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Mummichog Fundulus heteroclitus responses to long-term, whole-ecosystem nutrient enrichment

机译:Mummichog ulu藜对长期,全生态系统养分富集的响应

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The effects of eutrophication on coastal plants and sessile animals are becoming well known, but responses of mobile species are less well studied. Here, we link variation in abundance, biomass, body size, growth rate, and resource utilization in mummichogs Fundulus heteroclitus >40 mm in length to experimental nutrient enrichment in Plum Island Sound, Massachusetts, USA. To mimic cultural eutrophication, dissolved fertilizer was released into replicate saltmarsh creeks on each rising tide throughout entire growing seasons. In the summer of the sixth year of enrichment, we released coded-wire tagged mummichogs into nutrient-enriched (n = 3733 fish) and reference (n = 3894 fish) creeks and recaptured them over the next 2 mo. We found increased abundance (by 37%), biomass (58%), body size (8%), and herbivory (115%, measured as photosynthetic gut pigment content) in nutrient-enriched creeks, although body condition was unaffected. However, individual growth rates were 43 % lower in nutrient-enriched creeks. Nutrient enrichment stimulated primary production, causing a bottom-up enrichment of the food web which fostered increased biomass and body size. However, the reduction in growth rate indicates an adverse consequence of long-term nutrient enrichment. This negative effect occurred in the absence of increased hypoxia in these highly tidally (4 m amplitude) flushed study creeks. The mummichog is an important predator/grazer in salt marshes, and nutrient-induced alterations in biomass or resource utilization will directly or indirectly affect lower trophic levels, including ben-thic algae, thereby impacting the ecosystem-wide response to eutrophication.
机译:富营养化对沿海植物和无柄动物的影响已广为人知,但对流动物种的反应研究较少。在这里,我们将长度大于40 mm的mummichogs Fundulus heteroclitus的丰度,生物量,体重,生长率和资源利用的变化与美国马萨诸塞州Plum Island Sound的实验营养富集联系起来。为了模拟文化富营养化,在整个生长季节的每次涨潮中,将溶解的肥料释放到复制的盐沼小溪中。在浓缩的第六年夏天,我们将编码线标记的木乃伊鱼放到营养丰富的小溪(n = 3733条鱼)和参考小溪(n = 3894条鱼)中,并在接下来的2个月内重新捕获它们。我们发现营养丰富的小溪中的丰度增加了37%,生物量增加了58%,体型增加了8%,草食性增加了115%(以光合肠道色素含量衡量),尽管身体状况没有受到影响。但是,在营养丰富的小河中,个体生长速度降低了43%。营养丰富刺激初级生产,导致食物网自下而上的富集,从而促进了生物量和体重的增加。然而,增长率的降低表明长期营养富集的不利后果。在这些潮汐高潮(4 m振幅)的研究小溪中,在缺氧不增加的情况下发生了这种负面影响。牧草是盐沼中的重要捕食者/放牧者,养分引起的生物量或资源利用的变化将直接或间接影响较低营养水平,包括本海藻,从而影响整个生态系统对富营养化的响应。

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