Published April 21, 2014 | Version v1
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Diarylheptanoids and phenylphenalenones from Musa itinerans fruits

  • 1. Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, People's Republic of China

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Liu, Fang, Zhang, Yu, Sun, Qian-Yun, Yang, Fu-Mei, Gu, Wei, Yang, Jun, Niu, Hong-Mei, Wang, Yue-Hu, Long, Chun-Lin (2014): Diarylheptanoids and phenylphenalenones from Musa itinerans fruits. Phytochemistry 103: 171-177, DOI: 10.1016/j.phytochem.2014.03.031, URL: http://dx.doi.org/10.1016/j.phytochem.2014.03.031

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  • Ali, M.S., Tezuka, Y., Banskota, A.H., Kadota, S., 2001. Blepharocalyxins C-E, three new dimeric diarylheptanoids, and related compounds from the seeds of Alpinia blepharocalyx. J. Nat. Prod. 64, 491-496.
  • DellaGreca, M., Previtera, L., Zarrelli, A., 2008. Revised structures of phenylphenalene derivatives from Eichhornia crassipes. Tetrahedron Lett. 49, 3268-3272.
  • Dong, L.B., He, J., Li, X.Y., Wu, X.D., Deng, X., Xu, G., Peng, L.Y., Zhao, Y., Li, Y., Gong, X., Zhao, Q.S., 2011. Chemical constituents from the aerial parts of Musella lasiocarpa. Nat. Prod. Bioprospect. 1, 41-47.
  • Dora, G., Edwards, J., Campbell, W., 1990. Thyrsiflorin: a novel phenalenone pigment from Wachendorfia thyrsiflora. Planta Med. 56, 569.
  • Duque, L., Restrepo, C., Saez, J., Gil, J., Schneider, B., Otalvaro, F., 2010. Synthesis of musafluorone: a naphthoxanthenone isolated from Musa acuminata. Tetrahedron Lett. 51, 4640-4643.
  • Editorial Board of Zhonghua Bencao, 1999. State Administration of Traditional Chinese Medicine of the People's Republic of China, vol. 8. Shanghai Scientific and Technical Publishers, Shanghai, pp. 582-587.
  • Fang, J., Kai, M., Schneider, B., 2012a. Phytochemical profile of aerial parts and roots of Wachendorfia thyrsiflora L. studied by LC-DAD-SPE-NMR. Phytochemistry 81, 144-152.
  • Fang, J., Holscher, D., Schneider, B., 2012b. Co-occurrence of phenylphenalenones and flavonoids in Xiphidium caeruleum Aubl. flowers. Phytochemistry 82, 142-148.
  • Holscher, D., Schneider, B., 1997. Phenylphenalenones from root cultures of Anigozanthos preissii. Phytochemistry 45, 87-91.
  • Holscher, D., Schneider, B., 1998. Phenylphenalenones from Ensete ventricosum. Phytochemistry 49, 2155-2157.
  • Holscher, D., Schneider, B., 2000. Phenalenones from Strelitzia reginae. J. Nat. Prod. 63, 1027-1028.
  • Holscher, D., Schneider, B., 2005. The biosynthesis of 8-phenylphenalenones from Eichhornia crassipes involves a putative aryl migration step. Phytochemistry 66, 59-64.
  • Jang, D.S., Park, E.J., Hawthorne, M.E., Vigo, J.S., Graham, J.G., Cabieses, F., Santarsiero, B.D., Mesecar, A.D., Fong, H.H.S., Mehta, R.G., Pezzuto, J.M., Kinghorn, A.D., 2002. Constituents of MusaƗ paradisiaca cultivar with the potential to induce the phase II enzyme, quinone reductase. J. Agric. Food Chem. 50, 6330-6334.
  • Janssen, T., Bremer, K., 2004. The age of major monocot groups inferred from 800+ rbcL sequences. Bot. J. Linn. Soc. 146, 385-398.
  • Kamo, T., Hirai, N., Iwami, K., Fujioka, D., Ohigashi, H., 2001. New phenylphenalenones from banana fruit. Tetrahedron 57, 7649-7656.
  • Liu, A.Z., Li, D.Z., 2000. The identity of Musa wilsonii in Chinese botanical literature. Acta Bot. Yunnanica 23, 175-176.
  • Liu, A.Z., Li, D.Z., Li, X.W., 2002. Taxonomic notes on wild bananas (Musa) from China. Bot. Bull. Acad. Sin. 43, 77-81.
  • Luis, J.G., Echeverri, F., Quinones, W., Brito, I., Lopez, M., Torres, F., Cardona, G., Aguiar, Z., Pelaez, C., Rojas, M., 1993. Irenolone and emenolone: two new types of phytoalexin from Musa paradisiaca. J. Org. Chem. 58, 4306-4308.
  • Luis, J.G., Fletcher, W.Q., Echeverri, F., Abad, T., Kishi, M.P., Perales, A., 1995. New phenalenone-type phytoalexins from Musa acuminata (Colla AAA) Grand Nain. Nat. Prod. Lett. 6, 23-30.
  • Luis, J.G., Quinones, W., Echeverri, F., Grillo, T.A., Kishi, M.P., Garcia-Garcia, F., Torres, F., Cardona, G., 1996. Musanolones: four 9-phenylphenalenones from rhizomes of Musa acuminata. Phytochemistry 41, 753-757.
  • Mosmann, T., 1983. Rapid colorimetric assay for cellular growth and survival: application to proliferation and cyto-toxicity assays. J. Immunol. Methods 65, 55-63.
  • Munde, T., Brand, S., Hidalgo, W., Maddula, R.K., Svatos, A., Schneider, B., 2013. Biosynthesis of tetraoxygenated phenylphenalenones in Wachendorfia thyrsiflora. Phytochemistry 91, 165-176.
  • Ohtani, I., Kusumi, T., Kashman, Y., Kakisawa, H., 1991. High-field FT NMR application of Mosher method. The absolute configurations of marine terpenoids. J. Am. Chem. Soc. 113, 4092-4096.
  • Otalvaro, F., Nanclares, J., Vasquez, L.E., Quinones, W., Echeverri, F., Arango, R., Schneider, B., 2007. Phenalenone-type compounds from Musa acuminata var. ''Yangambi km 5''(AAA) and their activity against Mycosphaerella fijiensis. J. Nat. Prod. 70, 887-890.
  • Schmitt, B., Holscher, D., Schneider, B., 2000. Variability of phenylpropanoid precursors in the biosynthesis of phenylphenalenones in Anigozanthos preissii. Phytochemistry 53, 331-337.
  • Skehan, P., Storeng, R., Scudiero, D., Monks, A., Mcmahon, J., Vistica, D., Warren, J.T., Bokesch, H., Kenney, S., Boyd, M.R., 1990. New colorimetric cytotoxicity assay for anticancer-drug screening. J. Natl Cancer Inst. 82, 1107-1112.
  • Su, Y., Xu, J.J., Bi, J.L., Wang, Y.H., Hu, G.W., Yang, J., Yin, G.F., Long, C.L., 2013. Chemical constituents of Arisaema franchetianum tubers. J. Asian Nat. Prod. Res. 15, 71-77.
  • Tang, G.H., Chen, D.M., Qiu, B.Y., Sheng, L., Wang, Y.H., Hu, G.W., Zhao, F.W., Ma, L.J., Wang, H., Huang, Q.Q., Xu, J.J., Long, C.L., Li, J., 2011. Cytotoxic amide alkaloids from Piper boehmeriaefolium. J. Nat. Prod. 74, 45-49.
  • Tang, G.H., Zhang, Y., Gu, Y.C., Li, S.F., Di, Y.T., Wang, Y.H., Yang, C.X., Zuo, G.Y., Li, S.L., He, H.P., Hao, X.J., 2012. Trigoflavidols A-C, degraded diterpenoids with antimicrobial activity, from Trigonostemon flavidus. J. Nat. Prod. 75, 996-1000.
  • Urban, S., Timmers, M.A., Brkljaca, R., White, J.M., 2013. Phenylphenalenones and oxabenzochrysenones from the Australian plant Haemodorum simulans. Phytochemistry 95, 351-359.
  • Wu, D.L., Kress, W.J., 2000. Musaceae. In: Wu, Z.Y., Raven, P.H. (Eds.), Flora of China. Science Press/Missouri Botanical Garden Press, Beijing/St. Louis, pp. 314-318.
  • Xu, S.Y., Bian, R.L., Chen, X., 2002. Pharmacological Experiment Methodology. People's Medical Publishing House, Beijing, pp. 1647-1719.
  • Yang, W.L., Tian, J., Bai, B.R., Guan, J.F., Ding, L.S., 2001. Chemical constituents of Musella lasiocarpa. Zhong Cao Yao 32, 681-683.
  • Yang, J., Su, Y., Luo, J.F., Gu, W., Niu, H.M., Li, Y., Wang, Y.H., Long, C.L., 2013. New amide alkaloids from Piper longum fruits. Nat. Prod. Bioprospect. 3, 277-281.
  • Zhang, Q., Kang, W., 2010. Active compounds from rhizomes of Musa basjoo. China J. Chin. Mater. Med. 35, 2424-2427.
  • Zhao, F.W., Luo, M., Wang, Y.H., Li, M.L., Tang, G.H., Long, C.L., 2010. A piperidine alkaloid and limonoids from Arisaema decipiens, a traditional antitumor herb used by the Dong people. Arch. Pharm. Res. 33, 1735-1739.