* (2021) Characterization of LEA genes in Dendrobium officinale and one Gene in induction of callus. Journal of Plant Physiology 258-259:153356

4.       Yu Z, Zhang G, Teixeira da Silva JA, Zhao C, Duan J*. The methyl jasmonate-responsive transcription factor DobHLH4 promotes DoTPS10, which is involved in linalool biosynthesis in Dendrobium officinale during floral development. Plant Sci. 2021, 309, 110952.

5.       Yu Z, Zhang G, Teixeira da Silva JA, Li M, Zhao C, He C, Si C, Zhang M, Duan J*. Genome-wide identification and analysis of DNA methyltransferase and demethylase gene families in Dendrobium officinale reveal their potential functions in polysaccharide accumulation. BMC Plant Bio. 2021, 21: 21.

6.       Yu Z, Dong W, Teixeira da Silva JA, He C, Si C, Duan J*. Ectopic expression of DoFLS1 from Dendrobium officinale enhances flavonol accumulation and abiotic stress tolerance in Arabidopsis thaliana. Protoplasma. 2021, 258, 803-815.

7.       Zeng D, Teixeira da Silva JA, Zhang M, Yu Z, Si C, Zhao C, Dai G, He C*, Duan J*. Genome-wide identification and analysis of the APETALA2 (AP2) transcription factor in Dendrobium officinale. Int. J. Mol. Sci. 2021, 22(10), 5221.

8.       Zhang M, Yu Z, Zeng D, Si C, Zhao C, Wang H, Li C, He C8, Duan J*. Transcriptome and metabolome reveal salt-stress responses of leaf tissues from Dendrobium officinale. Biomolecules. 2021, 11(5), 736.

9.       He C, Liu X, Teixeira da Silva JA, Liu N, Zhang M, Duan J* (2020) Transcriptome sequencing and metabolite profiling analyses provide comprehensive insight into molecular mechanisms of flower development in Dendrobium officinale (Orchidaceae). Plant Mol Biol 104 (4-5):529-548.

10.    Zhang M, Teixeira da Silva JA, Yu Z, Wang H, Si C, Zhao C, He C*, Duan J*. 2020. Identification of histone deacetylase genes in Dendrobium officinale and their expression profiles under phytohormone and abiotic stress treatments. PeerJ 8:e10482

11.    Si C, Teixeira da Silva JA, He C, Yu Z, Zhao C, Wang H, Zhang M, Duan J* (2020) DoRWA3 from Dendrobium officinale Plays an Essential Role in Acetylation of Polysaccharides. Int J Mol Sci 21 (17).

12.    Zhao C, Yu Z, Teixeira da Silva JA, He C, Wang H, Si C, Zhang M, Zeng D, Duan J* (2020) Functional Characterization of a Dendrobium officinale Geraniol Synthase DoGES1 Involved in Floral Scent Formation. Int J Mol Sci 21 (19).

13.    Yu Z, Zhao C, Zhang G, Teixeira da Silva JA, Duan J* (2020) Genome-Wide Identification and Expression Profile of TPS Gene Family in Dendrobium officinale and the Role of DoTPS10 in Linalool Biosynthesis. Int J Mol Sci 21 (15):5419

14.    He C, Si C, Teixeira da Silva JA, Li M, Duan J*. Genome-wide identification and classification of MIKC-type MADS-box genes in Streptophyte lineages and expression analyses to reveal their role in seed germination of orchid. BMC Plant Biology, 2019, 19: 223

15.    He C, Teixeira da Silva JA, Wang H, Si C, Zhang M, Zhang X, Li M, Tan J, Duan J*. Mining MYB transcription factors from the genomes of orchids (Phalaenopsis and Dendrobium) and characterization of an orchid R2R3-MYB gene involved in water-soluble polysaccharide biosynthesis. Scientific Reports, 2019, 9: 13818

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21.    Yu Z, He C, Teixeira da Silva JA, Luo J, Yang Z, Duan J*. The GDP-mannose transporter gene (DoGMT) from Dendrobium officinale is critical for mannan biosynthesis in plant growth and development. Plant Science 277 (2018) 43–54

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23.    Xie S, Liu B, Ye H, Li Q, Pan L, Zha X, Liu J, Duan J, Luo J. Dendrobium huoshanense polysaccharide regionally regulates intestinal mucosal barrier function and intestinal microbiota in mice. Carbohydrate Polymers, 2019, 206: 149-162.

24.    Li Q, Jiang H, Zha X, Wu D, Pan L, Duan J, Liu J, Luo J. Anti-inflammatory bibenzyls from the stems of Dendrobium huoshanense via bioassay guided isolation. Natural Product Research, 2018, 30: 1-4.

25.    Xie S, Ge J, Li F, Yang J, Pan L, Zha X, Li Q, Duan J, Luo J. Digestive behavior of Dendrobium huoshanense polysaccharides in the gastrointestinal tracts of mice. International Journal of Biological Macromolecules, 2018, 107: 825-832.

26.    Ge j, Zha X, Nie C, Yu N, Li Q, Peng D, Duan J, Pan L, Luo J. Polysaccharides from Dendrobium huoshanense stems alleviates lung inflammation in cigarette smoke-induced mice. Carbohydrate Polymers 189 (2018) 289–295

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