Page 109 - Ivanova_TB08
P. 109

Wille, W., Thiele, J., Walker, E. A., Kollmann, J. 2013. Limited evidence for allelopathic effects of
              giant  hogweed  on  germination  of  native  herbs.  Seed  Sci.  Res.,  vol.  23(2),  р.  157–162.
              https://doi.org/10.1017/S096025851300007X
            World Plants: Synonymic сhecklists of the vascular plants of the world in the catalogue of life. 2017.
              The Catalogue of Life Partnership. Checklist Dataset https://doi.org/10.15468/7ppkhn
            WRA  Species  report.  2012.  Hawalian  ecosystems  at  risk  project  (HEAR):  Buxus  sempervirens
              (Buxaceae). http://www.hear.org/Pier/wra/pacific/Buxus%20sempervirens.pdf
            Wren, A.F., Cleary, M., Frantz, C., Melton, S., Norris, L. 2002. 90-day oral toxicity study of a grape
              seed extract (IH636) in rats. J.Agric.Food Chem.,  vol. 50(7), р. 2180–2192.
            Wróbel,  I.  2008.  Barszcz  Sosnowskiego  (Heracleum  sosnowskyi  Manden.)  w  Pieninach.  Pieniny  –
              Przyroda i Człowiek, vol. 10, р. 37–43.
            Yeung, Him-Che. 1985. Handbook of Chinese Herbs and Formulas. Institute of Chinese Medicine, Los
              Angeles. Publisher: Redwing Book Co; 2 edition. 431 p.
            Yilmaz,  Y.,  Toledo,  R.T.  2004.  Major  flavonoids  in  grape  seeds  and  skins:  antioxidant  capacity  of
              catechin, epicatechin, and gallic acid. J Agric Food Chem., vol. 52(2), р. 255–260.
            Yousaf, Z., Umer,, A., Younas, A., Khan, F., Wang, Y. 2012. Allelopathic Plants: 24. Genus Allium L.
              Allelopathy Journal., vol. 29 (1), р. 1–12.
            Zasada, J.C.; Little, S. 2008. Ailanthus altissima (P. Mill.)  Swingle: ailanthus. In: Bonner, Franklin T.,
              Karrfalt, Robert P., eds. Woody plant seed manual. Agric. Handbook No. 727. Washington, DC: U.S.
              Department of Agriculture, Forest Service, p. 224–226.
            Zhang, J., Qin, X.Y., Zhang, S.D., Xu, X.S., Pei, J.P., Fu, J.J. 2015. Chemical constituents of plants from
              the    genus     Buxus.    Review.     Chem     Biodivers.,   vol.   12(9),    р.    1289–306.
              http://dx.doi.org/10.1002/cbdv.201400185
            Zhang,  L.B.,  Ly,  J.L.,  Zhang,  H.  2013.  Geranyl  flavonoids  from  Robinia  pseudoacacia.  Nat.  Prod.
              Commun., vol. 8(3), р. 335–336.
            Zhang,  X.,  Thuong,  P.T.,  Jin,  W.,  Su,  N.D.,  Bae,  K.,  Kang,  S.S.  2005.  Antioxidant  activity  of
              anthraquinones and flavonoids from flower of Reynoutria sachalinensis. Arch. Pharm. Res., vol. 28(1),
              р. 22–27.
            Zhang, Z., Liao L., Moore, J., Wu, T., Wang, Z. 2009. Antioxidant phenolic compounds from walnut
              kernels    (Juglans    regia    L.).   Food     Chemistry,   vol.    113(1),    p.    160–166.
              http://dx.doi.org/10.1016/j.foodchem.2008.07.061
            Zhao,Y-L.,  Wang,  S-F.,  Li,  Y.,  He  Q-X.,  Liu  K-C.,  Yang  Y-P.,  Li  X-L.  2011.  Isolation  of  chemical
              constituents  from  the  aerial  parts  of  Verbascum  thapsus  and  their  antiangiogenic  and
              antiproliferative   activities.   Arch.   Pharm.    Res.,   vol.   34(5),   p.        703–707.
              http://dx.doi.org/10.1007/s12272-011-0501-9
            Zoubiri, S., Baaliouamer, A. 2014. Potentiality of plants as source of insecticide principles. Journal of
              Saudi Chemical Society, vol. 18(1), p. 925–938. https://doi.org/10.1016/j.jscs.2011.11.015































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