应用天然产物 ›› 2021, Vol. 11 ›› Issue (2): 185-205.DOI: 10.1007/s13659-020-00295-5
Ke Ye, Hong-Lian Ai, Ji-Kai Liu
收稿日期:
2020-11-13
修回日期:
2020-12-24
出版日期:
2021-04-24
发布日期:
2021-04-07
通讯作者:
Hong-Lian Ai
基金资助:
Ke Ye, Hong-Lian Ai, Ji-Kai Liu
Received:
2020-11-13
Revised:
2020-12-24
Online:
2021-04-24
Published:
2021-04-07
Contact:
Hong-Lian Ai
Supported by:
摘要: Tujia is a national minority, inhabiting in the mountainous Wuling area in China. Since 1978, Tujia medicine has been studied, summarized and developed, leading to numerous achievements by Chinese researchers, such as the publishing of approximately 30 monographs of Tujia medicine. These publications are focused on summarizing and improving the theory of Tujia medicine and developing clinical therapies from this system of medicine. The shortage of natural medicinal plants used in Tujia medicine has created the need to discover new resources to replace them and protect endangered natural plant species. Endophytic fungi are one of the conservation options, are considered a source of new bioactive natural products, and are a renewable and inexhaustible source of new drugs and agrochemicals. This review summarizes 260 compounds from endophytic fungi that have been previously isolated from the medicinal plants of Tujia. These compounds include steroids, terpenoids, meroterpenoids, polyketides, alkaloids, peptides, aliphatic compounds, aromatic compounds, and heterocyclic compounds.
Ke Ye, Hong-Lian Ai, Ji-Kai Liu. Identification and Bioactivities of Secondary Metabolites Derived from Endophytic Fungi Isolated from Ethnomedicinal Plants of Tujia in Hubei Province: A Review[J]. 应用天然产物, 2021, 11(2): 185-205.
Ke Ye, Hong-Lian Ai, Ji-Kai Liu. Identification and Bioactivities of Secondary Metabolites Derived from Endophytic Fungi Isolated from Ethnomedicinal Plants of Tujia in Hubei Province: A Review[J]. Natural Products and Bioprospecting, 2021, 11(2): 185-205.
1. C.W. Bacon, J.F. White, J.K. Stone, In Microbial Endophytes (Marcel Dekker, New York, 2000), pp. 3-29 2. A. Stierle, G. Strobel, D. Stierle, Science 260, 214-215 (1993) 3. H.W. Zhang, Y.C. Song, R.X. Tan, Nat. Prod. Rep. 23(5), 753-771 (2006) 4. R.X. Tan, W.X. Zou, Nat. Prod. Rep. 18(4), 448-459 (2001) 5. G.A. Strobel, Microbes Infect. 5(6), 535-544 (2003) 6. S.Y. Zhao. J, Mou. Y, Zhou. L, Mini-Rev. Med. Chem. 11, 159-168 (2011). 7. A.A.L. Gunatilaka, J. Nat. Prod. 2006(3), 509-526 (2006) 8. C.B. Wang, Z.Y. Guo, X.L. Huang, L. Huang, Appl. Plant. Sci. 4(5), 4 (2016) 9. P.X. Sun, C.J. Zheng, W.C. Li, G.L. Jin, F. Huang, L.P. Qin, J. Nat. Med. 65(2), 381-384 (2011) 10. P.X. Sun, Thesis. The Second Military Medical University, 2011. 11. C.J. Zheng, P.X. Sun, G.L. Jin, L.P. Qin, Fitoterapia 82(7), 1035-1038 (2011) 12. Z.Y. Kong, R. Jing, Y.B. Wu, Y. Guo, Y. Geng, J. Ji, L. Qin and C. Zheng, Fitoterapia, S0367326X18304027 (2018). 13. Z.Y. Kong, Thesis. The Second Military Medical University, 2018. 14. Y.M. Ma, C.C. Ma, T. Li, J. Wang, Nat. Prod. Res. 30(1), 79-84 (2016) 15. C.C. M. Ma, Y.M, Li, T., J. Wang, Guizhou Agric. Sci. 42(12), 152-156 (2014). 16. P.F. Wang, Y.M. Ma, G (Liu, Sciencepaper Online, 2013). 17. Q.P. Yang, X.L. Kou, K.B. Fugal, J.L. McLaughlin, Phytomedicine 10(2-3), 200-205 (2003) 18. J.S. Liu, Y.L. Zhu, Can. J. Chem. 64, 837-839 (1986) 19. J.S. Liu, C.M. Yu, Y.Z. Zhou, Y.Y. Han, F.W. Wu, B.F. Qi, Y.L. Zhu, Acta Chim. Sin. 44, 1035-1040 (1986) 20. A. Zangara, Pharmacol., Biochem. Behav. 75 (3), 675-686 (2003). 21. X.J. Yang, H.P. Guo, X. Gao, F. Gao, L. Wang, J. China Pharm. Univ. 37(5), 479-480 (2006) 22. D. Zhu, J. Wang, Q. Zeng, Z. Zhang, R. Yan, J. Appl. Microbiol. 109(4), 1469-1478 (2010) 23. X.M. Zhao, Z.Q. Wang, S.H. Shu, W.J. Wang, H.J. Xu, Y.J. Ahn, M. Wang, X. Hu, PLoS ONE 8(4), e61777 (2013) 24. S.F. Xu, X.Y. Li, F.Y. Chen, Y.P. Ye, Chin. Archiv. Trad. Chin. Med. 30(8), 1780-1783 (2012) 25. H.Q. Zhang, T. Zhang, X.Z. Zhang, W.J. Xu, H.D. Li, P. Li, P. Zhang, F.J. Song, Nat. Prod. Res. Dev. 30, 2133-2137 (2018) 26. W.G. Shan, Y.M. Ying, H.N. Yu, W.H. Liu, Z.J. Zhan, Helv. Chim. Acta. 93, 772-776 (2010) 27. W.G. Shan, D.E. Liang, Y.M. Ying, Z.J. Zhan, J. Chem. Res. 36(6), 365-366 (2012) 28. B.W. Qi, X. Liu, T. Mo, Z.X. Zhu, J. Li, J. Wang, X.P. Shi, K.W. Zeng, X.H. Wang, P.F. Tu, I. Abe, S.P. Shi, J. Nat. Prod. 80(10), 2699-2707 (2017) 29. J.M. Gao, S.X. Yang, J.C. Qin, Chem. Rev. 113(7), 4755-4811 (2013) 30. F.X. Yu, Y. Chen, Y.H. Yang, P.J. Zhao, Phytochem. Lett. 16, 263-267 (2016) 31. F.X. Yu, Y.H. Yang, P.J. Zhao, Y. Chen, Guihaia. 36(9), 1112-1118 (2016) 32. Y.M. Ying, Z.J. Zhan, Z.S. Ding, W.G. Shan, Chem. Nat. Compd. 47(4), 541-544 (2011) 33. Y. Wu, Y. Luo, B.W. Qi, F.F. Jia, T. Mo, F.F. Jiang, H.Y. Yang, N. Ding, X. Zhang, X. Liu, P.F. Tu, S.P. Shi, Chin. Trad. Herb. Drugs. 50(3), 546-550 (2019) 34. Z.J. Zhan, J.P. Jin, Y.M. Ying, W.G. Shan, Helv. Chim. Acta. 94(8), 1454-1458 (2011) 35. M.Y. Ying, L.W. Zhang, W.G. Shan, Z.J. Zhan, Chem. Nat. Compd. 50(4), 723-725 (2014) 36. X. Zhang, B.W. Qi, H.Y. Yang, F.F. Jiang, N. Ding, Y. Wu, X. Liu, P.F. Tu, S.P. Shi, Chin. Tradit. Herb. Drugs. 49(11), 2496-2501 (2018) 37. R.M. Yan, X.X. Li, Y. Wang, J.Q. Yu, Z.B. Zhang, D. Zhu, Nat. Prod. Res. Dev. 26, 1393-1397 (2014) 38. Z.W. Tong, H.L. Liang, Z.B. Zhang, Y. Wang, R.M. Yan, D. Zhu, Nat. Prod. Res. Dev. 30, 1371-1375 (2018) 39. Y.M. Chen, Y.H. Yang, P.J. Zhang, C. Zou, Guihaia. 35(4), 574-579 (2015) 40. R.X. Chen, X.Y. He, J. Chen, T.Z. Gu, P.C. Liu, T. Xu, S.A. Teale, D.J. Hao, J. Plant Growth Reg. 38(3), 897-908 (2018) 41. H.Q. Fang, Thesis. Xiamen University, 2012. 42. W.M. Jiang, L.X. Chen, Q. Pan, Y.X. Qiu, Y.Y. Shen, C.X. Fu, Acta Physiol. Plant. 34(2), 631-639 (2012) 43. J.W. Li, R.G. Duan, J.H. Zou, R.D. Chen, X.G. Chen, J.G. Dai, Acta Chim. Sin. 49(6), 913-920 (2014) 44. Z.G. Lv, Thesis. Ocean University of China, 2011. 45. W.G. Li, R.R. Xu, X.G. Yan, D.M. Liang, L. Zhang, X.Y. Qin, Q. Caiyin, G.R. Zhao, W.H. Xiao, Z.N. Hu, J.J. Qiao, BMC Genomics. 20(1), 7 (2019) 46. Y. Qian, Thesis. Northwest Agric. & Forest University, 2006. 47. J.W. Zhang, C.P. Yang, Z.Q. Ji, S.P. Wei, W.J. Wu, Chin. J. Pestic. Sci. 11(2), 225-229 (2009) 48. Z.Q. Ji, W.J. Wu, M.A. Wang and A.G. Gu, J. Northwest Argric & Forest Univ. (Nat. Sci. Ed). 33 (5), 61-64 (2005). 49. B. Monacelli, A. Valletta, N. Rascio, I. Moro, G. Pasqua, Protoplasma. 226(3-4), 155-161 (2005) 50. S. Kusari, S. Zuehlke, M. Spiteller, J. Nat. Prod. 72(1), 2-7 (2009) 51. K.H. Liu, X.W. Ding, B.W. Deng, W.Q. Chen, Biotechnol. Lett. 32(5), 689-693 (2010) 52. C.L. Min and X.J. Wang, Acta.Bot.Boreal.-Occident.Sin. 29 (3), 614-617 (2009). 53. C.L. Min, Thesis. Shanghai Normal University, 2009. 54. X. Li, J.J. Liu, J.H. Chen, M.B. Luan, Z.Z. Yin, D.L. Yang, China Biotechnol. 31(7), 60-64 (2011) 55. J.J. Cao, J.C. Kang, Hubei. Agri. Sci. 53(2), 565-568 (2014) 56. X. Pu, G.Z. Li, Q. Xiao, J.H. Yi, Y.Q. Tian, G.L. Zhang, L.X. Zhao, Y.G. Luo, Chin. J. App. Envir. Biol. 19(5), 787-793 (2013) 57. Q.F. Tan, X.F. Yan, X. Lin, Y.J. Huang, Z.H. Zheng, S.Y. Song, C.H. Lu, Y.M. Shen, Helv. Chim. Acta. 90, 1811-1817 (2007) 58. L. Yuan, X. Lin, P.J. Zhao, J. Ma, Y.J. Huang, Y.M. Shen, Helv. Chim. Acta. 92, 1184-1190 (2009) 59. T. Lin, X. Lin, C.H. Lu, Z.Y. Hu, W.Y. Huang, Y.J. Huang, Y.M. Shen, Eur. J. Org. Chem. 2009(18), 2975-2982 (2009) 60. T. Lin, G.H. Wang, X. Lin, Z.Y. Hu, Q.C. Chen, Y. Xu, X.K. Zhang, H.F. Chen, Molecules 16(4), 3351-3359 (2011) 61. Y.Z. Liu, Z.Y. Hu, Z.H. Zheng and W.J. Su, J. Xiamen.Univ(Nat. Sci). 52 (1), 127-132 (2013). 62. Y.Z. Wen, Y.B. Lv, J. Hao, H. Chen, Y. Huang, C. Liu, H.Q. Huang, Y.R. Ma, X.Z. Yang, Nat. Prod. Res. 34(13), 1879-1883 (2019) 63. Z. Shi, L. Yuan, X. Lin, P.J. Zhao, Helv. Chim. Acta. 41(10), 1184-1190 (2016) 64. D.W. Deng, D.R. Lauren, J.M. Cooney, D.J. Jensen, K.V. Wurms, J.E. Upritchard, R.D. Cannon, M.Z. Wang, M.Z. Li, Planta Med. 74(11), 1397-1402 (2008) 65. Y.H. Liu, X. Yang, J.L. Li, Z.Y. Guo, Z.S. Deng, T. Xuan., J. F. Chen and K. Zou, Nat. Prod. Res. Dev. 25, 431-434, 439 (2013). 66. X.S. Li, M.H. Tan, M.M. Lv, L.W. Lu, Z.Y. Guo, Z.S. Deng, X. Tu, Chem. Res. Appl. 28(10), 1456-1459 (2016) 67. Y.H. Liu, Z.W. Feng, L. Wei., Z.Y. Guo, Z.S. Deng, X. Tu, J.F. Chen and K. Zou, Nat. Prod. Res. Dev. 25, 585-589 (2013). 68. Y.B. Ji, T.Y. Wu, Sci. Tech. Innov. 28, 81 (2017) 69. Q.J. Huang, M. Wu, Y.Y. Huang, M.C. Liao, G Z. Yang, Q.X. Lin and X.Z. Yang, J. Cent. China Norm. Univ., Nat. Sci. 50(6), 880-885 (2016). 70. F. Huang, Thesis. East China Normal University, 2011. 71. X.J. Zhang, L.L. Tang, Y.D. Wang, Prog. Mod. Biomed. 7(3), 358-360 (2007) 72. O.C. Gomez, J.H.H. Luiz, Appl. Microbiol. Biotechnol. 102(21), 9105-9119 (2018) 73. Y.H. Tian and L. Tian, J. Med. Phar. Chin. Minor. 23(11), 1-2,15 (2017). |
[1] | Olusesan Ojo, Idris Njanje, Dele Abdissa, Tarryn Swart, Roxanne L. Higgitt, Rosemary A. Dorrington. Newly isolated terpenoids (covering 2019-2024) from Aspergillus species and their potential for the discovery of novel antimicrobials[J]. 应用天然产物, 2025, 15(2): 19-19. |
[2] | Ismail Ware, Katrin Franke, Andrej Frolov, Kseniia Bureiko, Elana Kysil, Maizatulakmal Yahayu, Hesham Ali El Enshasy, Ludger A. Wessjohann. Comparative metabolite analysis of Piper sarmentosum organs approached by LC-MS-based metabolic profiling[J]. 应用天然产物, 2024, 14(4): 30-30. |
[3] | Weiwei Peng, Qi Huang, Xin Ke, Wenxuan Wang, Yan Chen, Zihuan Sang, Chen Chen, Siyu Qin, Yuting Zheng, Haibo Tan, Zhenxing Zou. Koningipyridines A and B, two nitrogen-containing polyketides from the fungus Trichoderma koningiopsis SC-5[J]. 应用天然产物, 2024, 14(1): 8-8. |
[4] | Kritika Jalota, Vikas Sharma, Chiti Agarwal, Suruchi Jindal. Eco-friendly approaches to phytochemical production: elicitation and beyond[J]. 应用天然产物, 2024, 14(1): 5-5. |
[5] | Li Wu, Ning Yang, Meng Guo, Didi Zhang, Reza A. Ghiladi, Hasan Bayram, Jun Wang. The role of sound stimulation in production of plant secondary metabolites[J]. 应用天然产物, 2023, 13(6): 40-40. |
[6] | Fengli Li, Saisai Gu, Sitian Zhang, Shuyuan Mo, Jieru Guo, Zhengxi Hu, Yonghui Zhang. Three new amide derivatives from the fungus Alternaria brassicicola[J]. 应用天然产物, 2023, 13(4): 28-28. |
[7] | Mei-Ling Xiang, Bin-Yuan Hu, Zi-Heng Qi, Xiao-Na Wang, Tian-Zhen Xie, Zhao-Jie Wang, Dan-Yu Ma, Qi Zeng, Xiao-Dong Luo. Chemistry and bioactivities of natural steroidal alkaloids[J]. 应用天然产物, 2022, 12(4): 23-23. |
[8] | Lin Wang, Junke Song, Ailin Liu, Bin Xiao, Sha Li, Zhang Wen, Yang Lu, Guanhua Du. Research Progress of the Antiviral Bioactivities of Natural Flavonoids[J]. 应用天然产物, 2020, 10(5): 271-283. |
[9] | Hai-Li Yu, Qin Long, Wen-Fang Yi, Bao-Jia Yang, Yu Song, Xiao Ding, Shun-Lin Li, Xiao-Jiang Hao. Two New C21 Steroidal Glycosides from the Roots of Cynanchum paniculatum[J]. 应用天然产物, 2019, 9(3): 209-214. |
[10] | Xu-Jie Qin, Wei Ni, Chang-Xiang Chen, Hai-Yang Liu. Untiring Researches for Alternative Resources of Rhizoma Paridis[J]. 应用天然产物, 2018, 8(4): 265-278. |
[11] | Rong Chen, Jian-Wei Tang, Xing-Ren Li, Miao Liu, Wen-Ping Ding, Yuan-Fei Zhou, Wei-Guang Wang, Xue Du, Han-Dong Sun, Pema-Tenzin Puno. Secondary Metabolites from the Endophytic Fungus Xylaria sp. Hg1009[J]. 应用天然产物, 2018, 8(2): 121-129. |
[12] | Ce Kuang, Shu-Xi Jing, Yan Liu, Shi-Hong Luo, Sheng-Hong Li. Drimane Sesquiterpenoids and Isochromone Derivative from the Endophytic Fungus Pestalotiopsis sp. M-23[J]. 应用天然产物, 2016, 6(3): 155-160. |
[13] | Ming-Ming Zhai, Jie Li, Chun-Xiao Jiang, Yan-Ping Shi, Duo-Long Di, Phillip Crews, Quan-Xiang Wu. The Bioactive Secondary Metabolites from Talaromyces species[J]. 应用天然产物, 2016, 6(1): 1-24. |
[14] | Xu-Jie Qin, Yun-Li Zhao, Chang-Wei Song, Bei Wang, Ying-Ying Chen, Lu Liu, Qiong Li, Dan Li, Ya-Ping Liu, Xiao-Dong Luo. Monoterpenoid Indole Alkaloids from Inadequately Dried Leaves of Alstonia scholaris[J]. 应用天然产物, 2015, 5(4): 185-193. |
[15] | Frank Surup, Eric Kuhnert, Elena Liscinskij, Marc Stadler. Silphiperfolene-Type Terpenoids and Other Metabolites from Cultures of the Tropical Ascomycete Hypoxylon rickii(Xylariaceae)[J]. 应用天然产物, 2015, 5(3): 167-173. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||