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“Morphological and molecular characteristics do not confirm popular classification of the Brazil nut tree in Acre, Brazil”, vol. 12, pp. 4018-4027, 2013.
, “Genetic structure in fragmented populations of Solanum lycocarpum A. St.-Hil. with distinct anthropogenic histories in a Cerrado region of Brazil”, vol. 11, pp. 2674-2682, 2012.
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Aguiar LMS, Machado RB and Marinho-Filho JA (2004). Diversidade Biológica do Cerrado. In: Cerrado: Ecologia e Caracterização (Aguiar LMS and Camargo AJA, eds.). EMBRAPA Cerrados, Planaltina, 17-40.
Boyle TJ (2000). Criteria and Indicators for the Conservation of Genetic Diversity. In: Forest Conservation Genetics: Principles and Practice (Young A, Boshier D and Boyle T, eds.). CSIRO Publishing, Collingwood, 239-251.
Cockerham CC and Weir BS (1993). Estimation of gene flow from F-statistics. Evolution 47: 855-863.
http://dx.doi.org/10.2307/2410189
Collevatti RG, Grattapaglia D and Hay JD (2001). Population genetic structure of the endangered tropical tree species Caryocar brasiliense, based on variability at microsatellite loci. Mol. Ecol. 10: 349-356.
http://dx.doi.org/10.1046/j.1365-294x.2001.01226.x
PMid:11298950
Collevatti RG, Grattapaglia D and Hay JD (2003). Evidences for multiple maternal lineages of Caryocar brasiliense populations in the Brazilian Cerrado based on the analysis of chloroplast DNA sequences and microsatellite haplotype variation. Mol. Ecol. 12: 105-115.
http://dx.doi.org/10.1046/j.1365-294X.2003.01701.x
PMid:12492881
Collevatti RG, Estolano R, Garcia SF and Hay JD (2010). Short-distance pollen dispersal and high self-pollination in a bat-pollinated neotropical tree. Tree Genet. Genomes 6: 555-564.
http://dx.doi.org/10.1007/s11295-010-0271-4
Courtenay O (1994). Conservation of the maned wolf: fruitful relationships in a changing environment. Canid News 2: 41-43.
Degen B (2006). GDA_NT 2006. Genetic Data Analysis and Numerical Tests. Institute for Forest Genetics, Grosshansdorf.
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Evanno G, Regnaut S and Goudet J (2005). Detecting the number of clusters of individuals using the software STRUCTURE: a simulation study. Mol. Ecol. 14: 2611-2620.
http://dx.doi.org/10.1111/j.1365-294X.2005.02553.x
PMid:15969739
Goudet J (1995). FSTAT (version 1.2): a computer program to calculate F-statistics. J. Hered. 86: 485-486.
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PMid:8978076 PMCid:1207740
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PMid:16329237
Lombardi JA and Motta JC Jr (1993). Seed dispersal of Solanum lycocarpum St.Hil. (Solanaceae) by the maned wolf, Chrysocyon brachyurus Illiger (Mammalia, Canidae). Cienc. Cult. 45: 126-127.
Machado RB, Ramos Neto MB, Pereira PGP, Caldas EF, et al (2004). Estimativas de Perda da Área do Cerrado Brasileiro. Relatório Técnico. Conservation International, Brasília.
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PMid:6018555
Martins K, Chaves LJ, Buso GSC and Kageyama PY (2006). Mating system and fine-scale spatial genetic structure of Solanum lycocarpum St.Hil. (Solanaceae) in Brazilian Cerrado. Conserv. Genet. 7: 957-969.
http://dx.doi.org/10.1007/s10592-006-9140-y
Martins K, Chaves LJ, Vencovsky R and Kageyama PY (2011). Genetic structure based on nuclear and chloroplast microsatellite loci of Solanum lycocarpum A. St.-Hil. (Solanaceae) in Central Brazil. Genet. Mol. Res. 10: 665-677.
http://dx.doi.org/10.4238/vol10-2gmr1046
PMid:21523656
Moraes MLT and Sebbenn AM (2011). Pollen dispersal between isolated trees in the Brazilian Savannah: a case study of the neotropical tree Hymenaea stigonocarpa. Biotropica 43: 192-199.
http://dx.doi.org/10.1111/j.1744-7429.2010.00679.x
Moreno MA, Tarazi R, Ferraz EM, Gandara FB, et al. (2009). Estrutura genética espacial em populações de Hymenaea stigonacarpa Mart. ex Hayne mediante a utilização de marcadores microssatélites cloroplastitidais. Sci. For. 37: 513-523.
Moura TM, Sebbenn AM, Chaves LJ, Coelho ASG, et al. (2009). Diversidade e estrutura genética espacial em populações fragmentadas de Solanum spp. do cerrado, estimadas por meio de locos microssatélites. Sci. For. 37: 143-150.
Moura TM, Oliveira GCX and Chaves LJ (2010). Correlation between flowering, fructification and environmental variables in Solanum lycocarpum A. St.-Hil, Solanaceae. Biosci. J. 26: 457-462.
Moura TM, Sebbenn AM, Martins K, Moreno MA, et al. (2011). Allelic diversity in populations of Solanum lycocarpum A. St.-Hil (Solanaceae) in a protected area and a disturbed environment. Acta Bot. Bras. 25: 937-940.
http://dx.doi.org/10.1590/S0102-33062011000400023
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http://dx.doi.org/10.1038/35002501
PMid:10706275
Namkoong G, Boyle TJB, El-Kassaby YA, Palmberg-Lerche C, et al (2002). Criteria and Indicators for Sustainability Forest Management: Assessment and Monitoring of Genetic Variation. Food and Agricutural Organization, Rome.
PMCid:3054900
Oliveira-Filho AT and Oliveira LCA (1988). Biologia floral de uma população de Solanum lycocarpum St.-Hil. (Solanaceae) em Lavras, MG. Rev. Bras. Bot. 11: 23-32.
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http://dx.doi.org/10.1046/j.1523-1739.1998.96489.x
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PMid:10835412 PMCid:1461096
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Silva JMC and Bates JM (2002). Biogeographic patterns and conservation in the South American Cerrado: a tropical savanna hotspot. BioScience 52: 225-234.
http://dx.doi.org/10.1641/0006-3568(2002)052[0225:BPACIT]2.0.CO;2
Slatkin M (1993). Isolation by distance in equilibrium and non-equilibrium populations. Evolution 47: 264-279.
http://dx.doi.org/10.2307/2410134
Soares TN, Chaves LJ, de Campos Telles MP, Diniz-Filho JA, et al. (2008). Landscape conservation genetics of Dipteryx alata ("baru" tree: Fabaceae) from Cerrado region of central Brazil. Genetica 132: 9-19.
http://dx.doi.org/10.1007/s10709-007-9144-7
PMid:17333479
Strand AE, Milligan BG and Pruitt CM (1996). Are populations islands? Analysis of chloroplast DNA variation in Aquilegia. Evolution 50: 1822-1829.
http://dx.doi.org/10.2307/2410739
Tarazi R, Moreno MA, Gandara FB, Ferraz EM, et al. (2010). High levels of genetic differentiation and selfing in the Brazilian cerrado fruit tree Dipteryx alata Vog. (Fabaceae). Genet. Mol. Biol. 33: 78-85.
http://dx.doi.org/10.1590/S1415-47572010005000007
PMid:21637609 PMCid:3036066
Telles MPC, Valva FD, Bandeira LF and Coelho ASG (2003). Caracterização genética de populações naturais de araticunzeiro (Annona crassiflora Mart. - Annonaceae) no Estado de Goiás. Rev. Bras. Bot. 26: 123-129.
http://dx.doi.org/10.1590/S0100-84042003000100013
Telles MPC, Silva SP, Ramos JR, Soares TN, et al. (2010). Estrutura genética em populações naturais de Tibouchina papyrus em áreas de campo rupestre no cerrado. Rev. Bras. Bot. 33: 291-300.
http://dx.doi.org/10.1590/S0100-84042010000200010
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Zucchi MI, Brondani RPV, Pinheiro JB, Chaves LJ, et al. (2003). Genetic structure and gene flow in Eugenia dysenterica DC. in the Brazilian Cerrado utilizing SSR markers. Genet. Mol. Biol. 26: 449-457.
http://dx.doi.org/10.1590/S1415-47572003000400008
“Genetic structure based on nuclear and chloroplast microsatellite loci of Solanum lycocarpum A. St. Hil. (Solanaceae) in Central Brazil”, vol. 10, pp. 665-677, 2011.
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Martins K, Chaves LJ, Buso GSC and Kageyama PY (2006). Mating system and fine-scale spatial structure of Solanum lycocarpum St. Hil. (Solanaceae) in the Brazilian Cerrado. Conserv. Genet. 7: 957-969.
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Oliveira-Filho AT and Oliveira LCA (1988). Biologia floral de uma população de Solanum lycocarpum St. Hil. (Solanaceae) em Lavras, MG. Rev. Bras. Bot. 11: 23-32.
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Trapnell DW and Hamrick JL (2004). Partitioning nuclear and chloroplast variation at multiple spatial scales in the Neotropical epiphytic orchid, Laelia rubescens. Mol. Ecol. 13: 2655-2666.
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PMid:16094304
Weir BS and Cockerham CC (1984). Estimating F-statistics for the analysis of population structure. Evolution 38: 1358-1370.
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Weising K and Gardner RC (1999). A set of conserved PCR primers for the analysis of simple sequence repeat polymorphisms in chloroplast genomes of dicotyledonous angiosperms. Genome 42: 9-19.
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