Influence of genotypes and environmental factors on leaf triterpenoid content and growth of Cyclocarya paliurus
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S. Fang | B. Deng | Xiangxiang Fu | Wanxia Yang | X. Shang
[1] D. W. Nelson,et al. Total Carbon, Organic Carbon, and Organic Matter , 1983, SSSA Book Series.
[2] S. Fang,et al. Influence of provenance and shade on biomass production and triterpenoid accumulation in Cyclocarya paliurus , 2017, Agroforestry Systems.
[3] W. Yang,et al. Variation in growth, photosynthesis and water-soluble polysaccharide of Cyclocarya paliurus under different light regimes , 2017 .
[4] S. Fang,et al. Variation and stability of growth and leaf flavonoid content in Cyclocarya paliurus across environments , 2015 .
[5] Z. F. Wu,et al. Two triterpeniods from Cyclocarya paliurus (Batal) Iljinsk (Juglandaceae) promote glucose uptake in 3T3-L1 adipocytes: The relationship to AMPK activation. , 2015, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[6] Yafei Yan,et al. Influence of Tree Spacing on Soil Nitrogen Mineralization and Availability in Hybrid Poplar Plantations , 2015 .
[7] Yingjian Lu,et al. Effect of genotype, environment, and their interaction on phytochemical compositions and antioxidant properties of soft winter wheat flour. , 2013, Food chemistry.
[8] J. Radušienė,et al. Effect of External and Internal Factors on Secondary Metabolites Accumulation in St. John’s Worth , 2012 .
[9] D. Popovich,et al. Ganoderma lucidum triterpenoid extract induces apoptosis in human colon carcinoma cells (Caco-2) , 2012 .
[10] Fang Sheng-zuo. Chemical Constituents from the Aerial Parts of Cyclocarya paliurus , 2012 .
[11] H. Jaafar,et al. The Relationship of Nitrogen and C/N Ratio with Secondary Metabolites Levels and Antioxidant Activities in Three Varieties of Malaysian Kacip Fatimah (Labisia pumila Blume) , 2011, Molecules.
[12] S. Nie,et al. Isolation, chemical composition and antioxidant activities of a water-soluble polysaccharide from Cyclocarya paliurus (Batal.) Iljinskaja , 2010 .
[13] A. Krumbein,et al. Genotypic and climatic influences on the concentration and composition of flavonoids in kale (Brassica oleracea var. sabellica) , 2010 .
[14] Jia Li,et al. Phenolic compounds from the leaves of Cyclocarya paliurus (Batal.) Ijinskaja and their inhibitory activity against PTP1B , 2010 .
[15] M. Henry,et al. Influence of environmental abiotic factors on the content of saponins in plants , 2010, Phytochemistry Reviews.
[16] C. Cai,et al. Growth, photosynthesis and root reserpine concentrations of two Rauvolfia species in response to a light gradient. , 2009 .
[17] S. Rouhani,et al. ULTRASONIC ASSISTED EXTRACTION OF NATURAL PIGMENTS FROM RHIZOMES OF CURCUMA LONGA L. , 2009 .
[18] Wen Huang,et al. Optimised ultrasonic-assisted extraction of flavonoids from Folium eucommiae and evaluation of antioxidant activity in multi-test systems in vitro , 2009 .
[19] Emily D. Niemeyer,et al. Effects of nitrogen fertilization on the phenolic composition and antioxidant properties of basil (Ocimum basilicum L.). , 2008, Journal of agricultural and food chemistry.
[20] Wei‐Lie Xiao,et al. Compounds from Kadsura heteroclita and related anti-HIV activity. , 2008, Phytochemistry.
[21] S. Fang,et al. Methods to break seed dormancy in Cyclocarya paliurus (Batal)Iljinskaja , 2006 .
[22] Y. Ebizuka,et al. Dammarenediol‐II synthase, the first dedicated enzyme for ginsenoside biosynthesis, in Panax ginseng , 2006, FEBS letters.
[23] M. McIntosh,et al. Ginsenoside content and variation among and within American ginseng (Panax quinquefolius L.) populations. , 2006, Phytochemistry.
[24] Chaohong He,et al. Simultaneous quantification of three major bioactive triterpene acids in the leaves of Diospyros kaki by high-performance liquid chromatography method. , 2006, Journal of pharmaceutical and biomedical analysis.
[25] Xiao-ru Wang,et al. Determination of speciation of elements related to blood sugar in bioactive extracts from Cyclocarya paliurus leaves by FIA-ICP-MS , 2006 .
[26] D. Rhee,et al. Biological Activities and Chemistry of Saponins from Panax ginseng C. A. Meyer , 2005, Phytochemistry Reviews.
[27] J. van Staden,et al. Biological activities and distribution of plant saponins. , 2004, Journal of ethnopharmacology.
[28] Deok-Chun Yang,et al. Enhanced triterpene and phytosterol biosynthesis in Panax ginseng overexpressing squalene synthase gene. , 2004, Plant & cell physiology.
[29] M. Cipollini,et al. Effect of Nitrogen and Water Treatment on Leaf Chemistry in Horsenettle (Solanum carolinense), and Relationship to Herbivory by Flea Beetles (Epitrix spp.) and Tobacco Hornworm (Manduca sexta) , 2002, Journal of Chemical Ecology.
[30] N. Stamp. Out Of The Quagmire Of Plant Defense Hypotheses , 2003, The Quarterly Review of Biology.
[31] I. Graham,et al. The effect of nitrogen and phosphorus deficiency on flavonol accumulation in plant tissues , 2001 .
[32] C. Cruz,et al. Yield stability in maize (Zea mays L.) and correlations among the parameters of the Eberhart and Russell, Lin and Binns and Huehn models. , 2000 .
[33] D. Herms,et al. The Dilemma of Plants: To Grow or Defend , 1992, The Quarterly Review of Biology.
[34] D. W. Nelson,et al. Total Carbon, Organic Carbon, and Organic Matter 1 , 1982 .
[35] W. A. Russell,et al. Stability Parameters for Comparing Varieties , 1966 .