Suppr超能文献

摄食胁迫藻类对多压力环境中大型溞生活史特征有重要影响。

Feeding on stressed algae exerts important effects on life history traits of Daphnia magna in a multi-stressor environment.

机构信息

ECOSPHERE, Department of Biology, University of Antwerp, Antwerp, Belgium.

ECOSPHERE, Department of Biology, University of Antwerp, Antwerp, Belgium.

出版信息

Aquat Toxicol. 2024 Aug;273:106988. doi: 10.1016/j.aquatox.2024.106988. Epub 2024 Jun 6.

Abstract

Freshwater ecosystems are increasingly exposed to anthropogenic eutrophication, including high nitrogen. In addition, climate change is leading to more intense and frequent heatwaves, which have enormous impacts on all trophic levels of the ecosystem. Any change in the lower trophic levels, e.g., the phytoplankton, also introduces stress to higher trophic levels e.g., the zooplankton crustacean Daphnia. Individual effects of heatwaves, high nitrate, and changing feed quality have been studied in daphnia, but less is known about their interactive effects. This study used a 3 × 3 × 2 factorial design in which daphnia were exposed to combinations of ecologically relevant nitrate concentrations (0, 50, or 200 mg/L) and different heatwave scenarios (no, short-moderate, or long-intense) in which individuals were either fed with microalgae (P. subcapitata and C. reinhardtii) grown at 20 °C and 50 mg/L nitrate (control feed) or the same conditions as daphnia was exposed to (experimental feed). Throughout the experiment, the interactive effects of high nitrate, heatwave, and feed on mortality, maturation, offspring, and body size were evaluated. In general, heatwaves shorten the lifespan of daphnia. Exposing daphnia to a long-intense heatwave combined with high nitrate resulted in poor performance. In the nitrate-limited condition, however, the restricted proliferation of microalgae reduced feed availability, which also had a major impact on daphnia's life history traits. Daphnia cultured in high nitrate and fed control feed performed better than when fed experimental feed, suggesting that in a high nitrate condition, the microalgae grown under the same experimental conditions was either unable to meet energy requirements or introduced extra stress for the daphnia. Most importantly, the effect of nitrate and heatwave as stressors on the availability and quality of the feed had a greater impact on daphnia than its direct impact. Interestingly, a transgenerational adaptation to nitrate was observed which may help to maintain ecological balance in the long run.

摘要

淡水生态系统越来越受到人为富营养化的影响,包括高氮。此外,气候变化导致热浪更加剧烈和频繁,对生态系统的所有营养层次都产生了巨大影响。任何底层营养层次的变化,例如浮游植物,也会给更高营养层次的生物带来压力,例如浮游动物甲壳类动物水蚤。已经在水蚤中研究了热浪、高硝酸盐和改变饲料质量的个体影响,但对它们的相互作用影响知之甚少。本研究采用 3×3×2 析因设计,其中水蚤暴露于生态相关硝酸盐浓度(0、50 或 200mg/L)和不同热浪情景(无、短中度或长强烈)的组合中,个体分别用在 20°C 和 50mg/L 硝酸盐(对照饲料)或与水蚤暴露相同条件下生长的微藻(P.subcapitata 和 C.reinhardtii)(实验饲料)喂养。在整个实验过程中,评估了高硝酸盐、热浪和饲料对死亡率、成熟度、后代和身体大小的相互作用影响。一般来说,热浪会缩短水蚤的寿命。将水蚤暴露于长强烈的热浪中并结合高硝酸盐会导致表现不佳。然而,在硝酸盐有限的条件下,微藻的增殖受到限制,从而降低了饲料的可用性,这也对水蚤的生活史特征产生了重大影响。在高硝酸盐条件下,用对照饲料饲养的水蚤比用实验饲料饲养的水蚤表现更好,这表明在高硝酸盐条件下,在相同实验条件下生长的微藻要么无法满足能量需求,要么给水蚤带来额外的压力。最重要的是,硝酸盐和热浪作为胁迫源对饲料的可用性和质量的影响比对水蚤本身的直接影响更大。有趣的是,观察到了对硝酸盐的跨代适应,这从长远来看可能有助于维持生态平衡。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验