Genetic diversity and its value: conservation genetics meets economics

Does drawing economic benefit from nature impinge on conservation? This has been a subject of controversy in the literature. The article presents a management method to overcome this possible dilemma, and reconcile conservation biology with economics. It is based on recent advances in the mathematic...

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Published inConservation genetics resources Vol. 12; no. 1; pp. 141 - 151
Main Authors Bonneuil, Noël, Boucekkine, Raouf
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.03.2020
Springer Nature B.V
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Abstract Does drawing economic benefit from nature impinge on conservation? This has been a subject of controversy in the literature. The article presents a management method to overcome this possible dilemma, and reconcile conservation biology with economics. It is based on recent advances in the mathematical theory of dynamic systems under viability constraints. In the case of a one-locus two-allele plant coexisting with a one-locus two-allele parasite, the method provides a rule for deciding when and to what extent the resistant or the susceptible strain should be cultivated, in the uncertain time-varying presence of the parasite. This is useful for preventing the fixation of the susceptible allele—and thereby limiting the plant’s vulnerability in the medium term, should the parasite reappear. The method thus provides an aid to decision for economic and ecology-friendly profitability.
AbstractList Does drawing economic benefit from nature impinge on conservation? This has been a subject of controversy in the literature. The article presents a management method to overcome this possible dilemma, and reconcile conservation biology with economics. It is based on recent advances in the mathematical theory of dynamic systems under viability constraints. In the case of a one-locus two-allele plant coexisting with a one-locus two-allele parasite, the method provides a rule for deciding when and to what extent the resistant or the susceptible strain should be cultivated, in the uncertain time-varying presence of the parasite. This is useful for preventing the fixation of the susceptible allele - and thereby limiting the plant's vulnerability in the medium term, should the parasite reappear. The method thus provides an aid to decision for economic and ecology-friendly profitability.
Author Boucekkine, Raouf
Bonneuil, Noël
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Keywords 92D10
Q01
Q56
92D25
Sustainability
Genetic resistance
Genetic diversity
Genetic distance
93C95
Q20
viability
93C83
C-viability
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References_xml – reference: BonneuilNMultiallelic polymorphism maintained by unpredictable migration and selectionJ Theor Biol201229318919622001732
– reference: BonneuilNPopulation paths implied by the mean number of pairwise nucleotide differences among mitochondrial DNA sequencesAnn Hum Genet19986261731:STN:280:DyaK1czisVWrug%3D%3D9659979
– reference: TellierABrownJKMStability of genetic polymorphism in host–parasite interactionsProc R Soc Lond B2007274809817
– reference: MorinPJLawlerSPFood web architecture and population dynamics: theory and empirical evidenceAnnu Rev Ecol Syst199526505529
– reference: LeonardKJSelection pressures and plant pathogensAnn NY Acad Sci USA1977287207222
– reference: Moreno-GàmezSStephanWTellierAEffect of disease prevalence and spatial heterogeneity on polymorphism maintenance in host–parasite interactionsPlant Pathol201362Suppl. 1133141
– reference: HendersonDRPresent value. Concise encyclopaedia of economics20082IndianapolisLibrary of Economics and Liberty
– reference: BonneuilNMaximum under continuous–discrete-time dynamic with target and viability constraintsOptimization2012618901913
– reference: PiankaEREvolutionary ecology1978New YorkHarper and Row Publishers
– reference: LawRMortonDPermanence and the assembly of ecological communitiesEcology1996773762775
– reference: MeinardaYDereniowskadMGharbiJ-SThe ethical stakes in monetary valuation methods for conservation purposesBiol Conserv20161996774
– reference: WilliamsonMGrayAJCrawleyMJEdwardsPJAre communities ever stable?Colonization, succession and stability1987OxfordBlackwell Scientific
– reference: BonneuilNSaint-PierrePProtected polymorphism in the two-locus haploid model with unpredictable fitnessesJ Math Biol20004032512771:STN:280:DC%2BD3c3lt1Cisw%3D%3D10794437
– reference: BonneuilNCapital accumulation, inertia of consumption and norms of reproductionJ Popul Econ1994749621:STN:280:DC%2BD38ngtVarsQ%3D%3D12287548
– reference: BonneuilNBoucekkineRViable Ramsey economiesCan J Econ2014472421444
– reference: NuismerSLOttoSPHost–parasite interactions and the evolution of gene expressionPLoS Biol200537e203159134201140679
– reference: BonneuilNSaint-PierrePMinimal number of generations out of polymorphism in the one-locus two-allele model with unpredictable fertilitiesJ Math Biol2002446503522
– reference: AubinJ-PViability theory1991BostonSpringer
– reference: Ten KateMMLairdSAThe commercial use of biodiversity2004LondonEarthscan
– reference: BeissingerSRMcCulloughDRPopulation viability analysis2002ChicagoUniversity of Chicago Press
– reference: SolowAPolaskySBroadusJOn the measurement of biological diversityJ Environ Econ Manag19932416068
– reference: BonneuilNMalthus, Boserup and population viabilityMath Popul Stud199445107119
– reference: BurdonJJThrallPHThe fitness costs to plants of resistance to pathogensGenome Biol2003422712952527193648
– reference: SlatkinMHudsonRRPairwise comparisons of mitochondrial DNA sequences in stable and exponentially growing populationsGenetics19911295555621:CAS:528:DyaK38Xhs12mtr8%3D17434911204643
– reference: HastingsAFood web theory and stabilityEcology19886916651668
– reference: TellierABrownJKMSpatial heterogeneity, frequency-dependent selection and polymorphism in host–parasite interactionsBMC Evol Biol201111319220446323273489
– reference: TellierAMoreno-GámezSStephanWSpeed of adaptation and genomic footprints of host–parasite coevolution underarms race and trench warfare dynamicsEvolution20146882211222424749791
– reference: BrockWAXepapadeasAValuing biodiversity from an economic perspective, a unified economic, ecological, and genetic approachAm Econ Rev200393515971614
– reference: BarrettJAPathogen evolution in multilines and variety mixturesZ Pflanzenk Pflanzens198087383396
– reference: GuYQWildermuthMCChakravarthySLohY-TYangCHeXHanYMartinGBTomato transcription factors Pti4, Pti5, and Pti6 activate defense responses when expressed in ArabidopsisPlant Cell2002148178311:CAS:528:DC%2BD38XjsFWksbY%3D11971137150684
– reference: PerronOEin Neuer Existenzbeweis für die Integrale der Differentialgleichung y′=f(x,y)\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$y^{\prime } = f(x, y)$$\end{document}Math Ann191576471484
– reference: WengeraSJLeasureaDRDauwalterbDCViability analysis for multiple populationsBiol Conserv20172166977
– reference: BonneuilNBoucekkineROptimal transition to renewable energy with threshold of irreversible pollutionEur J Oper Res2016248257262
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SubjectTerms Alleles
Animal Genetics and Genomics
Biodiversity
Biomedical and Life Sciences
Conservation Biology/Ecology
Conservation genetics
Ecology
Economics
Economics and Finance
Evolutionary Biology
financial economics
Genetic diversity
genetic variation
Humanities and Social Sciences
Life Sciences
mathematical theory
Mathematics
Methods and Resources Article
Parasites
Plant Genetics and Genomics
profitability
viability
wildlife management
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Title Genetic diversity and its value: conservation genetics meets economics
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