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斜生栅藻在暴露于高浓度铜和锌环境中以及金属胁迫解除后的生理行为。

Physiological behavior of Scenedesmus sp. during exposure to elevated levels of Cu and Zn and after withdrawal of metal stress.

作者信息

Tripathi B N, Gaur J P

机构信息

Department of Bioscience and Biotechnology, Banasthali Vidyapith, Banasthali, Rajasthan, India.

出版信息

Protoplasma. 2006 Nov;229(1):1-9. doi: 10.1007/s00709-006-0196-9. Epub 2006 Nov 14.

Abstract

A 48 h exposure of Scenedesmus sp. to sublethal concentrations of Cu (2.5 and 10 microM) and Zn (5 and 25 microM) caused a concentration-dependent inhibition of growth, photosynthesis, respiration, NO(3)(-) uptake, and nitrate reductase (EC 1.6.6.1) activity, and a reduction in protein, carbohydrate, and photosynthetic-pigment levels with a concomitant increase in intracellular levels of the test metals. After exposure, algal cells were transferred to the basal medium without the excess level of test metals, to study the recovery of various processes. The growth of the test algae had not recovered up to 12 h after transfer to the basal medium, but some physiological parameters such as photosynthesis and respiration recovered within 6 h. The quicker recovery of photosynthesis and respiration might be used as acclimatory responses as they prepare a background for the recovery of other parameters, including growth, of the test alga by generating energy, forming photosynthate, and establishing the usual catabolism to attain normal conditions. Most of the processes recovered completely or almost completely after being stressed with 2.5 microM Cu or 5 microM Zn. However, the maintenance of a relatively high level of Cu and Zn in the cells previously exposed to 10 microM Cu and 25 microM Zn slowed down the recovery of different processes, which did not fully recover even at the end of the experiment after 96 h. The present study demonstrates that a chain of metabolic events, beginning with respiration and photosynthesis and continuing with assimilation and uptake of nutrients and subsequent restoration of other metabolic processes, is involved in the recovery of the algae from Cu and Zn stress. Each studied parameter seems to play an important role in balancing the cellular homeostasis during recovery from metal stress.

摘要

将斜生栅藻暴露于亚致死浓度的铜(2.5和10微摩尔)和锌(5和25微摩尔)48小时,会导致生长、光合作用、呼吸作用、硝酸根吸收以及硝酸还原酶(EC 1.6.6.1)活性受到浓度依赖性抑制,蛋白质、碳水化合物和光合色素水平降低,同时细胞内受试金属水平升高。暴露后,将藻细胞转移至不含过量受试金属的基础培养基中,以研究各种过程的恢复情况。转移至基础培养基后,受试藻类的生长在12小时内未恢复,但一些生理参数,如光合作用和呼吸作用在6小时内恢复。光合作用和呼吸作用更快的恢复可能被用作适应性反应,因为它们通过产生能量、形成光合产物以及建立正常的分解代谢以达到正常状态,为受试藻类包括生长在内的其他参数的恢复奠定基础。在用2.5微摩尔铜或5微摩尔锌胁迫后,大多数过程完全或几乎完全恢复。然而,先前暴露于10微摩尔铜和25微摩尔锌的细胞中相对较高水平的铜和锌的维持减缓了不同过程的恢复,即使在96小时实验结束时也未完全恢复。本研究表明,从呼吸作用和光合作用开始,接着是营养物质的同化和吸收以及随后其他代谢过程的恢复,这一系列代谢事件参与了藻类从铜和锌胁迫中的恢复。每个研究参数似乎在从金属胁迫恢复过程中平衡细胞内稳态方面都发挥着重要作用。

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