Luigi Piazzi, Giulia Ceccherelli
Dipartimento di Scienze della Natura e del Territorio, Università di Sassari, Via Piandanna 4, 07100 Sassari, Italy.
Dipartimento di Scienze della Natura e del Territorio, Università di Sassari, Via Piandanna 4, 07100 Sassari, Italy.
Mar Environ Res. 2017 Aug;129:189-194. doi: 10.1016/j.marenvres.2017.06.001. Epub 2017 Jun 6.
This study investigates whether eutrophication can affect the capacity of the canopy alga Cystoseira brachycarpa to impede or limit the spread of the introduced species Caulerpa cylindracea. By means of a manipulative field study (16 months long), the effects of nutrient enrichment and C. cylindracea removal were tested on the canopy-alga and the associated macroalgal community. Results highlighted deep changes through time due to nutrient enrichment, as C. brachycarpa decreased and Halopteris scoparia increased in cover. Furthermore, C. brachycarpa was also affected by the presence of the introduced species Caulerpa cylindracea which, in turn, was found significantly advantaged by nutrient enrichment. Overall, our findings suggest that eutrophication can drive the substitution of Cystoseira with H. scoparia, leading to the shift from canopy to opportunistic species, which are unable to avoid the spread of C. cylindracea.
本研究调查了富营养化是否会影响冠层藻类短果囊链藻阻止或限制外来物种圆柱蕨藻扩散的能力。通过一项为期16个月的控制性实地研究,测试了营养物质富集和去除圆柱蕨藻对冠层藻类及相关大型藻类群落的影响。结果表明,由于营养物质富集,短果囊链藻的覆盖度下降,扇叶蕨藻的覆盖度增加,随着时间推移发生了深刻变化。此外,短果囊链藻也受到外来物种圆柱蕨藻的影响,而圆柱蕨藻在营养物质富集的情况下明显更具优势。总体而言,我们的研究结果表明,富营养化会促使扇叶蕨藻取代囊链藻,导致从冠层物种向机会主义物种的转变,而机会主义物种无法阻止圆柱蕨藻的扩散。