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气候变暖改变了软底栖生境中的非营养相互作用。

Warming alters non-trophic interactions in soft bottom habitats.

作者信息

Laukaityte Simona, Bishop Melanie J, Govers Laura L, Eriksson Britas D H Klemens

机构信息

Groningen Institute for Evolutionary Life-Sciences, GELIFES, University of Groningen, Nijenborgh 7, 9747 AG, Groningen, The Netherlands.

Department of Biological Sciences, Macquarie University, North Ryde, 2109 NSW, Australia.

出版信息

Oecologia. 2025 Feb 6;207(2):30. doi: 10.1007/s00442-025-05662-y.

Abstract

Though there is mounting evidence that climate warming is altering trophic interactions between organisms, its effects on non-trophic interactions remain relatively undocumented. In seagrass systems, the bioturbating activity of infauna influences annual seagrass patch development by influencing seed burial depth and germination success as well as sediment properties. If bioturbation is altered by warming, consequences on seagrass may result. Here, we assessed how heatwaves alter seagrass seed burial depth and germination rates when no bioturbators (control), single bioturbators and mixtures of bioturbators of contrasting feeding activities are present. The three bioturbators manipulated were surface (top 1-2 cm of sediment) biodiffusor, the brown shrimp (Crangon crangon), the shallow (top 3-8 cm) diffusor, the common cockle, (Cerastoderma edule) and the upward (5-15 cm) conveyor, the polychaete, Cappitellidae spp. We applied two temperature treatments: (1) a present-day scenario set at the average summer temperature of seagrass habitat (17ºC); and (2) a heatwave scenario modelled on the maximum recorded temperature (26.6ºC). Under present-day conditions, seed burial was greater in the presence of bioturbators than the control where no infauna was added (42-74% vs. 33 ± 7%, respectively). Cockles had the greatest impact on seed burial amongst all the bioturbators. Under the heatwave scenario, seed burial in the mixed bioturbator treatment increased to match that of the cockle treatment. Cockles and polychaetes elevated the germination rates of buried seeds under present-day temperature, but not under the heatwave scenario. Overall, these results indicate that heatwaves have the potential both to amplify and disrupt non-trophic interactions, with implications for seagrass seed germination.

摘要

尽管越来越多的证据表明气候变暖正在改变生物之间的营养相互作用,但其对非营养相互作用的影响仍相对缺乏记录。在海草系统中,底栖动物的生物扰动活动通过影响种子埋藏深度、发芽成功率以及沉积物性质,来影响海草斑块的年度发育。如果生物扰动因气候变暖而改变,可能会对海草产生影响。在此,我们评估了在没有生物扰动者(对照)、单一生物扰动者以及具有不同摄食活动的生物扰动者混合物存在的情况下,热浪如何改变海草种子的埋藏深度和发芽率。我们操控的三种生物扰动者分别是表层(沉积物顶部1 - 2厘米)生物扩散者褐虾(Crangon crangon)、浅层(顶部3 - 8厘米)扩散者普通鸟蛤(Cerastoderma edule)以及向上(5 - 15厘米)输送者多毛纲小头虫科物种(Cappitellidae spp.)。我们应用了两种温度处理:(1)当前情景设定为海草栖息地的夏季平均温度(17ºC);(2)热浪情景模拟为记录到的最高温度(26.6ºC)。在当前条件下,存在生物扰动者时种子埋藏深度大于未添加底栖动物的对照处理(分别为42 - 74% 对33 ± 7%)。在所有生物扰动者中,鸟蛤对种子埋藏的影响最大。在热浪情景下,混合生物扰动者处理中的种子埋藏深度增加至与鸟蛤处理相当。在当前温度下,鸟蛤和多毛纲动物提高了埋藏种子的发芽率,但在热浪情景下则不然。总体而言,这些结果表明热浪有可能增强和破坏非营养相互作用,对海草种子发芽产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2397/11799095/a0474f20d784/442_2025_5662_Fig1_HTML.jpg

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