[海洋物种的引入和建立过程:日本褐海带 Undaria pinnatifida 的研究案例]。

Marie Voisin, Claire Daguin, Carolyn Engel, Daphné Grulois, Cédric Javanaud, Frédérique Viard
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引用次数: 2

摘要

自 20 世纪 70 年代以来,生物引入的数量不断增加,现在已被认为是继生境破碎化或消失之后造成生物多样性减少的第二大原因。除了对生态系统平衡的威胁之外,引进物种还是研究生态学和进化论基本问题的有趣模型,如扩散和适应新环境的过程。在这种情况下,在广阔的地理范围和栖息地范围内引入的物种为比较促进不同环境间引入和定居的机制提供了极好的机会。本文以褐藻裙带菜(Undaria pinnatifida)的全球引入为案例,利用分子工具,旨在研究促进生物引入或在生物引入过程中发生的几个过程。我们的研究结果表明:i)多种过程可以解释这种藻类的成功引入,这突出了研究引入物种与它们入侵的生态系统之间关系的必要性;ii)引入的重复性是定居动态中的一个关键组成部分;iii)人类活动不仅可以在主要引入过程中发挥重要作用,而且还可以通过提供移民库为引入物种在自然环境中的可持续定居发挥重要作用。总之,这些结果表明,生物入侵机制的复杂性需要进行空间分析和长期分析。
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[Introduction and establishment processes of marine species: a study case with the Japanese brown kelp Undaria pinnatifida].

The number of biological introductions has increased since the 1970's and is now considered as the second major cause of the biodiversity erosion, after fragmentation or disappearance of habitat. Beyond the threat they represent for the ecosystem equilibrium, introduced species are interesting models to study fundamental issues in ecology and evolution like the processes of dispersal and adaptation to novel environments. In this context, species introduced over a large geographic range and spectrum of habitats provide an excellent opportunity for comparing the mechanisms that promote introduction and settlement between different environments. In this paper, based on a case study, the worldwide introduction of the brown alga Undaria pinnatifida, and on the use of molecular tools, we aim at examining several processes promoting or occurring during biological introductions. Our results showed that i) multiple processes can account for the success of the pandemic introduction of this alga, highlighting the necessity to study introduced species in relation with the ecosystem they invaded, ii) the recurrence of introductions is a critical component in the dynamics of settlement and iii) human activities can play a major role not only during the primary introduction but also for the sustainable settlement of introduced species in natural environments by providing reservoir of migrants. Taken together, these results demonstrate that the complexity of mechanisms occurring in biological invasion require spatial but also long-term analysis.

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