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镉对水培黄花蒿光合色素、脂质过氧化、抗氧化剂和青蒿素的影响。

Effect of cadmium on photosynthetic pigments, lipid peroxidation, antioxidants, and artemisinin in hydroponically grown Artemisia annua.

机构信息

School of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.

出版信息

J Environ Sci (China). 2012;24(8):1511-8. doi: 10.1016/s1001-0742(11)60920-0.

Abstract

The effects of different cadmium (Cd) concentrations (0, 20, 60, and 100 micromol/L) on hydroponically grown Artemisia annua L. were investigated. Cd treatments applied for 0, 4, 12, 24, 72, 144, 216, and 336 hr were assessed by measuring the changes in photosynthetic pigments, electrolyte leakage, malondialdehyde (MDA) and antioxidants (ascorbic acid and glutathione), while the artemisinin content was tested after 0, 12, 144, 216, and 336 hr. A significant decrease was observed in photosynthetic pigment levels over time with increasing Cd concentration. Chlorophyll b levels were more affected by Cd than were chlorophyll a or carotenoid levels. The cell membrane was sensitive to Cd stress, as MDA content in all treatment groups showed insignificant differences from the control group, except at 12 hr treatment time. Ascorbic acid (AsA) content changed slightly over time, while glutathione (GSH) content took less time to reach a maximum as Cd concentration increased. Cd was found to promote synthesis and accumulation of artemisinin, especially at concentrations of 20 and 100 micromol/L. In conclusion, Cd stress can damage to photosynthetic pigments, and vigorously growing A. annua showed a strong tolerance for Cd stress. Appropriate amounts of added Cd aided synthesis and accumulation of artemisinin.

摘要

研究了不同浓度镉(Cd)(0、20、60 和 100 微摩尔/升)对水培青蒿生长的影响。通过测量光合色素、电解质渗漏、丙二醛(MDA)和抗氧化剂(抗坏血酸和谷胱甘肽)的变化来评估 0、4、12、24、72、144、216 和 336 小时的 Cd 处理,青蒿素含量在 0、12、144、216 和 336 小时后进行测试。随着 Cd 浓度的增加,光合色素水平随时间呈显著下降趋势。与叶绿素 a 或类胡萝卜素相比,叶绿素 b 受 Cd 的影响更大。细胞膜对 Cd 胁迫敏感,因为除 12 小时处理时间外,所有处理组的 MDA 含量与对照组相比均无显著差异。抗坏血酸(AsA)含量随时间变化不大,而谷胱甘肽(GSH)含量随 Cd 浓度增加而迅速达到最大值。发现 Cd 促进青蒿素的合成和积累,尤其是在 20 和 100 微摩尔/升的浓度下。总之,Cd 胁迫会损害光合色素,而旺盛生长的青蒿对 Cd 胁迫表现出很强的耐受性。适量添加的 Cd 有助于青蒿素的合成和积累。

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