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补充甾醇可改善大型溞的一种纤毛虫的食物质量。

Supplementation with sterols improves food quality of a ciliate for Daphnia magna.

作者信息

Martin-Creuzburg Dominik, Bec Alexandre, von Elert Eric

机构信息

Limnological Institute, Mainaustrasse 252, University of Constance, 78464 Constance, Germany.

出版信息

Protist. 2006 Oct;157(4):477-86. doi: 10.1016/j.protis.2006.07.001. Epub 2006 Aug 10.

Abstract

Experimental results provide evidence that trophic interactions between ciliates and Daphnia are constrained by the comparatively low food quality of ciliates. The dietary sterol content is a crucial factor in determining food quality for Daphnia. Ciliates, however, presumably do not synthesize sterols de novo. We hypothesized that ciliates are nutritionally inadequate because of their lack of sterols and tested this hypothesis in growth experiments with Daphnia magna and the ciliate Colpidium campylum. The lipid content of the ciliate was altered by allowing them to feed on fluorescently labeled albumin beads supplemented with different sterols. Ciliates that preyed upon a sterol-free diet (bacteria) did not contain any sterols, and growth of D. magna on these ciliates was poor. Supplementation of the ciliates' food source with different sterols led to the incorporation of the supplemented sterols into the ciliates' cells and to enhanced somatic growth of D. magna. Sterol limitation was thereby identified as the major constraint of ciliate food quality for Daphnia. Furthermore, by supplementation of sterols unsuitable for supporting Daphnia growth, we provide evidence that ciliates as intermediary grazers biochemically upgrade unsuitable dietary sterols to sterols appropriate to meet the physiological demands of Daphnia.

摘要

实验结果表明,纤毛虫与水蚤之间的营养相互作用受到纤毛虫相对较低食物质量的限制。膳食固醇含量是决定水蚤食物质量的关键因素。然而,纤毛虫大概不会从头合成固醇。我们假设纤毛虫由于缺乏固醇而营养不足,并在大型溞和纤毛虫结肠小袋虫的生长实验中检验了这一假设。通过让纤毛虫以添加了不同固醇的荧光标记白蛋白珠为食,改变了纤毛虫的脂质含量。以无固醇食物(细菌)为食的纤毛虫不含任何固醇,大型溞以这些纤毛虫为食时生长不佳。用不同固醇补充纤毛虫的食物来源导致补充的固醇被纳入纤毛虫细胞,并促进了大型溞的体细胞生长。因此,固醇限制被确定为纤毛虫作为水蚤食物质量的主要限制因素。此外,通过补充不适于支持水蚤生长的固醇,我们提供了证据表明,作为中间食草动物的纤毛虫会将不合适的膳食固醇生化转化为适合满足水蚤生理需求的固醇。

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