Literature DB >> 23282082

Pseudoreplication in tropical forests and the resulting effects on biodiversity conservation.

Benjamin S Ramage1, Douglas Sheil, Hannah M W Salim, Christine Fletcher, Nur-Zati A Mustafa, Joann C Luruthusamay, Rhett D Harrison, Elizabeth Butod, Ahmad Dzamir Dzulkiply, Abd Rahman Kassim, Matthew D Potts.   

Abstract

Tropical forest ecosystems are threatened by habitat conversion and other anthropogenic actions. Timber production forests can augment the conservation value of primary forest reserves, but studies of logging effects often yield contradictory findings and thus inhibit efforts to develop clear conservation strategies. We hypothesized that much of this variability reflects a common methodological flaw, simple pseudoreplication, that confounds logging effects with preexisting spatial variation. We reviewed recent studies of the effects of logging on biodiversity in tropical forests (n = 77) and found that 68% were definitively pseudoreplicated while only 7% were definitively free of pseudoreplication. The remaining proportion could not be clearly categorized. In addition, we collected compositional data on 7 taxa in 24 primary forest research plots and systematically analyzed subsets of these plots to calculate the probability that a pseudoreplicated comparison would incorrectly identify a treatment effect. Rates of false inference (i.e., the spurious detection of a treatment effect) were >0.5 for 2 taxa, 0.3-0.5 for 2 taxa, and <0.3 for 3 taxa. Our findings demonstrate that tropical conservation strategies are being informed by a body of literature that is rife with unwarranted inferences. Addressing pseudoreplication is essential for accurately assessing biodiversity in logged forests, identifying the relative merits of specific management practices and landscape configurations, and effectively balancing conservation with timber production in tropical forests.
© 2012 Society for Conservation Biology.

Mesh:

Year:  2013        PMID: 23282082     DOI: 10.1111/cobi.12004

Source DB:  PubMed          Journal:  Conserv Biol        ISSN: 0888-8892            Impact factor:   6.560


  16 in total

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5.  Reconciling timber extraction with biodiversity conservation in tropical forests using reduced-impact logging.

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8.  Impacts of salvage logging on biodiversity: a meta-analysis.

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Journal:  J Appl Ecol       Date:  2017-07-05       Impact factor: 6.528

9.  Pseudoreplication in genomic-scale data sets.

Authors:  Robin S Waples; Ryan K Waples; Eric J Ward
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10.  BIOFRAG - a new database for analyzing BIOdiversity responses to forest FRAGmentation.

Authors:  Marion Pfeifer; Veronique Lefebvre; Toby A Gardner; Victor Arroyo-Rodriguez; Lander Baeten; Cristina Banks-Leite; Jos Barlow; Matthew G Betts; Joerg Brunet; Alexis Cerezo; Laura M Cisneros; Stuart Collard; Neil D'Cruze; Catarina da Silva Motta; Stephanie Duguay; Hilde Eggermont; Felix Eigenbrod; Adam S Hadley; Thor R Hanson; Joseph E Hawes; Tamara Heartsill Scalley; Brian T Klingbeil; Annette Kolb; Urs Kormann; Sunil Kumar; Thibault Lachat; Poppy Lakeman Fraser; Victoria Lantschner; William F Laurance; Inara R Leal; Luc Lens; Charles J Marsh; Guido F Medina-Rangel; Stephanie Melles; Dirk Mezger; Johan A Oldekop; William L Overal; Charlotte Owen; Carlos A Peres; Ben Phalan; Anna M Pidgeon; Oriana Pilia; Hugh P Possingham; Max L Possingham; Dinarzarde C Raheem; Danilo B Ribeiro; Jose D Ribeiro Neto; W Douglas Robinson; Richard Robinson; Trina Rytwinski; Christoph Scherber; Eleanor M Slade; Eduardo Somarriba; Philip C Stouffer; Matthew J Struebig; Jason M Tylianakis; Teja Tscharntke; Andrew J Tyre; Jose N Urbina Cardona; Heraldo L Vasconcelos; Oliver Wearn; Konstans Wells; Michael R Willig; Eric Wood; Richard P Young; Andrew V Bradley; Robert M Ewers
Journal:  Ecol Evol       Date:  2014-03-27       Impact factor: 2.912

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