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Measuring selective mortality from otoliths and similar structures: a practical guide for describing multivariate selection from cross-sectional data

机译:测量耳石和类似结构的选择性死亡率:从横截面数据描述多元选择的实用指南

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摘要

Selective mortality is an important process influencing both the dynamics of marine populations and the evolution of their life histories. Despite a large and growing interest in measuring selective mortality, studies of marine species can face some serious methodological and analytical challenges. In particular, many studies of selection in marine environments use a cross-sectional approach in which fates of individuals are unknown but the distributions of trait values before and after a period of selective mortality may be compared. This approach is often used because many marine species have morphological structures (e.g. otoliths in fishes, statoliths in some invertebrates) that contain a permanent record of trait values. Although these structures often contain information on multiple, related traits, interpretation of selection measures has been limited because most studies of selection based on cross-sectional data consider selection 1 trait at a time, despite known problems with trait correlations. Here, we detail how cross-sectional data can be analyzed within a multivariate framework and provide a practical guide for conducting these types of analyses. We illustrate these methods by applying them to empirical studies of selective mortality on early life history traits in 2 species of reef fish. These examples demonstrate that analyzing selective mortality in a multivariate framework can vastly improve estimates of selection and yield new insight into how combinations of traits can interact to influence survival. Accompanying the paper are 2 R scripts that can be used to perform the calculations described here and assist with visualizing selection on multiple traits.
机译:选择性死亡率是影响海洋人口动态及其生活史演变的重要过程。尽管人们对测量选择性死亡率的兴趣日益浓厚,但对海洋物种的研究仍可能面临一些严重的方法论和分析挑战。特别是,许多在海洋环境中进行选择的研究都采用了一种截面方法,其中个体的命运是未知的,但是可以比较一段选择性死亡率前后的特征值分布。由于许多海洋物种的形态结构(例如鱼类的耳石,某些无脊椎动物的石脚石)具有永久记录的特征值,因此经常使用该方法。尽管这些结构通常包含有关多个相关性状的信息,但是选择度量的解释受到限制,因为尽管基于性状相关的已知问题,但大多数基于横截面数据的选择研究一次都考虑了选择1性状。在这里,我们详细介绍了如何在多元框架内分析横截面数据,并为进行此类分析提供了实用指南。我们通过将这些方法应用于两种鱼类的早期生命史特征选择性死亡率的经验研究来说明这些方法。这些例子表明,在多变量框架下分析选择性死亡率可以极大地提高对选择的估计,并获得有关性状组合如何相互作用以影响生存的新见解。本文随附的是2个R脚本,可用于执行此处所述的计算并有助于可视化多个性状的选择。

著录项

  • 来源
    《Marine ecology progress series》 |2012年第19期|151-163|共13页
  • 作者单位

    National Center for Ecological Analysis and Synthesis, Santa Barbara, California 93101, USA;

    Marine Biology & Fisheries, Rosenstiel School of Marine and Atmospheric Science, 4600 Rickenbacker Causeway,University of Miami, Miami, Florida 33149, USA,Department of Zoology, Oregon State University, 3029 Cordley Hall, Corvallis, Oregon 97330, USA;

    Marine Biology & Fisheries, Rosenstiel School of Marine and Atmospheric Science, 4600 Rickenbacker Causeway,University of Miami, Miami, Florida 33149, USA,National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Office of Habitat Conservation, 1315 East West Hwy, Silver Spring, Maryland 20910, USA;

    Marine Biology & Fisheries, Rosenstiel School of Marine and Atmospheric Science, 4600 Rickenbacker Causeway,University of Miami, Miami, Florida 33149, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    collinearity; correlated traits; larval survival; natural selection; selection gradients; stegastes partitus; thalassoma bifasciatum;

    机译:共线性相关性状幼虫存活自然选择;选择梯度;局部抽气睑板裂;

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