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气候变异性和干旱调节叶栖所对节肢动物的作用:一项全球实验。

Climate variability and aridity modulate the role of leaf shelters for arthropods: A global experiment.

作者信息

Romero Gustavo Q, Gonçalves-Souza Thiago, Roslin Tomas, Marquis Robert J, Marino Nicholas A C, Novotny Vojtech, Cornelissen Tatiana, Orivel Jerome, Sui Shen, Aires Gustavo, Antoniazzi Reuber, Dáttilo Wesley, Breviglieri Crasso P B, Busse Annika, Gibb Heloise, Izzo Thiago J, Kadlec Tomas, Kemp Victoria, Kersch-Becker Monica, Knapp Michal, Kratina Pavel, Luke Rebecca, Majnarić Stefan, Maritz Robin, Mateus Martins Paulo, Mendesil Esayas, Michalko Jaroslav, Mrazova Anna, Novais Samuel, Pereira Cássio C, Perić Mirela S, Petermann Jana S, Ribeiro Sérvio P, Sam Katerina, Trzcinski M Kurtis, Vieira Camila, Westwood Natalie, Bernaschini Maria L, Carvajal Valentina, González Ezequiel, Jausoro Mariana, Kaensin Stanis, Ospina Fabiola, Cristóbal-Pérez E Jacob, Quesada Mauricio, Rogy Pierre, Srivastava Diane S, Szpryngiel Scarlett, Tack Ayco J M, Teder Tiit, Videla Martin, Viljur Mari-Liis, Koricheva Julia

机构信息

Laboratory of Multitrophic Interactions and Biodiversity, Department of Animal Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, Brazil.

Laboratory of Ecological Synthesis and Biodiversity Conservation, Department of Biology, Federal Rural University of Pernambuco (UFRPE), Recife, Brazil.

出版信息

Glob Chang Biol. 2022 Jun;28(11):3694-3710. doi: 10.1111/gcb.16150. Epub 2022 Mar 21.

Abstract

Current climate change is disrupting biotic interactions and eroding biodiversity worldwide. However, species sensitive to aridity, high temperatures, and climate variability might find shelter in microclimatic refuges, such as leaf rolls built by arthropods. To explore how the importance of leaf shelters for terrestrial arthropods changes with latitude, elevation, and climate, we conducted a distributed experiment comparing arthropods in leaf rolls versus control leaves across 52 sites along an 11,790 km latitudinal gradient. We then probed the impact of short- versus long-term climatic impacts on roll use, by comparing the relative impact of conditions during the experiment versus average, baseline conditions at the site. Leaf shelters supported larger organisms and higher arthropod biomass and species diversity than non-rolled control leaves. However, the magnitude of the leaf rolls' effect differed between long- and short-term climate conditions, metrics (species richness, biomass, and body size), and trophic groups (predators vs. herbivores). The effect of leaf rolls on predator richness was influenced only by baseline climate, increasing in magnitude in regions experiencing increased long-term aridity, regardless of latitude, elevation, and weather during the experiment. This suggests that shelter use by predators may be innate, and thus, driven by natural selection. In contrast, the effect of leaf rolls on predator biomass and predator body size decreased with increasing temperature, and increased with increasing precipitation, respectively, during the experiment. The magnitude of shelter usage by herbivores increased with the abundance of predators and decreased with increasing temperature during the experiment. Taken together, these results highlight that leaf roll use may have both proximal and ultimate causes. Projected increases in climate variability and aridity are, therefore, likely to increase the importance of biotic refugia in mitigating the effects of climate change on species persistence.

摘要

当前的气候变化正在扰乱生物间的相互作用,并侵蚀着全球的生物多样性。然而,对干旱、高温和气候变率敏感的物种可能会在微气候避难所中找到庇护,比如节肢动物构建的叶卷。为了探究叶庇护所对陆生节肢动物的重要性如何随纬度、海拔和气候而变化,我们进行了一项分布式实验,沿着一条11790公里的纬度梯度,在52个地点比较了叶卷中的节肢动物与对照叶片中的节肢动物。然后,我们通过比较实验期间的条件与该地点的平均基线条件的相对影响,探究了短期和长期气候影响对叶卷利用的作用。与未卷曲的对照叶片相比,叶庇护所容纳了更大的生物,具有更高的节肢动物生物量和物种多样性。然而,叶卷的影响程度在长期和短期气候条件、指标(物种丰富度、生物量和体型)以及营养类群(捕食者与食草动物)之间存在差异。叶卷对捕食者丰富度的影响仅受基线气候的影响,在长期干旱加剧的地区,其影响程度会增加,而与实验期间的纬度、海拔和天气无关。这表明捕食者对庇护所的利用可能是天生的,因此是由自然选择驱动的。相比之下,在实验期间,叶卷对捕食者生物量和捕食者体型的影响分别随着温度升高而降低,随着降水量增加而增加。食草动物对庇护所的利用程度随着捕食者数量的增加而增加,随着实验期间温度的升高而降低。综上所述,这些结果表明叶卷的利用可能既有近端原因也有终极原因。因此,预计气候变率和干旱的增加可能会提高生物避难所在减轻气候变化对物种持久性影响方面的重要性。

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