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Stable isotopes as tracers of trophic interactions in marine mutualistic symbioses

机译:稳定同位素作为海洋互生共生物中营养相互作用的示踪剂

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摘要

Mutualistic nutritional symbioses are widespread in marine ecosystems. They involve the association of a host organism (algae, protists, or marine invertebrates) with symbiotic microorganisms, such as bacteria, cyanobacteria, or dinoflagellates. Nutritional interactions between the partners are difficult to identify in symbioses because they only occur in intact associations. Stable isotope analysis (SIA) has proven to be a useful tool to highlight original nutrient sources and to trace nutrients acquired by and exchanged between the different partners of the association. However, although SIA has been extensively applied to study different marine symbiotic associations, there is no review taking into account of the different types of symbiotic associations, how they have been studied via SIA, methodological issues common among symbiotic associations, and solutions that can be transferred from one type of association with another. The present review aims to fill such gaps in the scientific literature by summarizing the current knowledge of how isotopes have been applied to key marine symbioses to unravel nutrient exchanges between partners, and by describing the difficulties in interpreting the isotopic signal. This review also focuses on the use of compound‐specific stable isotope analysis and on statistical advances to analyze stable isotope data. It also highlights the knowledge gaps that would benefit from future research.
机译:相互的营养共生在海洋生态系统中很普遍。它们涉及宿主生物(藻类,原生生物或海洋无脊椎动物)与共生微生物(例如细菌,蓝细菌或鞭毛藻)的关联。伴侣之间的营养相互作用很难在共生中识别,因为它们仅在完整的关联中发生。稳定同位素分析(SIA)已被证明是突出原始营养来源并追踪协会不同伙伴之间获取和交换的营养的有用工具。然而,尽管SIA已被广泛用于研究不同的海洋共生协会,但没有考虑到不同类型的共生协会,如何通过SIA研究共生协会,共生协会之间常见的方法学问题以及可以采用的解决方案。从一种关联类型转移到另一种关联类型。本综述旨在通过总结当前有关同位素如何应用于关键海洋共生物以揭示伙伴之间养分交换的知识,以及描述解释同位素信号的困难来填补科学文献中的空白。这篇综述还着重于化合物特定的稳定同位素分析的使用,以及分析稳定同位素数据的统计进展。它还强调了可以从未来研究中受益的知识差距。

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