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首页> 外文期刊>Hydrobiologia >Evaluation of Manila clam (Ruditapes philippinarum) growth and microphytobenthos resuspension in a subarctic lagoon in Japan
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Evaluation of Manila clam (Ruditapes philippinarum) growth and microphytobenthos resuspension in a subarctic lagoon in Japan

机译:日本北极圈泻湖中马尼拉蛤(Ruditapes philippinarum)生长和微生底栖动物重悬的评估

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Several studies have shown that suspended microphytobenthos are important food source for clams. We hypothesized that the degree of the resuspension flux of microphytobenthos must play important roles in growth rate and size of clams, and investigated it through observations over 2 years at two stations (lake mouth and inner lake) in a subarctic lagoon (Akkeshi Lake) and numerical modeling. Large clams (length > 40 mm) were seldom observed at the inner lake. The growth rates of 40 mm clams incubated in cages at two stations were also much greater at the outer station. Resuspension of microphytobenthos occurred frequently at the lake mouth due to the high current speed. These results indicate that differences in food availability due to the current and resuspension were the primary cause of the growth differences between the two stations. The relationships between environmental factors, food availability, and clam growth were also modeled with long-term simulation. Once more, the different clam growth in the two lake zones was ascribed to the resuspension flux of microphytobenthos. The shell growth limited at approximately 40 mm at the inner lake was due to strong growth limitation. Both filed measurements and modeling demonstrated that microphytobenthos resuspension can be a remarkable food source for clams.
机译:多项研究表明,悬浮的微底栖动物是蛤类的重要食物来源。我们假设微底栖动物的重悬浮通量的程度必须在蛤的生长速度和大小中起重要作用,并通过对北极圈泻湖(Akkeshi湖)和湖中两个泻湖(湖口和内湖)2年以上的观测进行了调查。数值建模。在内湖很少观察到大蛤((长> 40 mm)。在两个站点在笼子中孵化的40毫米蛤的生长速度在外部站点也更高。由于高电流速度,微植物底栖动物经常在湖口重悬。这些结果表明,由于水位和重新悬浮而造成的粮食供应量差异是两个监测站之间增长差异的主要原因。环境因素,食物供应和蛤,生长之间的关系也可以通过长期模拟来建模。再一次,两个湖区蛤的不同生长归因于微底栖动物的重悬浮通量。由于强烈的生长限制,内湖的壳生长限制在大约40 mm。进行的测量和建模均表明,微植物底栖动物的重悬可能是蛤类的重要食物来源。

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