Capdevila Pol, Linares Cristina, Aspillaga Eneko, Riera Joan Lluís, Hereu Bernat
Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain.
PLoS One. 2018 Jan 12;13(1):e0191346. doi: 10.1371/journal.pone.0191346. eCollection 2018.
Dispersal and recruitment are fundamental processes for population recovery following disturbances in sessile species. While both processes are well understood for many terrestrial species, they still remain poorly resolved for some macroalgal species. Here we experimentally investigated the effective dispersal and recruit survival of a mesophotic Mediterranean fucoid, Cystoseira zosteroides. In three isolated populations, four sets of settlement collectors were placed at increasing distances (from 0 to 10 m) and different orientations (North, South, East and West). We observed that effective dispersal was restricted to populations' vicinity, with an average of 6.43 m and not further than 13.33 m, following a Weibull distribution. During their first year of life, survival was up to 50%, but it was lower underneath the adult canopy, suggesting a negative density-dependence. To put our results in a broader context we compared the effective dispersal of other fucoid and kelp species reported in the literature, which confirmed the low dispersal ability of brown algae, in particular for fucoids, with an effective dispersal of few meters. Given the importance of recruitment for the persistence and recovery of populations after disturbances, these results underline the vulnerability of C. zosteroides and other fucoid species to escalating threats.
扩散和补充是固着生物受干扰后种群恢复的基本过程。虽然这两个过程在许多陆地物种中已得到充分理解,但对于一些大型藻类物种来说,它们仍然没有得到很好的解决。在这里,我们通过实验研究了一种中光层地中海墨角藻(Cystoseira zosteroides)的有效扩散和补充后的存活情况。在三个孤立的种群中,四组定居收集器被放置在不同距离(从0到10米)和不同方向(北、南、东和西)。我们观察到,有效扩散仅限于种群附近,平均为6.43米,不超过13.33米,遵循威布尔分布。在它们生命的第一年,存活率高达50%,但在成年藻冠下较低,这表明存在负密度依赖性。为了将我们的结果置于更广泛的背景中,我们比较了文献中报道的其他墨角藻和海带物种的有效扩散情况,这证实了褐藻的扩散能力较低,尤其是墨角藻,有效扩散距离只有几米。鉴于补充对于干扰后种群的持续存在和恢复的重要性,这些结果强调了C. zosteroides和其他墨角藻物种面对不断升级的威胁时的脆弱性。