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升温降低了高纬度食物网中的营养多样性。

Warming reduces trophic diversity in high-latitude food webs.

机构信息

Department of Biology, University of Oxford, Oxford, UK.

Somerville College, University of Oxford, Oxford, UK.

出版信息

Glob Chang Biol. 2024 Oct;30(10):e17518. doi: 10.1111/gcb.17518.

Abstract

The physical effects of climate warming have been well documented, but the biological responses are far less well known, especially at the ecosystem level and at large (intercontinental) scales. Global warming over the next century is generally predicted to reduce food web complexity, but this is rarely tested empirically due to the dearth of studies isolating the effects of temperature on complex natural food webs. To overcome this obstacle, we used 'natural experiments' across 14 streams in Iceland and Russia, with natural warming of up to 20°C above the coldest stream in each high-latitude region, where anthropogenic warming is predicted to be especially rapid. Using biomass-weighted stable isotope data, we found that community isotopic divergence (a universal, taxon-free measure of trophic diversity) was consistently lower in warmer streams. We also found a clear shift towards greater assimilation of autochthonous carbon, which was driven by increasing dominance of herbivores but without a concomitant increase in algal stocks. Overall, our results support the prediction that higher temperatures will simplify high-latitude freshwater ecosystems and provide the first mechanistic glimpses of how warming alters energy transfer through food webs at intercontinental scales.

摘要

气候变暖的物理影响已有充分记录,但生物响应的了解要少得多,特别是在生态系统层面和大(洲际)尺度上。预计下个世纪的全球变暖将普遍降低食物网的复杂性,但由于缺乏单独测试温度对复杂自然食物网影响的研究,这很少得到实际验证。为了克服这一障碍,我们在冰岛和俄罗斯的 14 条溪流中进行了“自然实验”,自然变暖幅度高达每个高纬度地区最冷溪流的 20°C 以上,预计那里的人为变暖将特别迅速。使用生物量加权稳定同位素数据,我们发现,在较温暖的溪流中,群落同位素离散度(一种普遍的、无分类群的营养多样性衡量标准)始终较低。我们还发现,自养碳的同化作用明显增加,这是由食草动物的主导地位增加驱动的,但藻类存量并没有相应增加。总的来说,我们的研究结果支持了这样的预测,即较高的温度将使高纬度淡水生态系统变得更加简单,并首次提供了机制性的见解,说明变暖如何在洲际尺度上改变食物网中的能量传递。

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