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Waves and high nutrient loads jointly decrease survival and separately affect morphological and biomechanical properties in the seagrass Zostera noltii

机译:海浪和高营养负荷共同降低了海草生存,并分别影响了海草的形态和生物力学特性

摘要

In an 8-week aquarium experiment, we investigated the interactive effects of waves (present vs. absent) and water-column nutrient level (high vs. low) on the survival, growth, morphology, and biomechanics of the seagrass, Zostera noltii. Survival was reduced when plants were exposed to both waves and high nutrient levels. Wave and nutrient interaction significantly reduced aboveground biomass and leaf lengths, whereas waves independently reduced growth rate, internode abundance, elongation, and appearance rates. Nutrient supply significantly reduced the strength of the leaves. Wave and nutrient interaction was the main driving force affecting survival and morphological properties of seagrass, whereas dynamical characteristics were independently affected by waves, and nutrient supply affected mainly biomechanical properties. In conclusion, this experiment revealed that the combination of exposure to waves and high nutrient levels was detrimental for Z. noltii, which indicates that this could be an important unexplored force involved in seagrass declines.
机译:在一个为期8周的水族箱实验中,我们研究了海浪(存在或不存在)和水柱养分水平(高与低)对海草(Zostera noltii)的存活,生长,形态和生物力学的相互作用。当植物同时受到海浪和高营养水平的影响时,存活率降低。波浪和养分相互作用显着减少了地上生物量和叶片长度,而波浪独立地降低了生长速率,节间丰度,伸长率和外观速率。营养供应大大降低了叶子的强度。波浪和养分的相互作用是影响海草存活和形态特性的主要驱动力,而动力学特性受波浪独立影响,养分供应主要影响生物力学特性。总之,该实验表明,暴露于海浪和高营养水平的组合对诺氏沼虾有害,这表明这可能是参与海草衰退的重要未开发力量。

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