Comparing measures of species diversity from incomplete inventories: an update

被引:121
作者
Beck, Jan [1 ]
Schwanghart, Wolfgang [1 ]
机构
[1] Univ Basel, Dept Environm Sci, Basel, Switzerland
来源
METHODS IN ECOLOGY AND EVOLUTION | 2010年 / 1卷 / 01期
关键词
alpha diversity; effective number of species; Shannon's entropy; simulation; species richness; undersampling bias; RICHNESS; SAMPLE; ABUNDANCE; COMMUNITIES; SIMILARITY; COVERAGE; NUMBER;
D O I
10.1111/j.2041-210X.2009.00003.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
1. Measuring biodiversity quantitatively is a key component to its investigation, but many methods are known to be biased by undersampling (i.e. incomplete inventories), a common situation in ecological field studies. 2. Following a long tradition of comparing measures of alpha diversity to judge their usefulness, we used simulated data to assess bias of nine diversity measures - some of them proposed fairly recently, such as estimating true species richness depending on the completeness of inventories (Brose, U. & Martinez, N.D. Oikos (2004) 105, 292), bias-corrected Shannon diversity (Chao, A. & Shen, T.-J. Environmental and Ecological Statistics (2003) 10, 429), while others are commonly applied (e. g. Shannon's entropy, Fisher's alpha) or long known but rarely used (estimating Shannon's entropy from Fisher's alpha). 3. We conclude that the 'effective number of species' based on bias-corrected Shannon's entropy is an unbiased estimator of diversity at sample completeness c. > 0.5, while below that it is still less biased than, e.g., estimated species richness (Brose, U. & Martinez, N.D. Oikos (2004) 105, 292). 4. Fisher's alpha cannot be tested with the same rigour because it cannot measure the diversity of completely inventoried communities, and we present simulations illustrating this effect when sample completeness approaches high values. However, we can show that Fisher's a produces relatively stable values at low sample completeness (an effect previously shown only in empirical data), and we tentatively conclude that it may still be considered a good (possibly superior) measure of diversity if completeness is very low.
引用
收藏
页码:38 / 44
页数:7
相关论文
共 41 条
[1]  
[Anonymous], SPECIES PREDICTION D
[2]  
Beck Jan, 2006, Acta Zoologica Sinica, V52, P1148
[3]   Explaining the elevational diversity pattern of geometrid moths from Borneo: a test of five hypotheses [J].
Beck, Jan ;
Chey, Vun Khen .
JOURNAL OF BIOGEOGRAPHY, 2008, 35 (08) :1452-1464
[4]   Estimating regional species richness of tropical insects from museum data: a comparison of a geography-based and sample-based methods [J].
Beck, Jan ;
Kitching, Ian J. .
JOURNAL OF APPLIED ECOLOGY, 2007, 44 (03) :672-681
[5]  
Bortolus A, 2008, AMBIO, V37, P114, DOI 10.1579/0044-7447(2008)37[114:ECITBS]2.0.CO
[6]  
2
[7]   Estimating the richness of species with variable mobility [J].
Brose, U ;
Martinez, ND .
OIKOS, 2004, 105 (02) :292-300
[8]   Estimating species richness: Sensitivity to sample coverage and insensitivity to spatial patterns [J].
Brose, U ;
Martinez, ND ;
Williams, RJ .
ECOLOGY, 2003, 84 (09) :2364-2377
[9]   FITTING POISSON LOGNORMAL DISTRIBUTION TO SPECIES-ABUNDANCE DATA [J].
BULMER, MG .
BIOMETRICS, 1974, 30 (01) :101-110
[10]   Nonparametric estimation of Shannon's index of diversity when there are unseen species in sample [J].
Chao, A ;
Shen, TJ .
ENVIRONMENTAL AND ECOLOGICAL STATISTICS, 2003, 10 (04) :429-443