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铅积累对满江红-鱼腥藻共生体的影响。

Effects of lead accumulation on the Azolla caroliniana-Anabaena association.

机构信息

Darrin Fresh Water Institute, Rensselaer Polytechnic Institute, 5060 Lakeshore Drive, Bolton Landing, NY 12814, United States; Department of Biology, Rensselaer Polytechnic Institute, Troy, NY 12180, United States.

出版信息

Ecotoxicol Environ Saf. 2014 Apr;102:100-4. doi: 10.1016/j.ecoenv.2014.01.019. Epub 2014 Feb 5.

Abstract

The effect of lead accumulation on photopigment production, mineral nutrition, and Anabaena vegetative cell size and heterocyst formation in Azolla caroliniana was investigated. Plants were exposed to 0, 1, 5, 10, and 20 mg L(-1) lead acetate for ten days. Lead accumulation increased when plants were treated with higher lead concentrations. Results revealed a statistically significant decline in total chlorophyll, chlorophyll a, chlorophyll b, and carotenoids in 5, 10, and 20 mg Pb L(-1) treatment groups as compared to plants with 0 or 1 mg Pb L(-1) treatments. No statistically significant change in anthocyanin production was observed. Calcium, magnesium, and zinc concentrations in plants decreased in increasing treatment groups, whereas sodium and potassium concentrations increased. Nitrogen and carbon were also found to decrease in plant tissue. Anabaena vegetative cells decreased in size and heterocyst frequency declined rapidly in a Pb dose-dependent manner. These results indicate that, while A. caroliniana removes lead from aqueous solution, the heavy metal causes physiological and biochemical changes by impairing photosynthesis, changing mineral nutrition, and impeding the growth and formation of heterocysts of the symbiotic cyanobacteria that live within leaf cavities of the fronds.

摘要

研究了铅积累对满江红鱼腥藻中光色素合成、矿物质营养、营养体大小和异形胞形成的影响。将植物暴露于 0、1、5、10 和 20mg/L 的醋酸铅中 10 天。当植物受到更高浓度的铅处理时,铅积累增加。结果表明,与 0 或 1mgPbL(-1)处理组相比,在 5、10 和 20mgPbL(-1)处理组中,总叶绿素、叶绿素 a、叶绿素 b 和类胡萝卜素的含量均显著下降。花青素的产生没有明显变化。随着处理组的增加,植物中钙、镁和锌的浓度降低,而钠和钾的浓度升高。氮和碳也被发现减少在植物组织中。鱼腥藻的营养体大小减小,异形胞频率迅速下降,呈 Pb 剂量依赖性。这些结果表明,虽然满江红可以从水溶液中去除铅,但重金属通过破坏光合作用、改变矿物质营养、阻碍生活在叶片腔中的共生蓝藻的生长和异形胞形成,导致生理和生化变化。

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