Physiological and chemical characteristics of field-and mountain-cultivated ginseng roots
暂无分享,去创建一个
Yong-Eui Choi | W. Park | M. Yi | Sangsup Han | Y. Kim | Sung Jae Lee | J. Yi | S. R. Chun | Yong‐Eui Choi
[1] E. Harada,et al. Roles of calcium and cadmium on Cd-containing intra-and extracellular formation of Ca crystals in tobacco , 2005, Journal of Plant Biology.
[2] H. Horner,et al. Calcium oxalate crystals in plants , 1980, The Botanical Review.
[3] Nicolas Geoffroy,et al. Trichomes of Tobacco Excrete Zinc as Zinc-Substituted Calcium Carbonate and Other Zinc-Containing Compounds1[W] , 2006, Plant Physiology.
[4] O. Urban. Physiological Impacts of Elevated CO2 Concentration Ranging from Molecular to Whole Plant Responses , 2003, Photosynthetica.
[5] E. Ploschuk,et al. Leaf area expansion and assimilate production in sunflower (Helianthus annuus L.) growing under low phosphorus conditions , 1998, Plant and Soil.
[6] D. Ward,et al. Gazelle Herbivory and Interpopulation Differences in Calcium Oxalate Content of Leaves of a Desert Lily , 1997, Journal of Chemical Ecology.
[7] R. Borchert,et al. Calcium acetate induces calcium uptake and formation of calcium-oxalate crystals in isolated leaflets of Gleditsia triacanthos L. , 1986, Planta.
[8] R. Borchert. Calcium-induced patterns of calcium-oxalate crystals in isolated leaflets of Gleditsia triacanthos L. and Albizia julibrissin Durazz , 1985, Planta.
[9] V. Franceschi,et al. Distribution of calcium oxalate crystals in the secondary phloem of conifers: a constitutive defense mechanism? , 2003, The New phytologist.
[10] B. Nihlgård,et al. Acidification-induced chemical changes in coniferous forest soils in southern Sweden 1988-1999. , 2003, Environmental pollution.
[11] C. Coleman,et al. The effects of Panax ginseng on quality of life , 2003, The Annals of pharmacotherapy.
[12] D. Ward,et al. Calcium oxalate crystals in leaves of Pancratiumsickenbergeri: constitutive or induced defence? , 2002 .
[13] S. Shibata. Chemistry and cancer preventing activities of ginseng saponins and some related triterpenoid compounds. , 2001, Journal of Korean medical science.
[14] B. Molano-Flores,et al. Herbivory and Calcium Concentrations Affect Calcium Oxalate Crystal Formation in Leaves ofSida (Malvaceae) , 2001 .
[15] M. Cox. THE LANCASTER SOIL TEST METHOD AS AN ALTERNATIVE TO THE MEHLICH 3 SOIL TEST METHOD1 , 2001 .
[16] E. Ernst,et al. The efficacy of ginseng. A systematic review of randomised clinical trials , 1999, European Journal of Clinical Pharmacology.
[17] E. Yeung. The use of histology in the study of plant tissue culture systems—Some practical comments , 1999, In Vitro Cellular & Developmental Biology - Plant.
[18] J. Quinton,et al. Phosphorus losses from arable land in England , 1998 .
[19] J. Ninomiya-Tsuji,et al. G1 phase-specific suppression of the Cdk2 activity by ginsenoside Rh2 in cultured murine cells. , 1996, Life sciences.
[20] N. Carpita,et al. The intravacuolar organic matrix associated with calcium oxalate crystals in leaves of Vitis , 1995 .
[21] P. Kriedemann,et al. Leaf growth and photosynthetic response to nitrogen and phosphorus in seedling trees of Gmelina arborea , 1993 .
[22] Andrew N. Sharpley,et al. The Transport of Bioavailable Phosphorus in Agricultural Runoff , 1992 .
[23] D. Lawlor,et al. Stomatal and Mesophyll Limitations of Photosynthesis in Phosphate Deficient Sunflower, Maize and Wheat Plants , 1991 .
[24] M. Kirschbaum,et al. Photosynthetic responses to phosphorus nutrition in Eucalyptus grandis seedlings , 1990 .
[25] I. Rao,et al. Leaf phosphate status, photosynthesis, and carbon partitioning in sugar beet: I. Changes in growth, gas exchange, and calvin cycle enzymes. , 1989, Plant physiology.
[26] H. Arnott. Three Systems of Biomineralization in Plants with Comments on the Associated Organic Matrix , 1982 .
[27] E. Frank. The formation of crystal idioblasts in Canavalia ensiformis DC. at different levels of calcium supply , 1972 .
[28] R. Huffaker,et al. Variation in Root Cation Exchange Capacity within Plant Species , 1959 .
[29] J. Medler,et al. Influence of Leafhoppers on the Yield and Chemical Composition of Alfalfa Hay 1 , 1959 .