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首页> 外文期刊>Marine Environmental Research >Grazing rate of zebra mussel in a shallow eutrophicated bay of the Baltic Sea
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Grazing rate of zebra mussel in a shallow eutrophicated bay of the Baltic Sea

机译:在波罗的海的富营养化浅水湾斑马贻贝的放牧率

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摘要

Benthic suspension feeding is an important process in coastal ecosystems. Among all the World's oceans, coastal ecosystems are the most modified by human impact and changing at accelerating pace. It is complicated to understand, how various environmental factors affect feeding rates of suspension feeders in their natural habitats. Thus, shapes of such relationships are poorly described for several intersections of environmental gradients. In this study, relationships between grazing rates of an invasive bivalve Dreissena polymorpha and ambient environmental factors were investigated in a turbid eutrophic bay of the central Baltic Sea using a novel modelling method of Boosted Regression Trees (BRT), a statistical tool able to handle non-normal distributions, complex relationships, and interactive effects. Feeding rates of mussels were derived from field populations by measuring the content of algal pigments in specimens collected from their natural habitat. The content of pigments was converted to feeding rate separately each time using field experiments measuring simultaneously the content of pigments and biodeposition of mussels. The results suggest that feeding rates of D. polymorpha are related to several environmental factors which gradients outreach the optimal range for the local mussel population. All the observed effects were non-linear with complex shapes. Variability along the resource gradient was the most important predictor of mussel feeding, followed by salinity and disturbance caused by wind. The most important interaction occurred between disturbance and resource gradient, while feeding function showed more plasticity along the latter. Mapping of environmental tipping points with the aid of machine learning methods may enable to concentrate the most relevant information about ecological functions worldwide.
机译:底栖混养是沿海生态系统的重要过程。在世界所有海洋中,沿海生态系统受人类影响和变化的步伐变化最快。各种环境因素如何影响悬浮喂食器在其自然栖息地的喂食速度是很复杂的。因此,对于环境梯度的多个交叉点,这种关系的形状描述得很差。在这项研究中,采用新颖的Boosted Regression Trees(BRT)建模方法,研究了波罗的海中部混浊富营养化海湾中入侵双壳类Dreissena polymorpha放牧率与周围环境因素之间的关系,该统计工具能够处理非-正态分布,复杂的关系和交互效果。贻贝的取食率是通过测量从自然栖息地采集的标本中藻类色素的含量而从田间种群中得出的。每次使用同时测量颜料含量和贻贝生物沉积的现场实验,将颜料含量分别转换为进料速率。结果表明,D。polymorpha的摄食率与几个环境因素有关,这些环境因素的梯度超出了当地贻贝种群的最佳范围。所有观察到的效果都是非线性的,形状复杂。沿资源梯度的变化是贻贝摄食的最重要预测指标,其次是盐度和风引起的扰动。最重要的相互作用发生在扰动和资源梯度之间,而馈送功能则沿后者表现出更多的可塑性。借助机器学习方法绘制环境引爆点,可能使人们能够集中有关全球生态功能的最相关信息。

著录项

  • 来源
    《Marine Environmental Research》 |2014年第12期|43-50|共8页
  • 作者单位

    University of Tartu, Estonian Marine Institute, Department of Marine Biology, Maeealuse 14, 12618 Tallinn, Estonia;

    University of Tartu, Estonian Marine Institute, Department of Marine Biology, Maeealuse 14, 12618 Tallinn, Estonia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dreissena polymorpha; Feeding; Chlorophyll; Salinity; Seston; BRT modelling;

    机译:德瑞香馈送;叶绿素盐度;塞斯顿BRT建模;

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