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两种非本地入侵藻类协同降低了一种本地关键食草动物的性能。

Synergistic reduction of a native key herbivore performance by two non-indigenous invasive algae.

机构信息

Stazione Zoologica Anton Dohrn, Villa Comunale, Naples 80121, Italy.

Stazione Zoologica Anton Dohrn, Villa Comunale, Naples 80121, Italy; Consiglio Nazionale delle Ricerche, Istituto per lo studio degli impatti Antropici e Sostenibilità in ambiente marino, Via Giovanni da Verrazzano, 17 - 91014 Castellammare del Golfo, Italy; School of Geosciences, Grant Institute, King's Buildings, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Mar Pollut Bull. 2019 Apr;141:649-654. doi: 10.1016/j.marpolbul.2019.02.073. Epub 2019 Mar 18.

Abstract

Native generalist grazers can control the populations of non-indigenous invasive algae (NIIA). Here, it was found that the simultaneous consumption of two co-occurring NIIA, Caulerpa cylindracea and C. taxifolia var. distichophylla, hinders the grazing ability of the main Mediterranean herbivorous, the native sea urchin Paracentrotus lividus. The ingestion of any of the two NIIA alone did not produce any difference in sea urchin righting time with respect to usual algal diet. In contrast, the simultaneous consumption of both NIIA, which grow intermingled in nature and are consumed by P. lividus, retarded its righting behavior. Such result reveals substantial physiological stress in the sea urchin, which resulted in reduced motility and coordination. The reported findings reveal the potential of NIIA co-occurrence to escape the supposed control exerted by the main native generalist grazer in Mediterranean sublittoral communities, which in turn can be locked in an "invaded" state.

摘要

本地广食性食草动物可以控制非本地入侵藻类(NIIA)的种群。在这里,人们发现,同时食用两种共同存在的 NIIA,即管藻(Caulerpa cylindracea)和二叉管藻(C. taxifolia var. distichophylla),会阻碍主要地中海食草动物——本地海胆(Paracentrotus lividus)的摄食能力。单独食用这两种 NIIA 中的任何一种,与通常的藻类饮食相比,海胆的翻身时间都没有任何差异。相比之下,同时食用这两种 NIIA,它们在自然界中相互交织,并且被 P. lividus 食用,会延缓它的翻身行为。这一结果表明,海胆会承受很大的生理压力,从而导致运动能力和协调性下降。报告的发现揭示了 NIIA 共存的可能性,它们可以逃避主要本地广食性食草动物在地中海次沿海群落中施加的控制,而这些食草动物反过来又可能陷入“被入侵”的状态。

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