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[热带无脊椎动物的采样优化:以委内瑞拉的蜣螂(鞘翅目:金龟亚科)为例]

[Sampling optimization for tropical invertebrates: an example using dung beetles (Coleoptera: Scarabaeinae) in Venezuela].

作者信息

Ferrer-Paris José Rafael, Sánchez-Mercado Ada, Rodríguez Jon Paul

机构信息

Laboratorio de Ecologia Espacial, Centro de Estudios Botánicos y Agroforestales, Instituto Venezolano de Investigaciones Cientificas, Apartado 20632, Caracas, 1020-A, Venezuela.

出版信息

Rev Biol Trop. 2013 Mar;61(1):89-110.

Abstract

The development of efficient sampling protocols is an essential prerequisite to evaluate and identify priority conservation areas. There are f ew protocols for fauna inventory and monitoring in wide geographical scales for the tropics, where the complexity of communities and high biodiversity levels, make the implementation of efficient protocols more difficult. We proposed here a simple strategy to optimize the capture of dung beetles, applied to sampling with baited traps and generalizable to other sampling methods. We analyzed data from eight transects sampled between 2006-2008 withthe aim to develop an uniform sampling design, that allows to confidently estimate species richness, abundance and composition at wide geographical scales. We examined four characteristics of any sampling design that affect the effectiveness of the sampling effort: the number of traps, sampling duration, type and proportion of bait, and spatial arrangement of the traps along transects. We used species accumulation curves, rank-abundance plots, indicator species analysis, and multivariate correlograms. We captured 40 337 individuals (115 species/morphospecies of 23 genera). Most species were attracted by both dung and carrion, but two thirds had greater relative abundance in traps baited with human dung. Different aspects of the sampling design influenced each diversity attribute in different ways. To obtain reliable richness estimates, the number of traps was the most important aspect. Accurate abundance estimates were obtained when the sampling period was increased, while the spatial arrangement of traps was determinant to capture the species composition pattern. An optimum sampling strategy for accurate estimates of richness, abundance and diversity should: (1) set 50-70 traps to maximize the number of species detected, (2) get samples during 48-72 hours and set trap groups along the transect to reliably estimate species abundance, (3) set traps in groups of at least 10 traps to suitably record the local species composition, and (4) separate trap groups by a distance greater than 5-10km to avoid spatial autocorrelation. For the evaluation of other sampling protocols we recommend to, first, identify the elements of sampling design that could affect the sampled effort (the number of traps, sampling duration, type and proportion of bait) and their spatial distribution (spatial arrangement of the traps) and then, to evaluate how they affect richness, abundance and species composition estimates.

摘要

制定高效的采样方案是评估和确定优先保护区域的重要前提。对于热带地区而言,在广阔地理尺度上进行动物区系清查和监测的方案很少,因为群落的复杂性和高生物多样性水平使得实施高效方案更加困难。我们在此提出一种优化蜣螂捕获量的简单策略,该策略适用于诱饵陷阱采样,并可推广到其他采样方法。我们分析了2006年至2008年间八个样带的数据,目的是开发一种统一的采样设计,以便能够在广阔地理尺度上可靠地估计物种丰富度、丰度和组成。我们研究了影响采样效果的任何采样设计的四个特征:陷阱数量、采样持续时间、诱饵类型和比例以及陷阱沿样带的空间排列。我们使用了物种累积曲线、秩-丰度图、指示物种分析和多元相关图。我们捕获了40337只个体(23个属的115个物种/形态种)。大多数物种被粪便和腐肉吸引,但三分之二的物种在用人粪诱饵的陷阱中相对丰度更高。采样设计的不同方面以不同方式影响每个多样性属性。为了获得可靠的丰富度估计值,陷阱数量是最重要的方面。当采样期延长时可获得准确的丰度估计值,而陷阱的空间排列对于捕捉物种组成模式至关重要。一种用于准确估计丰富度、丰度和多样性的最佳采样策略应:(1)设置50至70个陷阱以最大化检测到的物种数量,(2)在48至72小时内采集样本,并沿样带设置陷阱组以可靠地估计物种丰度,(3)将陷阱成组设置,每组至少10个陷阱以适当地记录当地物种组成,(4)将陷阱组相隔大于5至10公里的距离以避免空间自相关。对于评估其他采样方案,我们建议首先确定可能影响采样效果的采样设计要素(陷阱数量、采样持续时间、诱饵类型和比例)及其空间分布(陷阱的空间排列),然后评估它们如何影响丰富度、丰度和物种组成估计值。

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