Zwerschke Nadescha, Eagling Lawrence, Roberts Dai, O'Connor Nessa
Queen's University Marine Laboratory, 12-13 the Strand, Portaferry, BT22 1PF, UK.
Queen's University Marine Laboratory, 12-13 the Strand, Portaferry, BT22 1PF, UK.
Mar Environ Res. 2020 Jan;153:104793. doi: 10.1016/j.marenvres.2019.104793. Epub 2019 Sep 25.
The widespread introduction of the Pacific oyster, Magallana gigas, has raised concerns regarding its potential impact on the functioning of invaded ecosystems. Concurrently, populations of the European oyster, Ostrea edulis, are in decline. We quantified the functional role of the native oyster, O. edulis, in terms of nutrient cycling and associated infaunal biodiversity and compared it directly to that of the invading oyster, M. gigas. The presence and density of both species were manipulated in the field and we tested for differences in concentration of ammonium, phosphate, total oxidised nitrogen and silicate in pore-water; total organic nitrogen and carbon in sediment; microbial activity; chlorophyll concentration; and the assemblage structure and richness of associated benthic taxa. No differences in nutrient cycling rates or associated benthic assemblages were identified between both oyster species. Nutrient concentrations were mostly affected by differences in oyster density and their significance varied among sampling events. Our findings suggest that M. gigas could compensate for the loss of ecosystem functions performed by O. edulis in areas where native oysters have been extirpated.
太平洋牡蛎(Magallana gigas)的广泛引入引发了人们对其可能对入侵生态系统功能产生影响的担忧。与此同时,欧洲牡蛎(Ostrea edulis)的种群数量正在下降。我们从营养物质循环以及相关底内动物生物多样性的角度,对本地牡蛎(O. edulis)的功能作用进行了量化,并将其与入侵牡蛎(M. gigas)的功能作用进行了直接比较。在野外对两种牡蛎的存在和密度进行了控制,并测试了孔隙水中铵、磷酸盐、总氧化氮和硅酸盐的浓度;沉积物中总有机氮和碳的含量;微生物活性;叶绿素浓度;以及相关底栖生物类群的组合结构和丰富度的差异。在两种牡蛎之间,未发现营养物质循环速率或相关底栖生物组合存在差异。营养物质浓度大多受牡蛎密度差异的影响,其显著性在不同采样事件中有所不同。我们的研究结果表明,在本地牡蛎已被灭绝的地区,M. gigas可以弥补O. edulis所执行的生态系统功能的损失。