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首页> 外文期刊>Aquatic Ecology >Compensatory growth of a submerged macrophyte (Vallisneria spiralis) in response to partial leaf removal: effects of sediment nutrient levels
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Compensatory growth of a submerged macrophyte (Vallisneria spiralis) in response to partial leaf removal: effects of sediment nutrient levels

机译:淹没植物(Vallisneria spiralis)对部分叶片去除的补偿性生长:沉积物养分水平的影响

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摘要

Many plants mitigate damage due to loss of tissues through compensatory growth, yet their compensatory abilities vary depending on physical and environmental conditions. We conducted an outdoor experiment using a 2 c 2 factorial experimental design (leaf damage and nutrient level), in order to evaluate the compensatory growth response of Vallisneria spiralis (a submerged macrophyte widely distributed in China) to partial leaf removal in two nutrient regimes. Our results reveal that under both high- and low-nutrient conditions, V. spiralis exhibited substantial compensatory growth response to partial leaf removal via accelerated growth rates, with significantly greater compensatory abilities observed in the high-nutrient sediments. These observations suggest that V. spiralis has a strong compensatory ability to partial leaf removal, providing arguably one of the major mechanisms for the coexistence of this plant with herbivores, in particular, in eutrophic freshwater ecosystems (e.g. Lake Taihu).
机译:许多植物通过代偿性生长减轻了由于组织损失而造成的损害,但其代偿能力因物理和环境条件而异。我们使用2 c 2阶乘实验设计(叶片损伤和营养水平)进行了室外实验,以评估在两种营养体系中Vallisneria spiralis(在中国广泛分布的一种被淹没的大型植物)对部分叶片去除的补偿性生长反应。我们的结果表明,在高养分和低养分条件下,螺旋葡萄通过加速生长速率表现出对部分叶片去除的实质性补偿生长反应,在高养分沉积物中观察到的补偿能力明显更高。这些观察结果表明,螺旋藻对部分叶片的去除具有很强的补偿能力,可以说是该植物与草食动物并存的主要机制之一,特别是在富营养化的淡水生态系统(例如太湖)中。

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