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首页> 外文期刊>Ecological indicators >The relationship between percentage of singletons and sampling effort: A new approach to reduce the bias of richness estimates
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The relationship between percentage of singletons and sampling effort: A new approach to reduce the bias of richness estimates

机译:单身人士的百分比与抽样工作之间的关系:一种减少丰富度估计值偏差的新方法

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摘要

Estimate the richness of a community with accuracy despite differences in sampling effort is a key aspect to monitoring high diverse ecosystems. We compiled a worldwide multitaxa database, comprising 185 communities, in order to study the relationship between the percentage of species represented by one individual (singletons) and the intensity of sampling (number of individuals divided by the number of species sampled). The database was used to empirically adjust a correction factor to improve the performance of non-parametrical estimators under conditions of low sampling effort. The correction factor was tested on seven estimators (Chao1, Chao2, Jack1, Jack2, ACE, ICE and Bootstrap). The correction factor was able to reduce the bias of all estimators tested under conditions of undersampling, while converging to the original uncorrected values at higher intensities. Our findings led us to recommend the threshold of 20 individuals/species, or less than 21% of singletons, as a minimum sampling effort to produce reliable richness estimates of high diverse ecosystems using corrected non-parametric estimators. This threshold rise for 50 individuals/species if non-corrected estimators are used which implies in an economy of 60% of sampling effort if the correction factor is used.
机译:尽管采样工作有所不同,但准确估算社区的丰富度是监测高度多样化的生态系统的关键方面。我们研究了一个由185个社区组成的世界范围内的多类群数据库,以研究由一个个体(单例)代表的物种百分比与采样强度(个体数除以采样物种数)之间的关系。该数据库用于根据经验调整校正因子,以提高在低采样工作量下的非参数估计量的性能。在七个估计量(Chao1,Chao2,Jack1,Jack2,ACE,ICE和Bootstrap)上测试了校正因子。校正因子能够减少在欠采样条件下测试的所有估计量的偏差,同时在较高强度下收敛到原始的未校正值。我们的发现促使我们建议使用20个个体/物种的阈值,或少于单身物种的21%,作为使用校正后的非参数估计量进行高多样性生态系统可靠的丰富度估计所需的最小采样工作。如果使用了未校正的估计量,则该阈值将增加50个个体/物种,这意味着如果使用校正因子,则可节省60%的采样工作量。

著录项

  • 来源
    《Ecological indicators》 |2012年第1期|p.164-169|共6页
  • 作者单位

    Departamento de Sistematica e Ecologia, Centra de Ciencias Exatas e da Natureza, Universidade Federal da Paraiba, Cidade Universitaria, Joao Pessoa Paraiba, 58059-900, Brazil;

    Departamento de Biologia, Universidade Estadual da Paraiba, Av. das Baraunas, 351/Campus UniversMrio, Bodocongo, 58109-753, Campina Grande, Paraiba, Brazil;

    Departamento de Sistematica e Ecologia, Centra de Ciencias Exatas e da Natureza, Universidade Federal da Paraiba, Cidade Universitaria, Joao Pessoa Paraiba, 58059-900, Brazil;

    Departamento de Sistematica e Ecologia, Centra de Ciencias Exatas e da Natureza, Universidade Federal da Paraiba, Cidade Universitaria, Joao Pessoa Paraiba, 58059-900, Brazil;

    Departamento de Engenharia e Meio Ambiente, Centro de Ciencias Aplicadas e Educacao, Universidade Federal da Paraiba - Campus IV, R: Mangueira s, Centro CEP: 58.297-000, Rio Tinto, Paraiba, Brazil;

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

    species richness estimation; sampling intensity; singletons; inventory completeness; chaol; jackknife; bootstrap; Chao2; ACE; ICE;

    机译:物种丰富度估算;采样强度单身人士;库存完整性;昭折刀引导程序朝2;高手;冰;

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