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Stable isotope 15N and 13C labelling of different functional groups of earthworms and their casts: A tool for studying trophic links

机译:functional及其演员的不同官能团的稳定同位素15N和13C标记:研究营养联系的工具

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摘要

Earthworms (Oligochaeta: Lumbricidae) have substantial effects on the structure and fertility of soils with consequences for the diversity of plant communities and associated ecosystem functions. However, we still lack a clear understanding of the functional role earthworms play in terrestrial ecosystems, partly because easy-to-use methods to quantify their activities are missing. In this study, we tested whether earthworms and their casts can be dual-labelled with 15N and 13C stable isotopes by cultivating them in soil substrate amended with 15N ammonium nitrate and 13C-glucose. Additionally, we also wanted to know whether (i) earthworms from different functional groups (soil-feeders vs. litter-feeders) and their casts would differ in their incorporation of stable isotopes, (ii) if enrichment levels are higher if the same amount of isotopes is applied in one dose or in staggered doses, and (iii) if isotopic enrichment in casts changes when they are stored in a conditioning cabinet or in a pot filled with soil placed in a greenhouse. Our findings show the feasibility of dual-labelling tissues and casts of both litter-feeding (Lumbricus terrestris) and soil-feeding (Aporrectodea caliginosa) earthworms using the same method. The advantage of this method is that earthworms and their casts can be labelled under realistic conditions by cultivating them for only four days in soil that received a one-time addition of commercially available stable isotopes instead of offering labelled plant material. In earthworms, the isotopic enrichment remained at a stable level for at least 21 days; labelled casts could be stored for at least 105 days without significantly decreasing their isotopic signals. This simple and efficient method opens new avenues for studying the role of these important ecosystem engineers in nutrient cycling and their functional relationships with other organisms.
机译:worm(Oligochaeta:Lumbricidae)对土壤的结构和肥沃性具有实质性影响,对植物群落的多样性和相关的生态系统功能产生了影响。但是,我们仍然对earth在陆地生态系统中的功能作用缺乏清晰的了解,部分原因是缺少用于量化其活动的易于使用的方法。在这项研究中,我们测试了worm和它们的表皮是否可以通过在 15修饰的土壤基质中培养而用 15 N和 13 C稳定同位素双重标记。 硝酸铵和 13 C-葡萄糖此外,我们还想知道(i)来自不同功能组的s(土壤饲养者还是垃圾饲养者)及其演员是否会在稳定同位素的掺入方面有所不同;(ii)如果相同量的富集水平会更高同位素以一剂或交错剂的形式施用;(iii)如果将铸型存放在调理柜中或装满温室的土壤的锅中,铸型中的同位素富集度发生变化。我们的研究结果表明,使用相同的方法对饲喂((Lumbricus terrestris)和土壤饲喂(Aporrectodea caliginosa)dual进行双重标记的组织和粪便是可行的。这种方法的优势在于,可以在现实条件下通过在一次性添加了市售稳定同位素的土壤中培养four和田cast四天来标记labeled,而不用提供标记的植物材料。在earth中,同位素富集至少在21天内保持稳定水平。标记的铸型可以保存至少105天,而不会显着降低其同位素信号。这种简单有效的方法为研究这些重要的生态系统工程师在养分循环中的作用及其与其他生物的功能关系开辟了新途径。

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