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沿海洋酸化梯度的底栖生物群落的功能多样性和代谢响应。

Functional diversity and metabolic response in benthic communities along an ocean acidification gradient.

机构信息

Stazione Zoologica Anton Dohrn, Department of Integrative Marine Ecology (EMI), Sicily Marine Centre, Lungomare Cristoforo Colombo (complesso Roosevelt), 90149, Palermo, Italy; Dipartimento di Scienze della Terra e del Mare, DiSTeM, Università degli Studi di Palermo Ed. 16, 90128, Palermo, Italy; NBFC, National Biodiversity Future Center, Palermo Viale delle Scienze Ed. 16, 90128, Palermo, Italy.

Stazione Zoologica Anton Dohrn, Department of Integrative Marine Ecology (EMI), Sicily Marine Centre, Lungomare Cristoforo Colombo (complesso Roosevelt), 90149, Palermo, Italy; NBFC, National Biodiversity Future Center, Palermo Viale delle Scienze Ed. 16, 90128, Palermo, Italy.

出版信息

Mar Environ Res. 2024 Jun;198:106520. doi: 10.1016/j.marenvres.2024.106520. Epub 2024 Apr 25.

Abstract

Altered ocean chemistry caused by ocean acidification (OA) is expected to have negative repercussions at different levels of the ecological hierarchy, starting from the individual and scaling up to the community and ultimately to the ecosystem level. Understanding the effects of OA on benthic organisms is of primary importance given their relevant ecological role in maintaining marine ecosystem functioning. The use of functional traits represents an effective technique to investigate how species adapt to altered environmental conditions and can be used to predict changes in the resilience of communities faced with stresses associated with climate change. Artificial supports were deployed for 1-y along a natural pH gradient in the shallow hydrothermal systems of the Bottaro crater near Panarea (Aeolian Archipelago, southern Tyrrhenian Sea), to explore changes in functional traits and metabolic rates of benthic communities and the repercussions in terms of functional diversity. Changes in community composition due to OA were accompanied by modifications in functional diversity. Altered conditions led to higher oxygen consumption in the acidified site and the selection of species with the functional traits needed to withstand OA. Calcification rate and reproduction were found to be the traits most affected by pH variations. A reduction in a community's functional evenness could potentially reduce its resilience to further environmental or anthropogenic stressors. These findings highlight the ability of the ecosystem to respond to climate change and provide insights into the modifications that can be expected given the predicted future pCO scenarios. Understanding the impact of climate change on functional diversity and thus on community functioning and stability is crucial if we are to predict changes in ecosystem vulnerability, especially in a context where OA occurs in combination with other environmental changes and anthropogenic stressors.

摘要

海洋酸化引起的海洋化学变化预计将在生态层次的不同层面产生负面影响,从个体到群落,最终到生态系统层面。考虑到它们在维持海洋生态系统功能方面的相关生态作用,了解海洋酸化对底栖生物的影响至关重要。功能特征的使用是一种有效的技术,可以研究物种如何适应环境变化,并可用于预测在应对与气候变化相关的压力时,群落的弹性变化。在 Panarea(Aeolian 群岛,南提雷翁海)附近的 Bottaro 火山口的浅热液系统中,沿着自然 pH 梯度部署了人工支撑物 1 年,以探索底栖群落的功能特征和代谢率的变化及其对功能多样性的影响。由于海洋酸化导致的群落组成变化伴随着功能多样性的改变。改变的条件导致酸化点的耗氧量增加,并选择了具有耐受海洋酸化所需功能特征的物种。钙化率和繁殖被发现是受 pH 变化影响最大的特征。群落功能均匀度的降低可能会降低其对进一步环境或人为压力源的抵抗力。这些发现强调了生态系统应对气候变化的能力,并提供了有关在预测未来 pCO2 情景下可能发生的变化的见解。了解气候变化对功能多样性的影响,从而了解群落功能和稳定性的变化,如果我们要预测生态系统脆弱性的变化,特别是在海洋酸化与其他环境变化和人为压力源同时发生的情况下,这一点至关重要。

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