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The Effect of Depth on the Morphology Bacterial Clearance and Respiration of the Mediterranean Sponge Chondrosia reniformis (Nardo 1847)

机译:深度对地中海海绵的形态细菌间隙和呼吸的影响(Nardo1847)

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摘要

To support the successful application of sponges for water purification and collagen production, we evaluated the effect of depth on sponge morphology, growth, physiology, and functioning. Specimens of Eastern Mediterranean populations of the sponge (Nardo, 1847) (Demospongiae, Chondrosiida, Chondrosiidae) were reciprocally transplanted between 5 and 20 m depth within the Kaş-Kekova Marine Reserve Area. Control sponges at 5 m had fewer but larger oscula than their conspecifics at 20 m, and a significant inverse relationship between the osculum density and size was found in specimens growing along a natural depth gradient. Sponges transplanted from 20 to 5 m altered their morphology to match the 5 m control sponges, producing fewer but larger oscula, whereas explants transplanted from 5 to 20 m did not show a reciprocal morphological plasticity. Despite the changes in morphology, the clearance, respiration, and growth rates were comparable among all the experimental groups. This indicates that depth-induced morphological changes do not affect the overall performance of the sponges. Hence, the potential for the growth and bioremediation of in mariculture is not likely to change with varying culture depth. The collagen content, however, was higher in shallow water compared to deeper-growing sponges, which requires further study to optimize collagen production.
机译:为了支持成功应用海绵的水净化和胶原蛋白生产,我们评估了深度对海绵形态,生长,生理学和功能的影响。海绵东部地中海人口标本(Nardo,1847)(Demosphongiae,Chondrosiida,Chondrosiidae)在Kaş-Kekova海洋储备地区的5到20米深度之间互殖。在5米处的控制海绵较少但较大的OSCULA在20米处比它们的消费物较大,并且在沿着天然深度梯度生长的标本中发现了静脉内密度和尺寸之间的显着反相关系。移植到20至5米的海绵改变了它们的形态,以匹配5米的控制海绵,产生较少但较大的OSCULA,而移植5至20米的外植体没有显示往复形态可塑性。尽管形态学变化,但在所有实验组中,清除,呼吸和生长率相当。这表明深度诱导的形态变化不会影响海绵的整体性能。因此,在水陆养殖中的生长和生物修复的潜力不可能随着不同的培养深度而变化。然而,与较深的海绵相比,胶原蛋白含量较高,这需要进一步研究优化胶原蛋白的生产。

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