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Resources utilization and trophic niche between silver carp and bighead carp in two mesotrophic deep reservoirs

机译:两种中营养深层水库silver鱼与head鱼的资源利用及营养生态位。

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Resources utilization and trophic structure in aquatic food webs play important roles in the ecosystem stability and functioning. Silver carp (SC, Hypophthalmichthys molitrix ) and bighead carp (BC, Hypophthalmichthys nobilis ) are intensively stocked in lakes and reservoirs in China and share similar food resources and trophic positions in water bodies. To better understand the ecological roles of SC and BC in natural freshwater, two mesotrophic reservoirs (Nanwan and Nianyushan) were selected to compare resource utilization and the trophic niche of these two fish species. Data analysis using Bayesian mixing model showed that SC was more like a fine particulate organic matter (fPOM) feeder, while BC consumed more coarse particulate organic matter (cPOM) and displayed a higher trophic position in both reservoirs. In contrast, niche breadths represented by the corrected standard ellipse area (SEA_(C)) were essentially the same for SC and BC in Nanwan (SEA_(C) = 6.1 for SC and BC), but much larger for silver carp in Nianyushan (SEA_(C) for SC: 11.6, SEA_(C) for BC: 4.2). The high stocking ratio of SC/BC in Nianyushan was the probable reason for the large SEA_(C) of silver carp, which suggested that silver carp could use more food resources and become more competitive with a higher stocking biomass ratio. The results indicated that the trophic partitioning of filter feeders might be regulated by the stocking biomass ratio of the fish to some extent.
机译:水生食物网中的资源利用和营养结构在生态系统的稳定和功能中发挥着重要作用。在中国湖泊和水库中大量放养鱼(SC,Hypophthalmichthys molitrix)和big鱼(BC,Hypophthalmichthys nobilis),它们在水体中有相似的食物资源和营养位置。为了更好地了解天然淡水中SC和BC的生态作用,选择了两个中营养水库(Nanwan和Nianyushan)来比较这两种鱼类的资源利用和营养位。使用贝叶斯混合模型进行的数据分析表明,SC更像是细颗粒有机物(fPOM)的进料器,而BC则消耗了更多的粗颗粒有机物(cPOM),并且在两个储层中都表现出较高的营养位置。相比之下,南湾的SC和BC的校正标准椭圆面积(SEA_(C))表示的利基宽度基本相同(SC和BC的SEA_(C)= 6.1),而年yu山的silver鱼则更大( SC的SEA_(C):11.6,BC的SEA_(C):4.2)。年玉山SC / BC的高放养率是silver鱼SEA_(C)偏大的可能原因,这表明silver鱼可以利用更多的食物资源并以更高的放养生物量比更具竞争力。结果表明,滤食性动物的营养分配可能受到鱼类放养生物量比例的调节。

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