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Research Article

Growth-inhibitory components in Sugi (Cryptomeria japonica) extracts active against Microcystis aeruginosa

, , , & | (Reviewing editor)
Article: 1466401 | Received 28 Nov 2017, Accepted 15 Apr 2018, Published online: 21 Jun 2018

References

  • Adams, R. P. (2012). Identification of essential oil components by gas chromatography/mass spectrometry (4th ed.). Carol Stream, IL: Alluredbooks.
  • Ashitani, T., Ujike, M., Nagahama, S., Ueno, T., & Sakai, K. (2001). Characterization of sugi (Cryptomeria japonica) bark extracts. Mokuzai Gakkaishi, 47, 276–281.
  • Ball, S. A., Williams, M., Vincent, D., & Robinson, J. (2000). Algal growth control by a barley straw extract. Bioresource Technology, 77, 177–181. doi:10.1016/S0960-8524(00)00148-6
  • Broadhurst, B. R., & Jones, T. W. (1978). Analysis of condensed tannins using acidified vanillin. Journal of the Science of Food and Agriculture, 29, 788–794. doi:10.1002/jsfa.2740290908
  • Cheng, S. S., Chua, M. T., Chang, E. H., Huang, C. G., Chen, W. J., & Chang, S. T. (2009). Variations in insecticidal activity and chemical compositions of leaf essential oils from Cryptomeria japonica at different ages. Bioresource Technology, 100, 465–470. doi:10.1016/j.biortech.2007.11.060
  • Jancula, D., & Marsalek, B. (2011). Critical review of actually available chemical compounds for prevention and management of cyanobacterial blooms. Chemosphere, 85, 1415–1422. doi:10.1016/j.chemosphere.2011.08.036
  • Kessler, C. T. (1988). Effect of juglone on freshwater algal growth. Journal of Chemical Ecology, 15, 2127–2134. doi:10.1007/BF01207443
  • Kofujita, H., Fujino, Y., Ota, M., & Takahashi, K. (2006). Antifungal diterpenes from the bark of Cryptomeria japonica D. Don. Holzforschung, 60, 20–23.
  • Libertad, G. V., Marcos, R., Marıa, A., Laura, S. M., Victoria, L. R., & Eduardo, C. (2004). Occurrence of copper resistant mutants in the toxic cyanobacteria Microcystis aeruginosa: Characterisation and future implications in the use of copper sulphate as algaecide. Water Research, 38, 2207–2213. doi:10.1016/j.watres.2004.01.036
  • Matsushita, Y., Sugamoto, K., Miyakubo, K., Kurogi, C., Matsui, T., Oda, H., & Fujimoto, H. (2008). Chemical changes in terpenes of sugi (Cryptomeria japonica) woos during steam drying in kiln at high temperature. Journal of Wood Science, 54, 476–482. doi:10.1007/s10086-008-0980-6
  • Mecina, G. F., Dokkedal, A. L., Saldanha, L. L., Chia, M. A., Cordeiro-Araujo, M. K., Bittencourt-Oliveira, M. C., & Silva, R. M. G. (2017). Response of Microcystis aeruginosa BCCUSP 232 to barley (Hordeum vulgare L.) straw degradation extract and fractions. Science of the Total Environment, 599–600, 1837–1847. doi:10.1016/j.scitotenv.2017.05156
  • Nakai, S., Inoue, Y., Hosomi, M., & Murakami, A. (2000). Myriophyllum spicatum-released allelopathic polyphenols inhibiting growth of blue-green algae Microcystis aeruginosa. Water Research, 34, 3026–3032. doi:10.1016/S0043-1354(00)00039-7
  • Nakai, S., Inoue, Y., Lee, B. D., & Hosomi, M. (2002). Inhibitory effects of plant-produced phenols on algal growth. Japanese Journal of Limnology, 63, 201–207. doi:10.3739/rikusui.63.201
  • Paerl, H. W., & Huisman, J. (2008). Blooms like it hot. Science, 320, 57–58. doi:10.1126/science.1155398
  • Park, M. H., Han, M. S., Ahn, C. Y., Kim, H. S., Yoon, B. D., & Oh, H. M. (2006). Growth inhibition of bloom- forming cyanobacterium Microcystis aeruginosa by rice straw extract. Journal Compilation, 43, 307–312.
  • Rezvukhin, A. I., Khan, V. A., & Dubovenko, Z. V. (1975). NMR-13C specteoscopy of natural compounds. Communication 1. Investigation of the conformation of the sesquiterpene alcohol δ-cadinol. Russian Chemical Bulletin, 24(6), 1208–1211. doi:10.1007/BF00922047
  • Saijo, H., Kofujita, H., Takahashi, K., & Ashitani, T. (2015). Antioxidant activity and mechanism of the abietane-type diterpene ferruginol. Natural Product Research, 29(18), 1739–1743. doi:10.1080/14786419.2014.997233
  • Saijo, H., Tsuruta, K., Kusumoto, N., Ashitani, T., & Takahashi, K. (2013). Growth inhibition activities of Sugi bark components against Heterosigma akashiwo. Journal of Wood Science, 59(3), 238–242. doi:10.1007/s10086-013-1328-4
  • Samejima, M., & Yoshimoto, T. (1979). The chemical structures of proanthocyanidins from coniferous bark. Bulletin University Tokyo Forest, 71, 153–175.
  • Shirai, M. (1996). Toxicity of natural blooms and Mycrocystis species. Mycrotox, 42, 3–5. doi:10.2520/myco1975.1996.3
  • Sugimoto, N., Kuroyanagi, M., Kato, T., Sato, K., Tada, A., Yamazaki, T., & Tanamoto, K. (2006). Indentification of the main constisuents in sandarac resin, a natural gum base. Journal of the Food Hygienic Society of Japan, 47(2), 76–79. doi:10.3358/shokueishi.47.76
  • Tsuruta, K., Yoshida, Y., Kusumoto, N., Sekine, N., Ashitani, T., & Takahashi, K. (2011). Inhibition activity of essential oils obtained from Japanese trees against Skeletonema costatum. Journal of Wood Science, 57, 520–525. doi:10.1007/s10086-011-1209-7
  • Wang, J., Zhu, J., Liu, S., Liu, B., Gao, Y., & Wu, Z. (2011). Generation of reactive oxygen species in cyanobacteria and green algae induced by allelochemicals of submerged macrophytes. Chemosphere, 85, 977–982. doi:10.1016/j.chemosphere.2011.06.076
  • Wang, N., Wang, K., & Wang, C. (2017). Comparison of different algicides on growth of Microcystis aeruginosa and microcystin release, as well as its removal pathway in riverways. Frontiers of Environmental Science & Engineering, 11, 1–8. doi:10.1007/s11783-017-0963-1
  • Watanabe, M., & Oishi, S. (1985). Effects of environmental factors on toxicity of cyanobacterium (Microcystis aeruginosa) under culture conditions. Applications of Environmental Microbiology, 49(5), 1342–1344.
  • Weyerstahl, P., Marschall, H., Thefld, K. C., & Subba, C. G. (1998). Constituents of the essential oil from the rhizomes of Hedychium gardnerianum Roscoe. Flavour Fragr Journal, 13, 377–388. doi:10.1002/(SICI)1099-1026(199811/12)13:6<377::AID-FFJ755>3.0.CO;2-F
  • Yamashita, Y., Hashimoto, N., Kusumoto, N., Saijo, H., Goto, I., Kobayashi, H., … Ashitani, T. (2015). Acaricidal activity of components of Cryptomeria japonica against spider mites. Journal of Wood Science, 61, 60–64. doi:10.1007/s10086-014-1445-8
  • Yin, A. Q., Lee, H. W., Watanabe, K., Nakamura, K., Park, H. D., & Ban, S. (2010). Inhibitory effects of Acacia extract on growth of blue-green algae Microcystis spp. Bulletin Plankton Social Japanese, 57(2), 73–78.
  • Zamir, B. A., Otaki, M., Furumai, H., & Ohgaki, S. (2001). Direct and indirect inactivation of Microcystis aeruginosa by UV-radiation. Water Research, 35, 1008–1014.
  • Zang, C., Yi, Y. L., Hao, K., Liu, G. L., & Wang, G. X. (2013). Algicidal activity of salvia miltiorrhiza Bung on Microcystis aeruginosa-Towards identification of algicidal substance and determination of inhibition mechanism. Chemosphere, 93, 997–1004. doi:10.1016/j.chemosphere.2013.05.068
  • Zhu, Q., Ishikawa, H., Ohnuki, K., Kakino, K., Horiuchi, N., Naito, T., … Shimizu, K. (2016). Multiple uses of essential oil and by-products from various parts of the yakushima native cedar (Cryptomeria Japonica). Journal of Wood Chemistry and Technology, 36(1), 42–55. doi:10.1080/02773813.2015.1057648