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海草(大叶藻)以及被圆柱状蕨藻入侵的无植被沉积物中的小型底栖动物群落、线虫多样性和碳降解率

Meiofauna communities, nematode diversity and C degradation rates in seagrass (Posidonia oceanica L.) and unvegetated sediments invaded by the algae Caulerpa cylindracea (Sonder).

作者信息

Pusceddu Antonio, Fraschetti Simona, Scopa Mariaspina, Rizzo Lucia, Danovaro Roberto

机构信息

Department of Life and Environmental Sciences, University of Cagliari, Via Fiorelli 1, 09126 Cagliari, Italy.

Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali, Università del Salento, V.le Gallipoli, 49, 73100 Lecce, Italy.

出版信息

Mar Environ Res. 2016 Aug;119:88-99. doi: 10.1016/j.marenvres.2016.05.015. Epub 2016 May 24.

Abstract

We investigated meiofauna and sedimentary C cycling in seagrass (Posidonia oceanica) and unvegetated sediments invaded and not invaded by the non-indigenous tropical algae Caulerpa cylindracea. In both habitats, invaded sediments were characterized by higher organic matter contents. No effect was observed for prokaryotes and C degradation rates. In seagrass sediments, C turnover in invaded beds was about half that in not invaded ones. Meiofaunal communities varied significantly among invaded and not invaded grounds only in bare sediments. In both habitats, nematode species richness and assemblage composition were not affected by the algae. The effect of C. cylindracea on the turnover and nestedness components of the Jaccard dissimilarity varied between the two habitats. We show that the presence of C. cylindracea gives rise to variable consequences on meiofauna biodiversity and C cycling in different habitats. We conclude that further studies across different habitats and ecological components are needed to ultimately understand and predict the consequences of C. cylindracea invasion in shallow Mediterranean ecosystems.

摘要

我们研究了海草(波喜荡草)以及被非本土热带藻类圆柱状蕨藻入侵和未入侵的无植被沉积物中的小型底栖动物和沉积碳循环。在这两种生境中,被入侵的沉积物的特征是有机质含量较高。未观察到原核生物和碳降解率受到影响。在海草沉积物中,被入侵床层的碳周转约为未被入侵床层的一半。仅在裸露沉积物中,小型底栖动物群落因被入侵和未被入侵区域而有显著差异。在这两种生境中,线虫物种丰富度和群落组成均未受藻类影响。圆柱状蕨藻对Jaccard相异度的周转和嵌套组分的影响在两种生境之间有所不同。我们表明,圆柱状蕨藻的存在对不同生境中的小型底栖动物生物多样性和碳循环产生了不同的影响。我们得出结论,需要对不同生境和生态组分开展进一步研究,以最终了解和预测圆柱状蕨藻入侵地中海浅水生态系统的后果。

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