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并非所有水母都一样:水母营养生态学种间和种内变异的同位素证据。

Not all jellyfish are equal: isotopic evidence for inter- and intraspecific variation in jellyfish trophic ecology.

作者信息

Fleming Nicholas E C, Harrod Chris, Newton Jason, Houghton Jonathan D R

机构信息

School of Biological Sciences, Medical Biology Centre, Queen's University Belfast , Belfast , UK ; Queen's University Belfast Marine Laboratory , Portaferry, Co. Down , UK.

School of Biological Sciences, Medical Biology Centre, Queen's University Belfast , Belfast , UK ; Fish and Stable Isotope Ecology Laboratory, Instituto de Ciencias Naturales Alexander von Humboldt, Universidad de Antofagasta , Antofagasta , Chile.

出版信息

PeerJ. 2015 Jul 21;3:e1110. doi: 10.7717/peerj.1110. eCollection 2015.

Abstract

Jellyfish are highly topical within studies of pelagic food-webs and there is a growing realisation that their role is more complex than once thought. Efforts being made to include jellyfish within fisheries and ecosystem models are an important step forward, but our present understanding of their underlying trophic ecology can lead to their oversimplification in these models. Gelatinous zooplankton represent a polyphyletic assemblage spanning >2,000 species that inhabit coastal seas to the deep-ocean and employ a wide variety of foraging strategies. Despite this diversity, many contemporary modelling approaches include jellyfish as a single functional group feeding at one or two trophic levels at most. Recent reviews have drawn attention to this issue and highlighted the need for improved communication between biologists and theoreticians if this problem is to be overcome. We used stable isotopes to investigate the trophic ecology of three co-occurring scyphozoan jellyfish species (Aurelia aurita, Cyanea lamarckii and C. capillata) within a temperate, coastal food-web in the NE Atlantic. Using information on individual size, time of year and δ (13)C and δ (15)N stable isotope values, we examined: (1) whether all jellyfish could be considered as a single functional group, or showed distinct inter-specific differences in trophic ecology; (2) Were size-based shifts in trophic position, found previously in A. aurita, a common trait across species?; (3) When considered collectively, did the trophic position of three sympatric species remain constant over time? Differences in δ (15)N (trophic position) were evident between all three species, with size-based and temporal shifts in δ (15)N apparent in A. aurita and C. capillata. The isotopic niche width for all species combined increased throughout the season, reflecting temporal shifts in trophic position and seasonal succession in these gelatinous species. Taken together, these findings support previous assertions that jellyfish require more robust inclusion in marine fisheries or ecosystem models.

摘要

在中上层食物网的研究中,水母是热门课题,并且人们越来越意识到它们的作用比曾经认为的更为复杂。将水母纳入渔业和生态系统模型的努力是向前迈出的重要一步,但我们目前对其潜在营养生态学的理解可能导致它们在这些模型中被过度简化。凝胶状浮游动物代表了一个多源组合,涵盖超过2000个物种,栖息于从沿海海域到深海的区域,并采用多种觅食策略。尽管存在这种多样性,但许多当代建模方法将水母视为一个单一的功能组,最多在一两个营养级上觅食。最近的综述已关注到这个问题,并强调如果要克服这个问题,生物学家和理论家之间需要加强沟通。我们使用稳定同位素研究了东北大西洋一个温带沿海食物网中三种同时出现的钵水母物种(海月水母、拉氏霞水母和发形霞水母)的营养生态学。利用个体大小、年份时间以及δ(13)C和δ(15)N稳定同位素值的信息,我们研究了:(1) 是否所有水母都可被视为一个单一的功能组;或者在营养生态学方面是否表现出明显的种间差异;(2) 先前在海月水母中发现的基于大小的营养级转移,是否是所有物种的共同特征;(3) 总体来看,三种同域物种的营养级随时间是否保持不变。所有三个物种之间δ(15)N(营养级)的差异很明显,海月水母和发形霞水母中存在基于大小和时间的δ(15)N转移。所有物种组合的同位素生态位宽度在整个季节都有所增加,反映了这些凝胶状物种营养级的时间转移和季节演替。综上所述,这些发现支持了之前的论断,即水母需要更有力地纳入海洋渔业或生态系统模型中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b1d/4517961/61119420dc63/peerj-03-1110-g001.jpg

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