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藻类铁供应差异是否会影响水蚤的生活史?一项全离子组研究。

Does differential iron supply to algae affect Daphnia life history? An ionome-wide study.

作者信息

Jeyasingh Punidan D, Pulkkinen Katja

机构信息

Department of Biological and Environmental Science, University of Jyväskylä, P. O. Box 35, 40014, Jyväskylä, Finland.

Department of Integrative Biology, Oklahoma State University, 501 Life Sciences West, Stillwater, OK, 74078, USA.

出版信息

Oecologia. 2019 Sep;191(1):51-60. doi: 10.1007/s00442-019-04482-1. Epub 2019 Aug 19.

Abstract

The availability of iron (Fe) varies considerably among diet items, as well as ecosystems. Availability of Fe has also changed due to anthropogenic environmental changes in oceanic as well as inland ecosystems. We know little about its role in the nutrition of ecologically important consumers, particularly in inland ecosystems. Physiological studies in several taxa indicate marked effects of dietary Fe on oogenesis. We predicted that differential Fe supply to algae will impact algal Fe concentration with consequences on the life history of the freshwater grazer, Daphnia magna. We found that algal Fe concentration increased with Fe supply, but did not affect algal growth, indicating that the majority of experimental Fe additions were likely adsorbed to, or stored in algal cells. Regardless, data indicate that algal Fe impacted the reproductive traits (age and size at maturity) but not juvenile growth rate of Daphnia. A subsequent experiment revealed that Fe concentration in eggs was significantly higher than the rest of Daphnia. These results indicate that the concentration of Fe in or on algal cells may vary considerably among ecosystems overlying distinct geological formations differing in Fe, possibly with important implications for zooplankton life histories. Understanding the mechanisms underlying this response is unlikely to be accomplished by a strict focus on Fe because we found correlated shifts in the algal ionome, with concomitant ionome-wide adjustments in Daphnia. Information on ionome-wide responses may be useful in better understanding the responses of biota to changes in the supply of any one element.

摘要

铁(Fe)的可利用性在不同食物种类以及不同生态系统之间存在很大差异。由于海洋和内陆生态系统的人为环境变化,铁的可利用性也发生了改变。我们对其在具有重要生态意义的消费者营养中的作用了解甚少,尤其是在内陆生态系统中。对多个分类群的生理学研究表明,饮食中的铁对卵子发生有显著影响。我们预测,向藻类提供不同的铁会影响藻类的铁浓度,进而影响淡水食草动物大型溞的生活史。我们发现,藻类的铁浓度随铁供应的增加而升高,但不影响藻类生长,这表明大多数实验添加的铁可能被吸附或储存在藻类细胞中。尽管如此,数据表明藻类的铁会影响大型溞的生殖特征(成熟时的年龄和大小),但不影响其幼体生长率。随后的一项实验表明,卵中的铁浓度明显高于大型溞身体其他部位的铁浓度。这些结果表明,在覆盖不同地质构造(铁含量不同)的生态系统中,藻类细胞内或细胞表面的铁浓度可能有很大差异,这可能对浮游动物的生活史有重要影响。仅严格关注铁,不太可能了解这种反应背后的机制,因为我们发现藻类离子组有相关变化,大型溞的离子组也随之进行了全离子组范围的调整。全离子组反应的信息可能有助于更好地理解生物群对任何一种元素供应变化的反应。

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