Molecular insights into the dynamics of species invasion by hybridisation in Tasmanian eucalypts
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[1] Enhua Lee,et al. Evolutionary processes in an undescribed eucalypt: implications for the translocation of a critically endangered species. , 2022, Annals of Botany.
[2] Kazuhiro Sato,et al. Drastic shift in flowering phenology of F1 hybrids causing rapid reproductive isolation in Imperata cylindrica in Japan , 2022, Journal of Ecology.
[3] L. Flores-Rentería,et al. The Syngameon Enigma , 2022, Plants.
[4] P. Harrison. Climate change and the suitability of local and non‐local species for ecosystem restoration , 2021, Ecological Management & Restoration.
[5] J. Mallet,et al. Prevalence and Adaptive Impact of Introgression. , 2021, Annual review of genetics.
[6] S. Fitz-Gibbon,et al. Ancient introgression between distantly related white oaks (Quercus sect Quercus) shows evidence of climate-associated asymmetric gene exchange. , 2021, The Journal of heredity.
[7] D. Steane,et al. Expansion of the rare Eucalyptus risdonii under climate change through hybridisation with a closely related species despite hybrid inferiority. , 2021, Annals of botany.
[8] M. Byrne,et al. Genomic data inform conservation of rare tree species: clonality, diversity and hybridity in Eucalyptus series in a global biodiversity hotspot , 2021, Biodiversity and Conservation.
[9] J. Bragg,et al. Conserving the genetic diversity of condemned populations: Optimizing collections and translocation , 2021, Evolutionary applications.
[10] E. Biffin,et al. Genomic Screening Reveals That the Endangered Eucalyptus paludicola (Myrtaceae) Is a Hybrid , 2020, Diversity.
[11] Da‐Yong Zhang,et al. Dispersal as a result of asymmetrical hybridization between two closely related oak species in China. , 2020, Molecular phylogenetics and evolution.
[12] M. Byrne,et al. Landscape and taxon age are associated with differing patterns of hybridisation in two Eucalyptus (Myrtaceae) subgenera. , 2020, Annals of botany.
[13] R. C. Marinho,et al. The protected tree Dimorphandra wilsonii (Fabaceae) is a population of inter-specific hybrids: recommendations for conservation in the Brazilian Cerrado/Atlantic Forest ecotone. , 2020, Annals of botany.
[14] J. Prevéy. Climate Change: Flowering Time May Be Shifting in Surprising Ways , 2020, Current Biology.
[15] Justin C. Bagley,et al. Tracing the footprints of a moving hybrid zone under a demographic history of speciation with gene flow , 2019, Evolutionary applications.
[16] S. Shi,et al. Hybridization with natives augments the threats of introduced species in Sonneratia mangroves , 2020 .
[17] R. Petit,et al. The oak syngameon: more than the sum of its parts. , 2020, The New phytologist.
[18] A. Hipp,et al. Oaks: an evolutionary success story. , 2019, The New phytologist.
[19] R. Kooyman,et al. Managing the risk of genetic swamping of a rare and restricted tree , 2019, Conservation Genetics.
[20] T. Lacher,et al. Climate change, range shifts, and the disruption of a pollinator-plant complex , 2019, Scientific Reports.
[21] L. Campbell,et al. Correlates of hybridization in plants , 2019, bioRxiv.
[22] C. Külheim,et al. A dated molecular perspective of eucalypt taxonomy, evolution and diversification , 2019, Australian Systematic Botany.
[23] L. Rieseberg,et al. Hybridization speeds adaptive evolution in an eight-year field experiment , 2019, Scientific Reports.
[24] L. Joseph,et al. Impacts of recent climate change on terrestrial flora and fauna: Some emerging Australian examples , 2018, Austral Ecology.
[25] D. Grattapaglia,et al. Fast and inexpensive protocols for consistent extraction of high quality DNA and RNA from challenging plant and fungal samples for high-throughput SNP genotyping and sequencing applications , 2018, PloS one.
[26] P. Unmack,et al. dartr: An r package to facilitate analysis of SNP data generated from reduced representation genome sequencing , 2018, Molecular ecology resources.
[27] Q. Cronk,et al. Adaptive introgression: a plant perspective , 2018, Biology Letters.
[28] D. Du,et al. Invasive European frogbit (Hydrocharis morsus-ranae L.) in North America: an updated review 2003–16 , 2018 .
[29] T. Booth. Going nowhere fast: a review of seed dispersal in eucalypts , 2017 .
[30] M. Arnold,et al. Adaptive Genetic Exchange: A Tangled History of Admixture and Evolutionary Innovation. , 2017, Trends in ecology & evolution.
[31] Jill A. Hamilton,et al. Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change , 2017 .
[32] T. Booth. Impacts of climate change on eucalypt distributions in Australia: an examination of a recent study , 2017 .
[33] P. Nabity,et al. A global test for phylogenetic signal in shifts in flowering time under climate change , 2017 .
[34] R. Petit,et al. Demographic and spatial determinants of hybridization rate , 2017 .
[35] P. Jordano. What is long‐distance dispersal? And a taxonomy of dispersal events , 2017 .
[36] K. Pfennig,et al. Hybridization as a facilitator of species range expansion , 2016, Proceedings of the Royal Society B: Biological Sciences.
[37] C. Carere,et al. The Tangled Evolutionary Legacies of Range Expansion and Hybridization. , 2016, Trends in ecology & evolution.
[38] B. Potts,et al. On the persistence of reproductive barriers in Eucalyptus: the bridging of mechanical barriers to zygote formation by F1 hybrids is counteracted by intrinsic post-zygotic incompatibilities. , 2016, Annals of botany.
[39] B. Potts,et al. Phylogeny Explains Variation in The Root Chemistry of Eucalyptus Species , 2016, Journal of Chemical Ecology.
[40] N. Barton,et al. Genomics of hybridization and its evolutionary consequences , 2016, Molecular ecology.
[41] Dan G. Bock,et al. Hybridization and extinction , 2016, Evolutionary applications.
[42] Jill A. Hamilton,et al. Adaptive introgression as a resource for management and genetic conservation in a changing climate , 2016, Conservation biology : the journal of the Society for Conservation Biology.
[43] Zhiming Xiang,et al. Artificial interspecific backcrosses between the hybrid of female Crassostrea hongkongensis × male C. gigas and the two parental species , 2016 .
[44] M. Keatley,et al. Climatic and photoperiodic effects on flowering phenology of select eucalypts from south-eastern Australia , 2015 .
[45] M. Jakobsson,et al. Clumpak: a program for identifying clustering modes and packaging population structure inferences across K , 2015, Molecular ecology resources.
[46] L. Rieseberg,et al. The origins of reproductive isolation in plants. , 2015, The New phytologist.
[47] H. Hager,et al. A framework to guide the conservation of species hybrids based on ethical and ecological considerations , 2015, Conservation biology : the journal of the Society for Conservation Biology.
[48] S. Prober,et al. Native forests and climate change: Lessons from eucalypts , 2015 .
[49] Scott A. Taylor,et al. Hybrid zones: windows on climate change. , 2015, Trends in ecology & evolution.
[50] B. Holland,et al. Patterns of Reproductive Isolation in Eucalyptus-A Phylogenetic Perspective. , 2015, Molecular biology and evolution.
[51] J. Forrest. Plant–pollinator interactions and phenological change: what can we learn about climate impacts from experiments and observations? , 2015 .
[52] G. Woodward,et al. Hybridization due to changing species distributions: adding problems or solutions to conservation of biodiversity during global change? , 2014 .
[53] P. Nevill,et al. Shared phylogeographic patterns and widespread chloroplast haplotype sharing in Eucalyptus species with different ecological tolerances , 2014, Tree Genetics & Genomes.
[54] Heng Li,et al. Toward better understanding of artifacts in variant calling from high-coverage samples , 2014, Bioinform..
[55] T. Price,et al. Climate Change: A Hybrid Zone Moves North , 2014, Current Biology.
[56] S. Sherwood,et al. A Drier Future? , 2014, Science.
[57] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[58] S. Banks,et al. Priority effects can lead to underestimation of dispersal and invasion potential , 2014, Biological Invasions.
[59] W. Thuiller,et al. Will climate change promote future invasions? , 2013, Global change biology.
[60] M. Whitlock,et al. Assisted Gene Flow to Facilitate Local Adaptation to Climate Change , 2013 .
[61] Q. Fu,et al. Expansion of global drylands under a warming climate , 2013 .
[62] R. Corlett,et al. Will plant movements keep up with climate change? , 2013, Trends in ecology & evolution.
[63] Nicole E. Rafferty,et al. Physiological effects of climate warming on flowering plants and insect pollinators and potential consequences for their interactions. , 2013, Current zoology.
[64] H. Hänninen,et al. Potential for evolutionary responses to climate change – evidence from tree populations , 2013, Global change biology.
[65] R. Petit,et al. Outlier loci highlight the direction of introgression in oaks , 2013, Molecular ecology.
[66] Laura J. Pollock,et al. Chloroplast DNA diversity associated with protected slopes and valleys for hybridizing Eucalyptus species on isolated ranges in south‐eastern Australia , 2013 .
[67] C. Kremen,et al. Resource diversity and landscape-level homogeneity drive native bee foraging , 2012, Proceedings of the National Academy of Sciences.
[68] Jean-Luc Jannink,et al. Shrinkage Estimation of the Realized Relationship Matrix , 2012, G3: Genes | Genomes | Genetics.
[69] A. Myburg,et al. Progress in Myrtaceae genetics and genomics: Eucalyptus as the pivotal genus , 2012, Tree Genetics & Genomes.
[70] Richard Gomulkiewicz,et al. Long-distance gene flow and adaptation of forest trees to rapid climate change , 2012, Ecology letters.
[71] M. Arnold,et al. Hybrid fitness, adaptation and evolutionary diversification: lessons learned from Louisiana Irises , 2011, Heredity.
[72] A. Kilian,et al. Diversity arrays technology: a generic genome profiling technology on open platforms. , 2012, Methods in molecular biology.
[73] B. vonHoldt,et al. STRUCTURE HARVESTER: a website and program for visualizing STRUCTURE output and implementing the Evanno method , 2012, Conservation Genetics Resources.
[74] B. Potts,et al. Epistasis causes outbreeding depression in eucalypt hybrids , 2012, Tree Genetics & Genomes.
[75] Thibaut Jombart,et al. adegenet 1.3-1: new tools for the analysis of genome-wide SNP data , 2011, Bioinform..
[76] Jeffrey B. Endelman,et al. Ridge Regression and Other Kernels for Genomic Selection with R Package rrBLUP , 2011 .
[77] R. Frankham,et al. Assessing the benefits and risks of translocations in changing environments: a genetic perspective , 2011, Evolutionary applications.
[78] A. Kilian,et al. Plant Methods Open Access Methodology Methodology a High-density Diversity Arrays Technology (dart) Microarray for Genome-wide Genotyping in Eucalyptus , 2022 .
[79] David S Wilcove,et al. Predicting plant invasions in an era of global change. , 2010, Trends in ecology & evolution.
[80] Nate G. McDowell,et al. Climate‐Induced Tree Mortality: Earth System Consequences , 2010 .
[81] B. Potts,et al. Recurrent nuclear DNA introgression accompanies chloroplast DNA exchange between two eucalypt species , 2010, Molecular ecology.
[82] S. Knapp,et al. Asymmetric Introgressive Hybridization Among Louisiana Iris Species , 2010, Genes.
[83] Z. Gompert,et al. introgress: a software package for mapping components of isolation in hybrids , 2010, Molecular ecology resources.
[84] N. McDowell,et al. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests , 2010 .
[85] J. Provan,et al. Unidirectional hybridization at a species’ range boundary: implications for habitat tracking , 2010 .
[86] L. Aragão,et al. Exploring the likelihood and mechanism of a climate-change-induced dieback of the Amazon rainforest , 2009, Proceedings of the National Academy of Sciences.
[87] F. Alberto,et al. Species relative abundance and direction of introgression in oaks , 2009, Molecular ecology.
[88] F. J. Barnes,et al. Tree die-off in response to global change-type drought: mortality insights from a decade of plant water potential measurements. , 2009 .
[89] Ørjan Totland,et al. How does climate warming affect plant-pollinator interactions? , 2009, Ecology letters.
[90] A. Widmer,et al. Evolution of reproductive isolation in plants , 2009, Heredity.
[91] O. Gaggiotti,et al. A Genome-Scan Method to Identify Selected Loci Appropriate for Both Dominant and Codominant Markers: A Bayesian Perspective , 2008, Genetics.
[92] K. Wright,et al. The strength and genetic basis of reproductive isolating barriers in flowering plants , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.
[93] L. Excoffier,et al. The Hidden Side of Invasions: Massive Introgression by Local Genes , 2008, Evolution; international journal of organic evolution.
[94] Richard Shine,et al. Reid’s Paradox Revisited: The Evolution of Dispersal Kernels during Range Expansion , 2008, The American Naturalist.
[95] Thibaut Jombart,et al. adegenet: a R package for the multivariate analysis of genetic markers , 2008, Bioinform..
[96] S. Yeaman,et al. Adaptation, migration or extirpation: climate change outcomes for tree populations , 2008, Evolutionary applications.
[97] M. Byrne,et al. Granite outcrops as ancient islands in old landscapes: evidence from the phylogeography and population genetics of Eucalyptus caesia (Myrtaceae) in Western Australia , 2007 .
[98] R. Buggs,et al. Empirical study of hybrid zone movement , 2007, Heredity.
[99] A. Young,et al. Seeing the wood and the trees--predicting the future for fragmented plant populations in Australian landscapes , 2007 .
[100] L. Rieseberg,et al. Hybridization and the colonization of novel habitats by annual sunflowers , 2007, Genetica.
[101] C. Parmesan. Ecological and Evolutionary Responses to Recent Climate Change , 2006 .
[102] Teja Tscharntke,et al. Foraging trip duration of bumblebees in relation to landscape‐wide resource availability , 2006 .
[103] B. Potts,et al. A framework for community and ecosystem genetics: from genes to ecosystems , 2006, Nature Reviews Genetics.
[104] C. Primmer,et al. Efficiency of model‐based Bayesian methods for detecting hybrid individuals under different hybridization scenarios and with different numbers of loci , 2005, Molecular ecology.
[105] G. Evanno,et al. Detecting the number of clusters of individuals using the software structure: a simulation study , 2005, Molecular ecology.
[106] J. Goudet. HIERFSTAT , a package for R to compute and test hierarchical F -statistics , 2005 .
[107] R. Petit,et al. Comparative organization of chloroplast, mitochondrial and nuclear diversity in plant populations. , 2005, Molecular ecology.
[108] R. Henry,et al. Reticulate evolution in higher plants , 2005 .
[109] R. Vaillancourt,et al. Pollen dispersal from exotic eucalypt plantations , 2005, Conservation Genetics.
[110] D. Steane,et al. The rare silver gum, Eucalyptus cordata, is leaving its trace in the organellar gene pool of Eucalyptus globulus , 2004, Molecular ecology.
[111] Caz M Taylor,et al. The spatial spread of invasions: new developments in theory and evidence , 2004 .
[112] D. Wascher,et al. Climate change meets habitat fragmentation: linking landscape and biogeographical scale levels in research and conservation , 2004 .
[113] R. Petit. Biological invasions at the gene level , 2004 .
[114] B. Potts,et al. Pollinators in seed orchards of Eucalyptus nitens (Myrtaceae) , 2004 .
[115] O. Seehausen. Hybridization and adaptive radiation. , 2004, Trends in ecology & evolution.
[116] B. Potts,et al. Interspecific hybridization of Eucalyptus: key issues for breeders and geneticists , 2004, New Forests.
[117] D. Steane,et al. Glacial refugia and reticulate evolution: the case of the Tasmanian eucalypts. , 2004, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[118] S. Southerton,et al. Review of gene movement by bats and birds and its potential significance for eucalypt plantation forestry , 2004 .
[119] B. Potts,et al. Plant hybrid zones as centers of biodiversity: the herbivore community of two endemic Tasmanian eucalypts , 1994, Oecologia.
[120] R. Petit,et al. Hybridization as a mechanism of invasion in oaks , 2003 .
[121] L. Rieseberg,et al. Major Ecological Transitions in Wild Sunflowers Facilitated by Hybridization , 2003, Science.
[122] J. Castillo,et al. Facilitated invasion by hybridization of Sarcocornia species in a salt‐marsh succession , 2003 .
[123] A. Fitter,et al. Rapid Changes in Flowering Time in British Plants , 2002, Science.
[124] André Bouchard,et al. Landscape issues in plant ecology , 2002 .
[125] M. Sedgley,et al. Interspecific Hybridization within Eucalyptus (Myrtaceae): Subgenus Symphyomyrtus, Sections Bisectae and Adnataria , 2001, International Journal of Plant Sciences.
[126] F. Allendorf,et al. The problems with hybrids: setting conservation guidelines , 2001 .
[127] L. Rieseberg,et al. Predicting the Risk of Extinction through Hybridization , 2001 .
[128] Ø. Totland,et al. ENVIRONMENT‐DEPENDENT POLLEN LIMITATION AND SELECTION ON FLORAL TRAITS IN AN ALPINE SPECIES , 2001 .
[129] M. Pemonge,et al. Frequent cytoplasmic exchanges between oak species that are not closely related: Quercus suber and Q. ilex in Morocco , 2001, Molecular ecology.
[130] Marcel E. Visser,et al. Warmer springs disrupt the synchrony of oak and winter moth phenology , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[131] B. Potts,et al. PLANT GENETICS AFFECTS ARTHROPOD COMMUNITY RICHNESS AND COMPOSITION: EVIDENCE FROM A SYNTHETIC EUCALYPT HYBRID POPULATION , 2000, Evolution; international journal of organic evolution.
[132] B. Potts,et al. F1 hybrid inviability in Eucalyptus: the case of E. ovata × E. globulus , 2000, Heredity.
[133] P. Donnelly,et al. Inference of population structure using multilocus genotype data. , 2000, Genetics.
[134] Keith A. Gardner,et al. EVOLUTIONARY CHANGES OVER THE FIFTY‐YEAR HISTORY OF A HYBRID POPULATION OF SUNFLOWERS (HELIANTHUS) , 2000, Evolution; international journal of organic evolution.
[135] C. Allen,et al. Drought-induced shift of a forest-woodland ecotone: rapid landscape response to climate variation. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[136] L. Rieseberg,et al. Plant hybridization. , 1998, The New phytologist.
[137] J. B. Reid,et al. Determination of Clone Size and Age in a Mallee Eucalypt Using RAPDs , 1998 .
[138] R. Bacilieri,et al. Chloroplast DNA footprints of postglacial recolonization by oaks. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[139] B. Potts,et al. Eucalypt genetics and genecology , 1997 .
[140] R. Jansen,et al. Hybridization and the Extinction of Rare Plant Species , 1996 .
[141] M. Westoby,et al. Climatic range sizes of Eucalyptus species in relation to future climate change , 1996 .
[142] J. B. Reid,et al. Molecular differentiation within and between Eucalyptus risdonii, E. amygdalina and their hybrids using RAPD markers , 1996 .
[143] M. Arnold. Natural Hybridization as an Evolutionary Process , 1992 .
[144] B. Potts,et al. Conservation of hybrid plants. , 1991, Science.
[145] J. B. Reid,et al. THE EVOLUTIONARY SIGNIFICANCE OF HYBRIDIZATION IN EUCALYPTUS , 1990, Evolution; international journal of organic evolution.
[146] J. B. Reid,et al. HYBRIDIZATION AS A DISPERSAL MECHANISM , 1988, Evolution; international journal of organic evolution.
[147] A. Griffin,et al. Patterns of natural and manipulated hybridisation in the genus Eucalyptus L'Hérit. - a review. , 1988 .
[148] B. Potts. Population dynamics and regeneration of a hybrid zone between Eucalyptus risdonii Hook. f. and E. amygdalina Labill. , 1986 .
[149] B. Potts,et al. Evolutionary processes in the Tasmanian high altitude eucalypts , 1986 .
[150] C. Humphries,et al. Cladistic relationships and biogeographic patterns in the peppermint group of Eucalyptus (informal subseries Amygdalininae, subgenus Monocalyptus) and the description of a new species, E. willisii , 1983 .
[151] D. Levin. The Origin of Isolating Mechanisms in Flowering Plants , 1978 .
[152] J. Kirkpatrick,et al. POSSIBLE PHANTOM HYBRIDS IN EUCALYPTUS , 1972 .
[153] R. Lewontin,et al. HYBRIDIZATION AS A SOURCE OF VARIATION FOR ADAPTATION TO NEW ENVIRONMENTS , 1966, Evolution; international journal of organic evolution.