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埃尔福德虫(有孔虫)隔离叶绿体的光谱分析。

Spectroscopic analysis of sequestered chloroplasts in Elphidium williamsoni (Foraminifera).

机构信息

University of Vienna, Department of Palaeontology, Vienna, Austria.

University of Vienna, Department of Mineralogy and Crystallography, Austria.

出版信息

J Photochem Photobiol B. 2023 Jan;238:112623. doi: 10.1016/j.jphotobiol.2022.112623. Epub 2022 Dec 15.

Abstract

Foraminifera are unicellular, marine organisms that occur worldwide. A very common species in the German Wadden Sea is Elphidium williamsoni. Some foraminifera (such as elphidia) are able to use kleptoplastidy, which allows them to incorporate chloroplasts from their algal food source into their own cell body. The experiments reported here are based on the fact that chlorophyll (a and c) can be detected in the intact cells with spectroscopic methods in the visible spectral range, which allows an indirect investigation of the presence of sequestered chloroplasts. Starving experiments of E. williamsoni in the light (24 h continuous) showed that the greatest decrease in chlorophyll content was recorded within the first 20-30 days. From day 60 on, chlorophyll was hardly detectable. Through subsequent feeding on a renewed algal food source a significant increase in the chlorophyll content in foraminifera was noticed. The degradation of chlorophyll in the dark (24 h continuous darkness) during the starving period was much more complex. Chlorophyll was still detected in the cells after 113 days of starving time. Therefore, we hypotheses that the effect of photoinhibition applies to chloroplasts in foraminifera under continuous illumination.

摘要

有孔虫是一种单细胞海洋生物,广泛分布于世界各地。在德国的瓦登海,一种非常常见的有孔虫是威廉逊Elphidium。一些有孔虫(如 elphidia)能够利用盗食质体现象,即将从藻类食物源中摄取的叶绿体纳入自身细胞体内。本研究基于以下事实:叶绿素(a 和 c)可以用可见光谱范围内的光谱方法在完整细胞中检测到,这允许对隔离叶绿体的存在进行间接研究。对 E. williamsoni 在光照下(连续 24 小时光照)进行饥饿实验表明,在前 20-30 天内记录到叶绿素含量的最大下降。从第 60 天开始,几乎检测不到叶绿素。通过随后在更新的藻类食物源上的摄食,有孔虫中的叶绿素含量显著增加。在饥饿期间的黑暗(连续 24 小时黑暗)中,叶绿素的降解要复杂得多。在饥饿 113 天后,仍能在细胞中检测到叶绿素。因此,我们假设光抑制作用适用于连续光照下有孔虫中的叶绿体。

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