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Ecology of antifouling resistance in the bladder wrack Fucus vesiculosus: patterns of microfouling and antimicrobial protection

机译:膀胱残骸褐藻(Fusus vesiculosus)的抗污垢生态学:微垢模式和抗菌保护

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摘要

The impact of moderate environmental stress may be modulated by stress-induced shifts of biotic interactions such as host – epibiont relationships. We studied the stress regime in shallow Western Baltic habitats, the variability of fouling at different temporal and spatial scales, and whether common stressors - low light, high temperature, grazing – affect the abundance and composition of the biofilm on a regionally important macroalga, the bladder wrack Fucus vesiculosus. We further explore the alga’s capacity to chemically modulate the recruitment of microfoulers and whether this ability is impacted by stress. In laboratory, mesocosm and field experiments fouling pressure and epibiotic cover on the algae varied strongly with changing environmental conditions such as temperature, irradiance, depth or grazing. The expectation that abiotic stress affects the fouling-modulating ability of the alga and, thus, indirectly produces the observed variability of epibiosis was not generally confirmed. Indeed, while the strength of chemical antifouling resistance varied seasonally, with a maximum in winter/spring and a minimum in late summer, this could not be related to temporal patterns of environmental stress, fouling pressure, or growth of Fucus. Only the seasonal variation in reproduction seemed to be in phase with antifouling activity. Controlled experiments confirmed that resistance strength was not affected by temperature or grazing, and only moderately by light. We conclude that the fouling modulation ability of Fucus vesiculosus may suffer from light-reduction (e.g. by eutrophication effects) while they are not sensitive to the predicted warming or enhanced grazing.
机译:中度环境压力的影响可以通过压力诱导的生物相互作用的转移来调节,例如宿主与表观生物的关系。我们研究了西部波罗的海浅海生境的压力状况,不同时空尺度上的结垢变化以及常见的压力源(弱光,高温,放牧)是否影响区域重要的大型藻类生物膜的丰度和组成。膀胱残骸Fucus vesiculosus。我们将进一步研究藻类化学调节微污物招募的能力,以及这种能力是否受到压力的影响。在实验室中,中观试验和野外实验结果表明,藻类的结垢压力和表观生物覆盖度随环境条件(例如温度,辐照度,深度或放牧)的变化而变化很大。通常,没有确认到非生物胁迫会影响藻类的结垢调节能力,从而间接产生所观察到的外生性变异性的期望。确实,尽管化学防污剂的强度随季节变化,在冬季/春季达到最大值,而在夏末达到最小值,但这与环境压力,结垢压力或榕属菌的生长的时间模式无关。只有繁殖的季节性变化似乎与防污活性相一致。对照实验证实,电阻强度不受温度或掠食的影响,仅受光照适度影响。我们得出的结论是,墨角榕的结垢调节能力可能会受到减光作用(例如富营养化作用),而对预测的变暖或放牧不敏感。

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