Badillo-Montaño R, Aguirre-Jaimes A, Santamaría-Basulto F, Martínez-Natarén D, Munguía-Rosas M (2018) Importancia de los visitantes florales y la expresión sexual en el éxito reproductivo de un cultivo de papaya (Carica papaya L.). Ecología y conservación de fauna en ambientes antropizados, REFAMA-CONACyT-UAQ, Querétaro, México, pp 5–17.
Bao-Rong LU (2013) Introgression of transgenic crop alleles: its evolutionary impacts on conserving genetic diversity of crop wild relatives. J Syst Evol 51:245–262
Bolger AM, Lohse M, Usadel B (2014) Trimmomatic: a flexible trimmer for Illumina sequence data. Bioinformatics 30(15):2114–2120
Article CAS PubMed PubMed Central Google Scholar
Bradbury PJ, Zhang Z, Kroon DE, Casstevens TM, Ramdoss Y, Buckler ES (2007) TASSEL: software for association mapping of complex traits in diverse samples. Bioinformatics 23:2633–2635
Brozynska M, Furtado A, Henry RJ (2016) Genomics of crop wild relatives: expanding the gene pool for crop improvement. Plant Biotechnol J 14:1070–1085
Article CAS PubMed Google Scholar
Busch C, Geoghegan J (2010) Labor scarcity as an underlying cause of the increasing prevalence of deforestation due to cattle pasture development in the southern Yucatan region. Reg Environ Change 10:191–203
Carrasco B, Arévalo B, Perez-Diaz R, Rodríguez-Alvarez Y, Gebauer M, Maldonado JE, García-Gonzáles R, Chong-Pérez B, Pico-Mendoza J, Meisel LA, Ming R, Silva H (2022) Descriptive genomic analysis and sequence genotyping of the two papaya species (Vasconcellea pubescens and Vasconcellea chilensis) using GBS tools. Plants 11:2151
Carvalho F, Renner SS (2012) A dated phylogeny of the papaya family (Caricaceae) reveals the crop’s closest relatives and the family’s biogeographic history. Molec Phylogenet Evolut 65:46–53
Chávez-Pesqueira M, Núnez-Farfán J (2016) Genetic diversity and structure of wild populations of Carica papaya in Northern Mesoamerica inferred by nuclear microsatellites and chloroplast markers. Ann Bot 118:1293–1306
Article PubMed PubMed Central Google Scholar
Chávez-Pesqueira M, Núñez-Farfán J (2017) Domestication and genetics of papaya: a review. Front Ecol Evol 5:155. https://doi.org/10.3389/fevo.2017.00155
Chávez-Pesqueira M, Suárez-Montes P, Castillo G, Núñez-Farfán J (2014) Habitat fragmentation threatens wild populations of Carica papaya (Caricaceae) in a lowland rainforest. Am J Bot 101:1092–1101
Das DK, Singh J, Vennila S (2011) Emerging crop pest scenario under the impact of climate change–a brief review. J Agric Phys 11:13–20
Dempewolf H, Baute G, Anderson J, Kilian B, Smith C, Guarino L (2017) Past and future use of wild relatives in crop breeding. Crop Sci 57:1070–1082
Doyle JJ, Doyle JL (1987) A rapid DNA isolation procedure for small quantities of fresh leaf tissue. Phytochem Bull 19:11–15
Edwards CR (1986) The human impact on the forest in Quintana Roo, Mexico. J for Hist 30:120–127. https://doi.org/10.2307/4004876
Ellis E A, Romero-Montero J A, Hernández-Gómez I U (2017) Deforestation processes in the State of Quintana Roo, Mexico. Trop Conserv Sci 10. 194008291769725. https://doi.org/10.1177/1940082917697259
Ellstrand NC (2003) Current knowledge of gene flow in plants: implications for transgene flow. Philos Trans Roy Soc Lond Biol Sci 358(1434):1163–1170
Ellstrand NC, Prentice HC, Hancock JF (1999) Gene flow and introgression from domesticated plants into their wild relatives. Annu Rev Ecol Syst 30:539–563
Elshire RJ, Glaubitz JC, Sun Q, Poland JA, Kawamoto K, Buckler ES, Mitchell SE (2011) A robust simple genotyping-by-sequencing (GBS) approach for high diversity species. PLoS ONE 6(5):e19379
Article CAS PubMed PubMed Central Google Scholar
Excoffier L, Lischer HEL (2010) Arlequin suite ver 3.5: a new series of programs to perform population genetics analyses under Linux and Windows. Mol Ecol Resour 10:564–567
Flint-Garcia SA (2013) Genetics and consequences of crop domestication. J Agric Food Chem 61:8267–8276
Article CAS PubMed Google Scholar
Frichot E, Francois O (2015) LEA: an R package for Landscape and Ecological Association studies. Methods Ecol Evolut 6:925-929
García CX, Rodríguez B, Chavelas J (1996) Evaluación de áreas afectadas por el huracán Gilberto e incendios forestales en Quintana Roo, INIFAP, Mérida.
Gepts P, Papa R (2003) Possible effects of (trans) gene flow from crops on the genetic diversity from landraces and wild relatives. Environ Biosaf Res 2:89–103
Hansen AJ, DeFries RS, Turner W (2004) Land use change and biodiversity: a synthesis of rates and consequences during the period of satellite imagery. Land Change Science: Observing, Monitoring and Understanding Trajectories of Change on the Earth’s Surface 6:277–299
Harlan JR, de Wet JMJ (1971) Toward a rational classification of cultivated plants. Taxon 20:509–517
Helyar SJ, Hemmer-Hansen J, Bekkevold D, Taylor MI, Ogden R, Limborg MT, Cariani A, Maes GE, Diopere E, Carvalho GR, Nielsen EE (2011) Application of SNPs for population genetics of nonmodel organisms: new opportunities and challenges. Mol Ecol Resour 11:123–136
Heredia-Pech M, Chávez-Pesqueira M, Ortiz-García M M, Andueza-Noh R H, Chacón-Sánchez M I, Martínez-Castillo J (2022) Consequences of introgression and gene flow on the genetic structure and diversity of Lima bean (Phaseolus lunatus L.) in its Mesoamerican diversity area. PeerJ 10:e13690.
Hernández-Xolocotzi E (1959) La Agricultura en la Península de Yucatán. Obras de Efraín Hernández Xolocotzi. Universidad Autónoma de Chapingo, Texcoco, Mexico, Xolocotzia, pp 371–408
Hu XS, Zeng W, Li B (2003) Impacts of one-way gene flow on genetic variance components in a natural population. Silvae Genetica 52(1):18–23
Jenczewski E, Ronfort J, Chèvre AM (2003) Domesticated-to-wild gene flow, introgression and possible fitness effects of transgenes. Environ Biosaf Res 2:9–24
Langmead B, Salzberg SL (2012) Fast gapped-read alignment with Bowtie 2. Nat Methods 9(4):357–359
Article CAS PubMed PubMed Central Google Scholar
Larqué-Saavedra A (2016) Biotecnología prehispánica en Mesoamérica. Rev Fitotec Mex 39:107–115
Lawrence WF. Williamson GB, Delamonica P, Oliveira A, Lovejoy TE, Gascon C, Pohl L (2001) Effects of a strong drought on Amazonian forest fragments and edges. J Trop Ecol 12:771-785
Laurence WF (2004) Forest-climate interactions in fragmented tropical landscapes. Philos Trans R Soc Lond B Biol Sci 359:345–352
Lischer HEL, Excoffier L (2012) PGDSpider: an automated data conversion tool for connecting population genetics and genomics programs. Bioinformatics 28:298–299
Malhi GS, Kaur M, Kaushik P (2021) Impact of climate change on agriculture and its mitigation strategies: a review. Sustainability 13(3):1318
Martínez-Castillo J, Zizumbo-Villarreal D, Gepts P, Colunga-GarcíaMarín P (2007) Gene flow and genetic structure in the wild–weedy–domesticated complex of Phaseolus lunatus L. in its Mesoamerican center of domestication and diversity. Crop Sci 47(1):58–66
Maxted N, Avagyan A, Frese L, Iriondo J M, Magos Brehm J, Singer A, Kell S P (2015) ECPGR Concept for in situ conservation of crop wild relatives in Europe. Wild Species Conservation in Genetic Reserves Working Group. European Cooperative Programme for Plant Genetic Resources 1–20.
Moo-Aldana RD, Munguía-Rosas MA, Serralta LP, Castillo-Burguete MT, Vega-Frutis R, Martínez-Natarén D (2017) Can the introduction of modern crop varieties in their centre of origin affect local ecological knowledge? A case study of papaya in the Yucatan Peninsula. Hum Ecol 45:367–375
Morin PA, Luikart G, Wayne RK (2004) SNPs in ecology, evolution and conservation. Trends Ecol Evol 19(4):208–216
Murray KD, Borevitz JO (2018) Axe: rapid, competitive sequence read demultiplexing using a trie. Bioinformatics 34:3924–3925
Article CAS PubMed Google Scholar
Mussmann SM, Douglas MR, Chafin TK, Douglas ME (2019) BA3-SNPs: contemporary migration reconfigured in BayesAss for next-generation sequence data. Methods Ecol Evol 10:1808–1813. https://doi.org/10.1111/2041-210X.13252
Myers SS, Smith MR, Guth S, Golden CD, Vaitla B, Mueller ND (2017) Climate change and global food systems: potential impacts on food security and undernutrition. Annu Rev Public Health 38:259–277. https://doi.org/10.1146/annurev-publhealth-031816-044356
Niklas KJ, Marler TE (2007) Carica papaya (Caricaceae): a case study into the effects of domestication on plant vegetative growth and reproduction. Am J Bot 94:999–1002
Núñez-Farfán J, Dirzo R (1988) Within-gap spatial heterogeneity and seedling performance in a Mexican tropical forest. Oikos, pp 274–284.
Pacheco-Huh J, Carmona D, Dzib G, Chávez-Pesqueira M (2021) Mutualistic and antagonistic interactions differ in wild and domesticated papaya (Carica papaya) in its center of origin. Plant Biol 23:250–258
Article CAS PubMed Google Scholar
Papa R (2005) Gene flow and introgression between domesticated crops and their wild relatives. Role Biotechnol, pp 71–76.
Paz L, Vázquez-Yanes C (1998) Comparative seed ecophysiology of wild and cultivated Carica papaya trees from a tropical rain forest region in México. Tree Physiol 18:277–280
Peakall R, Smouse PE (2012) GenAlEx 6.5: genetic analysis in Excel. Population genetic software for teaching and research-an update. Bioinformatics 28:2537–2539
Article CAS PubMed PubMed Central Google Scholar
Perrier X, Jacquemound-Collet J (2006) DARwin software. Available at http://darwin.cirad.fr/darwin.
Renzi J P, Coyne C J, Berger J, Von Wettberg E, Nelson M, Ureta S, Hernandez F, Smýkal P, Brus J (2022) How could the use of crop wild relatives in breeding increase the adaptation of crops to marginal environments? Front Plant Sci, p 13.
Rogan J, Schneider L, Christman Z, Millones M, Lawrence D, Schmook B (2011) Hurricane disturbance mapping using MODIS EVI data in the southeastern Yucatán, Mexico. Remote Sensing Lett 2:259–267
Ruiz-Gil PJ, Wegier A, Alavez V, Rosas-Plaza S, Núñez-Farfán J, Chávez-Pesqueira M (2023) Wild papaya shows evidence of gene flow from domesticated Maradol papaya in Mexico. Genetic Resources Crop Evolut, pp 1–20.
Servicio de Información Agroalimentaria y Pesquera (SIAP) Anuario Estadístico de la Producción Agrícola. (2023). https://www.gob.mx/siap/acciones-y-programas/produccion-agricola-33119
留言 (0)