ヘビノネゴザ関連

  1. Hodoshima H., Shoji K., Gotoh F., et al., Iron deficiency response genes induced by cadmium - Difference of expression pattern between tobacco and Athyrium yokoscense, PLANT AND CELL PHYSIOLOGY, 46: S247-S247 Suppl. S 2005.
  2. Kamachi H., Komori I., Tamura H., et al., Lead tolerance and accumulation in the gametophytes of the fern Athyrium yokoscense, JOURNAL OF PLANT RESEARCH, 118 (2): 137-145 APR 2005.
  3. Yoshihara T., Tsunokawa K., Miyano Y., et al., Induction of callus from a metal hypertolerant fern, Athyrium yokoscense, and evaluation of its cadmium tolerance and accumulation capacity, PLANT CELL REPORTS, 23 (8): 579-585 JAN 2005.
  4. Komori I., Sawa Y., Kamachi H., et al., Heavy metal tolerance in the gametophytes of the fern Athyrium yokoscense, PLANT AND CELL PHYSIOLOGY, 45: S30-S30 Suppl. S 2004.
  5. Goto F., Arashima Y., Shimada H., et al., The expression analysis of phytochelatin synthase gene in Athyrium yokoscense, PLANT AND CELL PHYSIOLOGY, 45: S168-S168 Suppl. S 2004.
  6. Kubota H, Takenaka C., Arabis gemmifera is a hyperaccumulator of Cd and Zn, INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, 5 (3): 197-201 2003.
  7. Yoshihara T., Arashima Y., Masuda T., et al., Callus formation and the cadmium tolerance and accumulation capacity of a Japanese indigenous fern (Athyrium Yokoscense), PLANT AND CELL PHYSIOLOGY 44: S174-S174 Suppl. S 2003.
  8. Hiraga Y, Kurokawa M, Guo JR, et al., Ion-transport activity of phenylpentanoic acids occurring in the roots of Athyrium yokoscense, BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY 63 (5): 958-960 MAY 1999.
  9. Kurokawa M, Hirose T, Sugata Y, et al., 3-hydroxy-5,6-epoxy-beta-ionone as germination inhibitory active constituent in Athyrium yokoscense. NATURAL PRODUCT LETTERS 12 (1): 35-40 1998
  10. Hiraga Y, Kurokawa M, Maeda T, et al., Evidence for biosynthetic meta-hydroxylation of benzoic acid by means of isolation of only meta-functionalized phenylpentanoic acids from Athyrium yokoscense. NATURAL PRODUCT LETTERS 11 (3): 187-192 1998
  11. Ohta S, Guo JR, Hiraga Y, et al., 24-epi-pterosterone: A novel phytoecdysone from the roots of Athyrium yokoscense. PHYTOCHEMISTRY 41 (3): 745-747 FEB 1996
  12. MORISHITA T, BORATYNSKI JK., ACCUMULATION OF CADMIUM AND OTHER METALS IN ORGANS OF PLANTS GROWING AROUND METAL SMELTERS IN JAPAN. SOIL SCIENCE AND PLANT NUTRITION 38 (4): 781-785 DEC 1992
  13. SAKAI Y, FUKUOKA T, HONJO T., CHARACTERIZATION OF LEAD IN THE TISSUES OF HEAVY-METAL TOLERANT PLANT, ATHYRIUM-YOKOSCENSE (FR ET SAV) CHRIST. NIPPON KAGAKU KAISHI (5): 416-421 MAY 1991
  14. XIAN XF., RELATIONSHIP BETWEEN DISTRIBUTION OF CADMIUM IN ROOT-TISSUE AND CD-TOLERANCE OF ATHYRIUM-YOKOSCENSE. JOURNAL OF ENVIRONMENTAL SCIENCE AND HEALTH PART A-ENVIRONMENTAL SCIENCE AND ENGINEERING & TOXIC AND HAZARDOUS SUBSTANCE CONTROL 25 (6): 621-628 1990
  15. NISHIZONO H, WATANABE T, ORII T, et al., SUPPRESSION OF INHIBITORY EFFECTS OF COPPER ON ENZYMATIC-ACTIVITIES BY COPPER-BINDING SUBSTANCES FROM ATHYRIUM-YOKOSCENSE ASSAYED INVITRO, PLANT AND CELL PHYSIOLOGY 30 (4): 565-569 JUN 1989
  16. NISHIZONO H, MINEMURA H, SUZUKI S, et al., AN INDUCIBLE COPPER-THIOLATE COMPLEX IN THE FERN, ATHYRIUM-YOKOSCENSE - INVOLVEMENT IN COPPER-TOLERANCE OF THE FERN, PLANT AND CELL PHYSIOLOGY 29 (8): 1345-1351 DEC 1988
  17. NISHIZONO H, SUZUKI S, ISHII F., ACCUMULATION OF HEAVY-METALS IN THE METAL-TOLERANT FERN, ATHYRIUM-YOKOSCENSE, GROWING ON VARIOUS ENVIRONMENTS, PLANT AND SOIL 102 (1): 65-70 1987
  18. Nishizono H., Ichikawa H., Suzuki S., et al., The Role of The Root Cell-Wall In The Heavy-Metal Tolerance Of Athyrium-Yokoscense, PLANT AND SOIL 101 (1): 15-20, 1987.


鉱山跡に多数生えるヘビノネゴザの金属濃縮に関する論文(英文)。