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Short-term response of the slow growing seagrass Posidonia oceanica to simulated anchor impact

机译:缓慢生长的海草波塞冬对模拟锚地撞击的短期响应

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摘要

Experimental evaluations about the impact of anchors of small vessels have previously shown that each anchoring can on average damage up to six shoots of Posidonia oceanica, removing small amount of biomass and, at the same time, interrupting continuity among shoots. The aim of the paper was to investigate the response of P. oceanica to different damage intensity at two levels of substrata compactness. Three treatments were considered: control (no damage); low damage (simulated anchor damage by three strokes of a hoe); and high damage (six strokes). Disturbance was higher where the substratum was highly penetrable and after one year significant variation was observed among treatments for both the number of leaves per shoot and shoot density. Conversely, the number of leaves per shoot by the end of the study was similar among all treatment combinations, suggesting that this was the only phenological feature that recovered, and probably the only result that through clonal integration could be achieved. These data strongly highlighted the role that anchoring might have on the slow growing seagrass P. oceanica meadow.
机译:以前,对小型容器锚的影响进行的实验评估表明,每次锚固平均可破坏多达6个海洋波塞冬芽,从而去除少量生物量,同时中断芽之间的连续性。本文的目的是研究在两层地下致密性下大洋假单胞菌对不同破坏强度的响应。考虑了三种治疗方法:对照(无损伤);低损坏(通过anchor头的三击模拟锚定损坏);和高伤害(六招)。基质高度易穿透的地方干扰较高,一年后,各处理之间的每枝叶片数和枝条密度均出现显着差异。相反,在研究结束时,所有处理组合中每枝的叶片数均相似,这表明这是唯一恢复的物候特征,并且可能是通过克隆整合可以实现的唯一结果。这些数据强烈强调了锚固在缓慢生长的海草大洋草甸上的作用。

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