Plant-environment interactions:: Accumulation of hypericin in dark glands of Hypericum perforatum

被引:107
作者
Zobayed, S. M. A. [1 ]
Afreen, F. [1 ]
Goto, E. [1 ]
Kozai, T. [1 ]
机构
[1] Chiba Univ, Fac Hort, Dept Bioprod Sci, Matsudo, Chiba 2718510, Japan
关键词
Emodin; dark gland; net photosynthesis; hypericin accumulation; hypericin synthesis;
D O I
10.1093/aob/mcl169
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
center dot Background and Aims Hypericum perforatum is a perennial herbaceous plant and an extract from this plant has a significant antidepressant effect when administered to humans. The plant is characterized by its secretory glands, also known as dark glands, which are mainly visible on leaves and flowers. The current study evaluates the influence of several environmental factors and developmental stages of the plant on the accumulation and synthesis of hypericin and pseudohypericin (Hy-G), the major bioactive constituents, in H. perforatum plants. center dot Methods The appearance of dark glands on different parts of the plant, under several environmental conditions, was monitored by microscopy. Hy-G concentrations were quantified by high-performance liquid chromatography. center dot Key Results A significant presence of dark glands accompanying the highest concentrations of Hy-G was observed in the stamen tissues more than in any other organ of H. perforatum. A linear relationship between the number of dark glands and net photosynthetic rate of the leaf and Hy-G concentration in the leaf tissue was also established. A very high concentration of Hy-G was measured in the dark-gland tissues, but in the tissues without any dark glands it was almost absent. The presence of emodin, a precursor of Hy-G, at a high concentration in the dark-gland tissues, and its absence in the surrounding tissues was also observed, suggesting that the site of biosynthesis of Hy-G is in the dark-gland cells. A significantly low concentration of Hy-G (occasionally non-detectable) was measured in the xylem sap of the stem tissues. The dark-gland tissues collected from leaves, stems or flowers contained similar concentrations of Hy-G. center dot Conclusions The concentration of Hy-G in various organs of H. perforatum plants is dependent on the number of dark glands, their size or area, not on the location of the dark glands on the plant. The study provides the first experimental evidence that Hy-G is synthesized and accumulates in dark glands.
引用
收藏
页码:793 / 804
页数:12
相关论文
共 19 条
[11]  
Miller A L, 1998, Altern Med Rev, V3, P18
[12]   Relationships between net photosynthetic rate and secondary metabolite contents in St. John's wort [J].
Mosaleeyanon, K ;
Zobayed, SMA ;
Afreen, F ;
Kozai, T .
PLANT SCIENCE, 2005, 169 (03) :523-531
[13]   LIPID BIOSYNTHESIS [J].
OHLROGGE, J ;
BROWSE, J .
PLANT CELL, 1995, 7 (07) :957-970
[14]   Ultrastructural studies on the developing secretory nodules of Hypericum perforatum [J].
Onelli, E ;
Rivetta, A ;
Giorgi, A ;
Bignami, M ;
Cocucci, M ;
Patrignani, G .
FLORA, 2002, 197 (02) :92-102
[16]   Production of St. John's wort plants under controlled environment for maximizing biomass and secondary metabolites [J].
Zobayed, S ;
Saxena, PK .
IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-PLANT, 2004, 40 (01) :108-114
[17]   Temperature stress can alter the photosynthetic efficiency and secondary metabolite concentrations in St. John's wort [J].
Zobayed, SMA ;
Afreen, F ;
Kozai, T .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2005, 43 (10-11) :977-984
[18]   Elevated carbon supply altered hypericin and hyperforin contents of St. John's wort (Hypericum perforatum) grown in bioreactors [J].
Zobayed, SMA ;
Murch, SJ ;
Rupasinghe, HPV ;
Saxena, PK .
PLANT CELL TISSUE AND ORGAN CULTURE, 2003, 75 (02) :143-149
[19]  
ZOBAYED SMA, 2006, IN PRESS ENV EXPT BO, V55