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鞭毛虫通过异养途径将沉水植物中的碳进行食物质量升级,可以刺激大型溞的生长。

Food quality upgrade of carbon from submerged macrophytes by flagellates via a heterotrophic pathway can stimulate growth of Daphnia magna.

机构信息

Department of Ecology, Jinan University, Guangzhou, 510632, China.

State Key Laboratory of Lake and Environment, Nanjing Institute of Geography and Limnology, Nanjing, 210008, China.

出版信息

Oecologia. 2023 Dec;203(3-4):467-476. doi: 10.1007/s00442-023-05479-7. Epub 2023 Nov 16.

Abstract

Submerged macrophytes play crucial roles in maintaining the stability of clear-water states in shallow lakes. Recent stable isotope studies have shown that crustacean zooplankton can utilize submerged macrophyte carbon, but macrophytes alone cannot support the growth and reproduction of such grazers, being deficient in highly unsaturated fatty acids (HUFA). We hypothesized that flagellates feeding on macrophytes can synthesize HUFA and thereby support crustacean zooplankton. To test this hypothesis, we conducted a feeding experiment in which Daphnia magna were provided with a diet of submerged macrophyte Hydrilla verticillata detritus which had been degraded by lake microbes. The chlorophyte Scenedesmus bijuga and undegraded macrophyte detritus were used as controls for comparison of Daphnia's performance. Using biochemical analysis, we examined how the degradation process affected the food quality of the macrophyte. Flagellates were subsequently isolated from the degraded macrophyte and cultured heterotrophically to detect their HUFA synthesis. The 5-day degraded H. verticillata showed significantly higher HUFA concentrations than undegraded macrophyte detritus. They supported better Daphnia performance than undegraded macrophyte, being comparable with S. bijuga. Two isolated flagellates (SL-1 and SL-2), identified as Ochromonas sp. and Poterioochromonas sp., were found to contain HUFA when cultured heterotrophically without dietary sources of fatty acids, suggesting their HUFA synthesis ability. Our results demonstrate that submerged macrophytes may thus indirectly support crustacean zooplankton via flagellate mediation. As crustacean zooplanktons are of key importance for water quality in the grazer control of phytoplankton, this microbial facilitation may contribute to the maintenance of macrophyte clear-water conditions in shallow lakes.

摘要

沉水植物在维持浅水湖泊清水状态的稳定性方面发挥着关键作用。最近的稳定同位素研究表明,甲壳类浮游动物可以利用沉水植物碳,但沉水植物本身并不能支持这些食草动物的生长和繁殖,因为它们缺乏高度不饱和脂肪酸 (HUFA)。我们假设以沉水植物为食的鞭毛虫可以合成 HUFA,从而支持甲壳类浮游动物。为了验证这一假设,我们进行了一项喂养实验,其中提供给大型溞一种由湖泊微生物降解的沉水植物水蕴草碎屑的饮食。绿藻栅藻和未降解的沉水植物碎屑被用作比较大型溞表现的对照。使用生化分析,我们研究了降解过程如何影响沉水植物的食物质量。随后从降解的沉水植物中分离出鞭毛虫,并进行异养培养以检测它们的 HUFA 合成。与未降解的沉水植物碎屑相比,经过 5 天降解的水蕴草显示出显著更高的 HUFA 浓度。它们支持大型溞的表现优于未降解的沉水植物,与栅藻相当。当在没有脂肪酸膳食来源的情况下进行异养培养时,两种分离的鞭毛虫(SL-1 和 SL-2)被鉴定为眼虫属和 Poterioochromonas 属,被发现含有 HUFA,表明它们具有 HUFA 合成能力。我们的结果表明,沉水植物可能通过鞭毛虫介导间接支持甲壳类浮游动物。由于甲壳类浮游动物对浮游植物的食草动物控制的水质至关重要,这种微生物促进作用可能有助于维持浅水湖泊中沉水植物的清水条件。

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