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Kiridine, A C18-Diterpene Alkaloid from Aconitum kirinense
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作者 冯锋 叶文才 +3 位作者 刘静涵 赵守训 ian d. williams 车镇涛 《Journal of Chinese Pharmaceutical Sciences》 CAS 2000年第4期167-169,共3页
Kiridine, a new C18-diterpenoid alkaloid, was isolated from the roots of Aconitum kirinense. Its structure was elucidated by MS, 1D- and 2D- NMR, and mono-crystal X-ray analysis. It is the first norditerpene alkaloid ... Kiridine, a new C18-diterpenoid alkaloid, was isolated from the roots of Aconitum kirinense. Its structure was elucidated by MS, 1D- and 2D- NMR, and mono-crystal X-ray analysis. It is the first norditerpene alkaloid containing a 9,14-methylenedioxy group and the substituent at C-14 is (-configuration. 展开更多
关键词 Aconitum kirinense RANUNCULACEAE Diterpene alkaloids KiridiP
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Phytoaccumulation of Arsenic, Cadmium and Lead by Brassica juncea Parents and Their F1 Hybrids
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作者 Moupia Rahman Nazmul Haq ian d. williams 《Journal of Environmental Protection》 2016年第5期613-622,共10页
Although Brassica juncea (Indian mustard) is reported to be a good accumulator of metals, little is known of the selected varieties of B. juncea (cvs. Rai and BARI-11). This paper investigates the phytoaccumulation of... Although Brassica juncea (Indian mustard) is reported to be a good accumulator of metals, little is known of the selected varieties of B. juncea (cvs. Rai and BARI-11). This paper investigates the phytoaccumulation of arsenic, cadmium and lead by B. juncea (cvs. Rai and BARI-11) parents and F1 hybrids. The experiment was conducted in the hydroponic media in the greenhouse of University of Southampton under a Randomised Block Design. Sodium arsenite, cadmium sulphate and lead nitrate with 0 ppm, 0.5 ppm and 1 ppm were used. The cadmium treated plants were analysed by Varian Atomic absorption spectrophotometer-200. The samples of arsenic and lead were analysed by Inductively Coupled Plasma Atomic Emission Spectrophotometer. The results suggest that arsenic was detected only in the root systems while cadmium and lead were detected both in the root and shoot systems. Significant differences in the uptake were observed for different concentrations. Accumulation of arsenic was detected only in the root systems of B. juncea (cvs. Rai and BARI-11) at lower concentrations. Hence, this can be used as an agriculturally viable and efficient phytoaccumulator in the arsenic affected areas where contamination level is low and the contamination occurs at the rooting level. 展开更多
关键词 Bioremediation PHYTOACCUMULATION Heavy Metal ARSENIC CADMIUM LEAD B. juncea (cvs. Rai and BARI-11)
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