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两种海洋藻类(中肋骨条藻和普通小球藻)对光照和铁含量变化的响应

Responses of Two Coastal Algae (Skeletonema costatum and Chlorella vulgaris) to Changes in Light and Iron Levels.

作者信息

Wang Bo, Chen Min, Zheng Minfang, Qiu Yusheng

机构信息

College of Ocean and Earth Sciences, Xiamen University, Xiamen, 361102, China.

出版信息

J Phycol. 2020 Jun;56(3):618-629. doi: 10.1111/jpy.12972. Epub 2020 Feb 26.

Abstract

Iron (Fe) is essential for phytoplankton growth and photosynthesis, and is proposed to be an important factor regulating algal blooms under replete major nutrients in coastal environments. Here, Skeletonema costatum, a typical red-tide diatom species, and Chlorella vulgaris, a widely distributed Chlorella, were chosen to examine carbon fixation and Fe uptake by coastal algae under dark and light conditions with different Fe levels. The cellular carbon fixation and intracellular Fe uptake were measured via C and Fe tracer assay, respectively. Cell growth, cell size, and chlorophyll-α concentration were measured to investigate the algal physiological variation in different treatments. Our results showed that cellular Fe uptake proceeds under dark and the uptake rates were comparable to or even higher than those in the light for both algal species. Fe requirements per unit carbon fixation were also higher in the dark resulting in higher Fe: C ratios. During the experimental period, high Fe addition significantly enhanced cellular carbon fixation and Fe uptake. Compared to C. vulgaris, S. costatum was the common dominant bloom species because of its lower Fe demand but higher Fe uptake rate. This study provides some of the first measurements of Fe quotas in coastal phytoplankton cells, and implies that light and Fe concentrations may influence the phytoplankton community succession when blooms occur in coastal ecosystems.

摘要

铁(Fe)对浮游植物的生长和光合作用至关重要,并且被认为是在沿海环境中主要营养物质充足的情况下调节藻华的一个重要因素。在此,选择了典型的赤潮硅藻中肋骨条藻(Skeletonema costatum)和广泛分布的小球藻(Chlorella vulgaris),来研究不同铁水平下沿海藻类在黑暗和光照条件下的碳固定和铁吸收情况。分别通过碳和铁示踪分析来测定细胞的碳固定和细胞内铁吸收。测量细胞生长、细胞大小和叶绿素-α浓度,以研究不同处理下藻类的生理变化。我们的结果表明,两种藻类在黑暗条件下均能进行细胞铁吸收,且吸收速率与光照条件下相当,甚至更高。黑暗条件下单位碳固定所需的铁也更高,导致铁:碳比值更高。在实验期间,高铁添加显著增强了细胞的碳固定和铁吸收。与小球藻相比,中肋骨条藻是常见的优势藻华物种,因为它对铁的需求较低,但铁吸收速率较高。本研究首次对沿海浮游植物细胞中的铁配额进行了一些测量,并表明当沿海生态系统中发生藻华时,光照和铁浓度可能会影响浮游植物群落的演替。

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