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Shell properties of commercial clam Chamelea gallina are influenced by temperature and solar radiation along a wide latitudinal gradient

机译:商业蛤ChaChamelea gallina的壳特性受温度和太阳辐射沿宽纬度梯度的影响

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摘要

Phenotype can express different morphologies in response to biotic or abiotic environmental influences. Mollusks are particularly sensitive to different environmental parameters, showing macroscale shell morphology variations in response to environmental parameters. Few studies concern shell variations at the different scale levels along environmental gradients. Here, we investigate shell features at the macro, micro and nanoscale, in populations of the commercially important clam Chamelea gallina along a latitudinal gradient (~400 km) of temperature and solar radiation in the Adriatic Sea (Italian cost). Six populations of clams with shells of the same length were analyzed. Shells from the warmest and the most irradiated population were thinner, with more oval shape, more porous and lighter, showing lower load fracture. However, no variation was observed in shell CaCO3 polymorphism (100% aragonite) or in compositional and textural shell parameters, indicating no effect of the environmental parameters on the basic processes of biomineralization. Because of the importance of this species as commercial resource in the Adriatic Sea, the experimentally quantified and significant variations of mass and fracture load in C. gallina shells along the latitudinal gradient may have economic implications for fisheries producing different economical yield for fishermen and consumers along the Adriatic coastline.
机译:表型可以响应生物或非生物环境影响而表达不同的形态。软体动物对不同的环境参数特别敏感,显示出响应环境参数的宏观壳形态变化。很少有研究关注沿环境梯度在不同尺度水平下壳的变化。在这里,我们研究了商业上重要的蛤Cha(Chamelea gallina)种群在宏观,微观和纳米尺度上沿亚得里亚海的温度和太阳辐射的纬度梯度(〜400 km)的壳特征(意大利成本)。分析了六个具有相同长度的壳的蛤种群。来自最温暖和最受辐射的种群的壳较薄,呈椭圆形,多孔且较轻,显示出较低的载荷断裂。然而,在壳中的CaCO3多态性(100%文石)或壳的组成和质地参数中未观察到任何变化,表明环境参数对生物矿化的基本过程没有影响。由于该物种在亚得里亚海中作为商业资源的重要性,因此沿经纬度梯度在实验上量化和显着改变了鸡冠壳的质量和破裂负荷,可能会对渔业产生经济影响,从而使沿岸渔民和消费者产生不同的经济产量亚得里亚海的海岸线。

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