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433 results for “Tilia”

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zenodo32/100

Tilia americana (Tiliaceae) - whole tree (or vine) - winter

Image of Tilia americana (Tiliaceae) - whole tree (or vine) - winter

opencc-by-nc-sa-4.0Dec 2015View details →
zenodo32/100

Tilia americana (Tiliaceae) - bark

Image of Tilia americana (Tiliaceae) - bark

opencc-by-nc-sa-4.0Dec 2015View details →
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Tilia cordata

<p>Tilia cordata occurence points</p>

opencc-by-4.0Jan 2022View details →
zenodo32/100

Tilia tomentosa

<p>Tilia tomentosa occurence points</p>

opencc-by-4.0Jan 2022View details →
dryad32/100

12 nuclear microsatellite loci scores for 543 adult trees of Tilia cordata in Lithuainia

<p>Genetic signature of the natural genepool of <i>Tilia cordata</i> Mill. in Lithuania: compound evolutionary and anthropogenic effects</p> <p><i>Tilia cordata</i> Mill. is a valuable tree species enriching the ecological values of the coniferous dominated boreal forests in Europe. Following the historical decline, spreading of <i>Tilia</i> sp. is challenged by the elevated inbreeding and habitat fragmentation. We studied the geographical distribution of genetic diversity of <i>Tilia cordata</i> populations in Lithuania. We used 14 genomic microsatellite markers to genotype 543 individuals from 23 wild growing populations. We found that <i>Tilia cordata</i> retained high levels of genetic diversity (population F<sub>is</sub> = 0 to 0.15, H<sub>o </sub>= 0.53 to 0.69, H<sub>e </sub>= 0.56 to 0.75). AMOVA, Bayesian clustering and Monmonier's barrier detection indicate weak but significant differentiation among the populations (F<sub>st</sub> = 0.037***) into geographically interpretable clusters of (a) western Lithuania with high genetic heterogeneity but low genetic diversity, bottleneck effects, (b) relatively higher genetic diversity of <i>Tilia cordata</i> on rich and most soils of midland lowland, and (c) the most differentiated populations on poor soils of the coolest north-eastern highland possessing the highest rare allele frequency but elevated inbreeding and bottleneck effects. Weak genetic differentiation among the <i>Tilia cordata</i> populations in Lithuania implies common ancestry, absence of strong adaptive gradients and effective genetic exchange possible mediated via the riparian networks. A hypothesis on riparian networks as geneflow mediators in <i>Tilia cordata</i> was raised based on results of this study.</p>

opencc-zeroMar 2022View details →
zenodo32/100

Tilia tomentosa

Tilia tomentosa

opencc-by-4.0Jan 2022View details →
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Tilia platyphyllos

<p>Tilia platyphyllos</p>

opencc-by-4.0Jan 2022View details →
zenodo32/100

Tilia cordata

<p>Tilia cordata</p>

opencc-by-4.0Jan 2022View details →
dryad32/100

Phylogenetic relationships of Tilia (Malvaceae) inferred from multiple nuclear loci and plastid genomes

<p class="MsoNormal"><em><span>Premise of research.</span></em><strong><span> </span></strong><em><span>Tilia</span></em><span> is a<strong> </strong>Eurasian-eastern North American disjunct plant genus with great economic and ecological importance. However, a robust phylogeny has not been established with a comprehensive taxon sampling and a large amount of data. </span></p> <p class="MsoNormal"><em><span>Methodology</span></em><span>. We obtained DNA sequences of plastomes and multiple nuclear loci using the anchored hybrid enrichment technique and next generation sequencing technology. Orthologous nuclear loci were inferred using tree-based methods. Phylogenetic analyses were performed using maximum parsimony, Bayesian, and coalescence-based species tree methods. Parentages of polyploids were inferred from the nuclear and plastid phylogenies. </span></p> <p class="MsoNormal"><em><span>Pivotal results</span></em><span>. <em>Craigia yunnanensis</em> is sister to <em>Tilia</em>, within which <em>T.</em> <em>endochrysea</em> endemic to southern China is the earliest lineage diverging followed by the European species <em>T. platyphyllos</em>. The European <em>T. cordata</em> and eastern Asian <em>T. amurensis</em> and <em>T. kiusiana </em>form a clade, while the North American <em>T. americana</em> is most closely related to the eastern and western Asian species complex including <em>T. chingiana</em>, <em>T. mandshurica</em>, <em>T. oliver</em>, and western Asian <em>T. tomentosa</em>. Significant incongruence exists between nuclear and plastid phylogenies.</span></p> <p class="MsoNormal"><em><span>Conclusions</span></em><span>. Our phylogenetic results<em> </em>suggest that there are six distinctive lineages or species complexes in the genus including 1) T. <em>endochrysea</em>, 2) <em>T. platyphyllos</em>, 3) <em>T. kiusiana</em>, 4) <em>T. cordata </em>and<em> T. amurensis</em>, 5) <em>T. chingiana</em>, <em>T. miqueliana</em>, <em>T. oliveri</em>, and 6) <em>T. tomentosa</em>, and <em>T. americana</em>. They may be divided into two sections (<em>Trichophilyra</em> and <em>Tilia</em>) and three subsections (<em>Tilia</em>, <em>Lindnera</em>, and <em>Trabeculares</em>). The prevalent incongruence between nuclear and plastid confirms the importance of ancient hybridization and introgression in the evolutionary history of the genus. Polyploid species in Eurasia and their corresponding diploid parental lineages may have formed a hybrid swarm in the region.</span></p>

opencc-zeroOct 2023View details →
dryad32/100

Data from: Chloroplast DNA-based phylogeography of Tilia americana (Malvaceae)

Open the record for dataset details and reuse information.

publicJul 2017View details →
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12 nuclear microsatellite loci scores for 543 adult trees of Tilia cordata in Lithuainia

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publicMar 2022View details →
dryad32/100

Phylogenetic relationships of Tilia (Malvaceae) inferred from multiple nuclear loci and plastid genomes

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publicOct 2023View details →
dryad32/100

Data from: Genetic diversity loss and homogenization in urban trees: the case of Tilia × europaea in Belgium and the Netherlands

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publicSep 2018View details →
zenodo28/100

Figure 1 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118

Figure 1 Study area and localization of sampling sites. Dotted line represents the boundary between the municipalities of Firenzuola (westwards) and Palazzuolo sul Senio (eastwards). For details on the sample sites, see Table 1.

opencc-by-4.0Dec 2020View details →
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Supplementary material 1 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118

Supplementary data

opencc-zeroDec 2020View details →
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Figure 2 from: Roma-Marzio F, D'Antraccoli M, Angeloni D, Bartolucci F, Bernardo L, Cancellieri L, Caruso G, Conti F, Dolci D, Gestri G, Gubellini L, Hofmann N, Laface VL.A, Lattanzi E, Lavezzo P, Maiorca G, Montepaone G, Musarella CM, Noto D, Perrino EV, Proietti E, Masin RR, Scoppola A, Stinca A, Tiburtini M, Tilia A, Peruzzi L (2020) Contribution to the floristic knowledge of Sillaro, Santerno, and Senio high valleys (Toscana, Italy). Italian Botanist 10: 101-111. https://doi.org/10.3897/italianbotanist.10.60118

Figure 2 A view from the site 3D in Castiglioncello (Firenzuola, Firenze) (A); Polygala nicaeensis subsp. mediterranea from site 2A (B); Potentilla neglecta (C) and P. pusilla (D) from site 2D, both new records for the flora of Toscana. For details on the sample sites, see Table 1. All photographs by L. Peruzzi.

opencc-by-4.0Dec 2020View details →
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FIGURE 21 in Eriophyes species (Acari: Eriophyoidea) inhabiting lime trees (Tilia spp.: Tiliaceae) — supplementary description and morphological variability related to host plants and female forms

FIGURE 21. Nail galls on leaf of Tilia platyphyllos inhabited by Eriophyes tiliae Nalepa 1890.

opennotspecifiedDec 2013View details →
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FIGURE 20 in Eriophyes species (Acari: Eriophyoidea) inhabiting lime trees (Tilia spp.: Tiliaceae) — supplementary description and morphological variability related to host plants and female forms

FIGURE 20. Nail galls on leaf of Tilia cordata inhabited by Eriophyes tiliae Nalepa 1890.

opennotspecifiedDec 2013View details →
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FIGURE 5 in Problems with the taxonomy of Phytoptus tetratrichus Nalepa 1890 (Acari: Eriophyoidea) inhabiting Tilia spp.: Analysis based on morphological variation among individuals

FIGURE 5. Leaf damage caused by Phytoptus tetratrichus on Tilia americana.

opennotspecifiedDec 2011View details →
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Supplementary material 3 from: Barone G, Bajona E, Bartolucci F, Cancellieri L, Caruso G, Conti F, Domina G, Fascetti S, Franzoni J, Laface VLA, Pinzani L, Rosati L, Scoppola A, Stinca A, Tilia A, Crisafulli A (2023) Contribution to the floristic knowledge of Lipari and Panarea Islands (Sicilia, Italy). Italian Botanist 16: 59-71. https://doi.org/10.3897/italianbotanist.16.113415

Inventory of the taxa collected or photographed during the field trip

opencc-zeroNov 2023View details →

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