从历史乌贼喙中的稳定同位素洞察生态系统的长期变化。

IF 2.3 Q2 ECOLOGY
Alexey V Golikov, José C Xavier, Filipe R Ceia, José P Queirós, Paco Bustamante, Bram Couperus, Gaël Guillou, Anna M Larionova, Rushan M Sabirov, Christopher J Somes, Henk-Jan Hoving
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引用次数: 0

摘要

背景:评估食物网关键组成部分的历史动态对于了解气候变化如何影响北极海洋生态系统的结构至关重要。迄今为止,大多数回顾性稳定同位素研究都使用脊椎动物顶层捕食者和滤食性无脊椎动物作为替代物来评估北极地区潜在的生态系统变化。然而,由于这些类群具有较长的生命史和特定的生态学特征,使用这些类群并不总能检测到生态系统的变化。此外,目前还没有对北极生物群的其他各种生态和分类群进行回顾性稳定同位素研究。为了检验气候驱动的海洋生态系统变化是否反映在短寿命中型食肉动物的生态学中,我们分析了 1844 年至 2023 年期间从北极低纬度地区及邻近水域采集的两种大量鱿鱼(Gonatus fabricii 和 Todarodes sagittatus)壳质硬体结构中稳定同位素特征的本体变化:结果:我们发现北极低纬度水域的布氏鱿鱼的食性和栖息地利用普遍性(=机会主义选择而非专业化)、营养位置和生态位宽度在时间上有所增加。营养生态学的这些变化与北极生态系统的亚特兰蒂斯化(包括食物网的泛化和初级生产力的提高)以及气候变化导致的北大西洋北方物种的涌入相吻合。自 20 世纪 90 年代末/21 世纪初以来,亚特兰蒂斯化尤为明显。我们在 G. fabricii 营养生态学中发现的时间模式在以往的北极回顾性同位素生态学研究中基本没有报道。因此,与十九世纪相比,如今出现在北大西洋高纬度地区的T:我们的研究结果表明,生命周期较短的大量机会主义中层食肉动物(如鱿鱼)是海洋生态系统中进行生态学回顾性研究的良好候选对象,也是确定气候变化导致的生态系统变化的良好候选对象。鱿鱼的食性泛化和生态位宽度的增加反映了北极食物网泛化程度的提高,而北方食鱼量的增加则反映了鱿鱼营养位置的提高。这些发现支持了鱿鱼的机会主义和适应性,使它们成为北极生态系统短期变化的潜在赢家。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insights on long-term ecosystem changes from stable isotopes in historical squid beaks.

Insights on long-term ecosystem changes from stable isotopes in historical squid beaks.

Background: Assessing the historical dynamics of key food web components is crucial to understand how climate change impacts the structure of Arctic marine ecosystems. Most retrospective stable isotopic studies to date assessed potential ecosystem shifts in the Arctic using vertebrate top predators and filter-feeding invertebrates as proxies. However, due to long life histories and specific ecologies, ecosystem shifts are not always detectable when using these taxa. Moreover, there are currently no retrospective stable isotopic studies on various other ecological and taxonomic groups of Arctic biota. To test whether climate-driven shifts in marine ecosystems are reflected in the ecology of short-living mesopredators, ontogenetic changes in stable isotope signatures in chitinous hard body structures were analysed in two abundant squids (Gonatus fabricii and Todarodes sagittatus) from the low latitude Arctic and adjacent waters, collected between 1844 and 2023.

Results: We detected a temporal increase in diet and habitat-use generalism (= opportunistic choice rather than specialization), trophic position and niche width in G. fabricii from the low latitude Arctic waters. These shifts in trophic ecology matched with the Atlantification of the Arctic ecosystems, which includes increased generalization of food webs and higher primary production, and the influx of boreal species from the North Atlantic as a result of climate change. The Atlantification is especially marked since the late 1990s/early 2000s. The temporal patterns we found in G. fabricii's trophic ecology were largely unreported in previous Arctic retrospective isotopic ecology studies. Accordingly, T. sagittatus that occur nowadays in the high latitude North Atlantic have a more generalist diet than in the XIXth century.

Conclusions: Our results suggest that abundant opportunistic mesopredators with short life cycles (such as squids) are good candidates for retrospective ecology studies in the marine ecosystems, and to identify ecosystem shifts driven by climate change. Enhanced generalization of Arctic food webs is reflected in increased diet generalism and niche width in squids, while increased abundance of boreal piscivorous fishes is reflected in squids' increased trophic position. These findings support opportunism and adaptability in squids, which renders them as potential winners of short-term shifts in Arctic ecosystems.

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