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Artificial marine structures facilitate the spread of a non-indigenous green alga, Codium fragile ssp tomentosoides, in the north Adriatic Sea

机译:人工海洋结构促进了北亚得里亚海的一种非本土绿藻,即脆弱的小球藻类藻类的传播。

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摘要

1 Artificial structures have become ubiquitous features of coastal landscapes. Although they provide novel habitats for the colonization of marine organisms, their role in facilitating biological invasions has been largely unexplored.\ud 2 We investigated the distribution and dynamics of the introduced green alga, Codium fragile ssp. tomentosoides, at a variety of spatial scales on breakwaters in the north Adriatic Sea, and analysed experimentally the mechanisms underlying its establishment. We assessed the provision of sheltered habitats by breakwaters, the role of disturbance (e.g. from recreational harvesting and storms) acting at different times of the year, and the interactions between Codium and the dominant native space-occupier, the mussel Mytilus galloprovincialis.\ud 3 Codium fragile ssp. tomentosoides has established viable populations on artificial structures along the shores investigated. The density, cover and size (length, branching and weight) of annual erect thalli of Codium was enhanced in sheltered conditions, resulting in the monopolization of landward low-shore habitats of breakwaters.\ud 4 On the landward sides of breakwaters, disturbance enhanced recruitment of Codium. The time when bare space was provided within mussels beds was crucial. Removal of mussels in April or January did not affect the recruitment of Codium, whereas harvest in August, shortly before Codium gamete release, doubled its success. On the seaward sides of breakwaters, the effects of disturbance were more complex because mussels both inhibited recruitment of Codium and provided shelter from wave action to adult thalli.\ud 5 Synthesis and applications. Artificial structures can provide suitable habitats for non-indigenous marine species and function as corridors for their expansion. Physical (wave exposure) and biotic (resident assemblages) features of artificial habitats can be important determinants of their susceptibility to biological invasions. Alternative options in the design of artificial structures and effective management of native assemblages could minimize their role in biological invasions. In particular, increased water motion and retention of space by mussels in spring–summer would be effective in reducing the ability of C. fragile ssp. tomentosoides to persist on the breakwaters investigated in this study.
机译:1人工结构已成为沿海景观的普遍特征。尽管它们为海洋生物的定殖提供了新颖的栖息地,但它们在促进生物入侵中的作用尚未得到充分的研究。\ ud 2我们研究了引入的绿藻脆弱的小球藻Cosp的分布和动态。在亚得里亚海北部防波堤上各种空间尺度的绒毛类,并通过实验分析了其建立的机理。我们评估了防波堤为避难所提供的栖息地,在一年中不同时间发生的干扰(例如,来自娱乐性收获和暴风雨)的作用,以及Co与主要本地空间占用者贻贝Mytilus galloprovincialis之间的相互作用。 3易碎的钠。绒毛类已经在所调查的海岸的人工结构上建立了可行的种群。在庇护条件下,一年生直立的al的密度,覆盖度和大小(长度,分支和重量)在遮蔽条件下得到了增强,导致了防波堤的陆上低岸生境的垄断。\ ud 4在防波堤的内陆侧,干扰加剧了招聘Codium。在贻贝床内提供裸露空间的时间至关重要。在4月或1月去除贻贝并不影响Codium的募集,而在Codium配子被释放前不久的8月收获贻贝则使成功翻了一番。在防波堤的海侧,扰动的影响更为复杂,因为贻贝既抑制了钴的募集,又为海藻成虫提供了庇护。\ ud 5合成与应用。人工结构可以为非本土海洋物种提供合适的栖息地,并可以作为其扩展的走廊。人工生境的物理(波暴露)和生物(居民集合)特征可能是其对生物入侵的敏感性的重要决定因素。设计人工结构和有效管理本地组合的其他选择可以最大程度地减少其在生物入侵中的作用。尤其是,春夏季贻贝增加水的运动和保留空间将有效降低脆弱的C. ssp的能力。线粒体在本研究中研究的防波堤上持续存在。

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    Bulleri F; Airoldi L;

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  • 年度 2005
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  • 正文语种 eng
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