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2,620 results for “Molecular Phylogeny”

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FIGURE 16 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 16. Primary ridges of Rhabdosciadium hizanense (A) and R. anatolyi (B). e: Epidermis; bd: Vascular bundle; Vit: Vittae; Hc: Hypodermal collenchyma; ps: phloem sclerenchyma;. Xs: xylem sclerenchyma Scale bar = 50 μm.

opennotspecifiedMar 2019View details →
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FIGURE 14. A in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 14. A proliferating umbel of Rhabdosciadium anatolyi at the fruiting stage. P: Peduncle; B: Bract; 1. First-degree umbel; 2. Second-degree umbellules; BR: bracteoles; M: Remains of the male flowers; MER: Mericarps that developed from the central hermaphrodite flower; C: Slightly curved fruit when one of the mericarps is not fully developed; S: Some mericarps, slightly stalked at the base (from the epitype, M. Fırat 30400).

opennotspecifiedMar 2019View details →
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FIGURE 13. A in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 13. A proliferating umbel and umbellules of Rhabdosciadium anatolyi that form a second- or third-degree irregularly branched inflorescence. P: Peduncle; B: Bract; 1. First-degree umbel rays; 2. Second-degree umbellule rays; 3. Third-degree umbellule rays; 4. Pedicels (from the epitype, M. Fırat 30400).

opennotspecifiedMar 2019View details →
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FIGURE 12 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 12. Paniculate corymbose inflorescence (general view and detail) of Rhabdosciadium anatolyi (from the epitype, M. Fırat 30400).

opennotspecifiedMar 2019View details →
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FIGURE 8 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 8. Umbels, fruits, and leaves of Rhabdosciadium hizanense (from the holotype, M. Fırat 32618).

opennotspecifiedMar 2019View details →
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FIGURE 3 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 3. Phylogenetic relationship of Careae members based on a combined data of the ML and Bayesian analyses. GenBank sequence IDs are given next to species. BS and PP values are given on the branches. Hyphen (-) indicates BS and PP values below than 70% and 0.9, respectively.

opennotspecifiedMar 2019View details →
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FIGURE 1 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 1. Distribution of the Rhabdosciadium species in Turkey: R. hizanense (red), R. anatolyi (blue), R. microcalycinum (purple), R. oligocarpum (grey), and R. urusakii (black).

opennotspecifiedMar 2019View details →
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FIGURE 2 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 2. Distribution of the species Rhabdosciadium in the World: R. hizanense (red), R. anatolyi (blue), R. microcalycinum (purple), R. oligocarpum (grey), R. urusakii (black), R. aucheri (green), R. petiolare (orange), and R. straussii (yellow).

opennotspecifiedMar 2019View details →
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FIGURE 9 in Contributions to the taxonomy of the Irano-Turanian genus Rhabdosciadium (Apiaceae): Nomenclatural notes, carpology, molecular phylogeny and the description of a new species from Bitlis (Turkey)

FIGURE 9. Rhabdosciadium anatolyi in habitat, with Prangos pabularia (from the epitype, M. Fırat 30400).

opennotspecifiedMar 2019View details →
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FIGURE 2 in Molecular phylogeny of the genus Hylodesmum (Fabaceae)

FIGURE 2. Maximum likelihood tree of Hylodesmum from phylogenetic analysis of combined rps16-trnQ and trnL-F sequence data. Numbers above branches indicate ML bootstrap supports (before slash) and MP jackknife supports (after slash) for major lineages. Numbers below branches indicate Bayesian posterior probabilities for major lineages. Double dash shows that the bootstrap value or jackknife value lower than 50.

opennotspecifiedMay 2019View details →
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FIGURE 1 in Molecular phylogeny of the genus Hylodesmum (Fabaceae)

FIGURE 1. Maximum likelihood tree of Hylodesmum from phylogenetic analysis of ITS sequence data. Numbers above branches indicate ML bootstrap supports (before slash) and MP jackknife supports (after slash) for major lineages. Numbers below branches indicate Bayesian posterior probabilities for major lineages. Double dash shows that the bootstrap value or jackknife value lower than 50.

opennotspecifiedMay 2019View details →
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FIGURE 3 in Molecular phylogeny of the genus Hylodesmum (Fabaceae)

FIGURE 3. Maximum likelihood tree of Hylodesmum from phylogenetic analysis of combined ITS, rps16-trnQ, and trnL-F sequence data. Numbers above branches indicate ML bootstrap supports (before slash) and MP jackknife supports (after slash) for major lineages. Numbers below branches indicate Bayesian posterior probabilities for major lineages. Double dash shows that the bootstrap value or jackknife value lower than 50.

opennotspecifiedMay 2019View details →
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FIGURE 5 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 5. Fifty percent majority rule consensus Bayesian tree based on single copy nuclear gene LHCA4 data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 0.909 RI= 0.989.

opennotspecifiedNov 2018View details →
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FIGURE 1 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 1. Fifty percent majority rule consensus Bayesian tree based on combined plastid petN-psbM, trnD-trnT, trnL-trnF and trnS-trnG intergenic spacer fragments data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 0.850 RI= 0.971.

opennotspecifiedNov 2018View details →
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FIGURE 4 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 4. Fifty percent majority rule consensus Bayesian tree based on plastid petN-psbM intergenic spacer data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 1.000 RI= 1.000.

opennotspecifiedNov 2018View details →
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FIGURE 3 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 3. Fifty percent majority rule consensus Bayesian tree based on nrDNA ITS, plastid petN-psbM intergenic spacer and single copy nuclear gene LHCA4 combined data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 0.654 RI= 0.933.

opennotspecifiedNov 2018View details →
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FIGURE 6 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 6. Fifty percent majority rule consensus Bayesian tree based on nrDNA ITS, plastid petN-psbM, trnD-trnT, trnL-trnF, trnS-trnG intergenic spacers and single copy nuclear genes (LHCA4, maldehy, myb, CnAIP3 and 4CL) combined data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 0.813 RI= 0.938.

opennotspecifiedNov 2018View details →
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FIGURE 7 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 7. Distribution of Juniperus polycarpos var. polycarpos, J. polycarpos var. turcomanica, J. seravschanica and hybrids in Iran.

opennotspecifiedNov 2018View details →
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FIGURE 2 in Molecular phylogeny of Juniperus in Iran with special reference to the J. excelsa complex, focusing on J. seravschanica

FIGURE 2. Fifty percent majority rule consensus Bayesian tree based on nrDNA ITS data. Numbers above branches are Bayesian posterior possibilities (before slashes) and maximum likelihood bootstrap support values (after slashes), while numbers under branches are maximum parsimony bootstrap support values. Values <50 % are not shown. CI= 0.833 RI= 0.965.

opennotspecifiedNov 2018View details →
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FIGURE 2 in Molecular phylogeny of the genus Rhabdosciadium (Apiaceae) with description of a new species R. anatolyi from Hakkâri province, eastern Turkey

FIGURE 2 Rhabdosciadium anatolyi holotype (MW 0595616). Photo courtesy of National Depository Bank of Live Systems, Moscow State University.

opennotspecifiedDec 2017View details →

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International Brain Laboratory public data

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OpenNeuro

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