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12 results for “Apodanthaceae”
Supplementary material 1 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
List of accessions used in this study with author names for each species, herbarium vouchers, and GenBank accession numbers:
FIGURE 2. A, B in Pilostyles boyacensis, a new species of Apodanthaceae (Cucurbitales) from Colombia
FIGURE 2. A, B. Successive photos showing visits of a red Camponotus ant (circled) to Pilostyles boyacensis (González 4519). C, D. Red and black Camponotus ant species visiting the same flowers of P. boyacensis. E–F. Shield bug detected visiting P. boyacensis flowers and fruits; ventral (E) and lateral (F) views. Scale bars: 1 mm.
FIGURE 3. A in Pilostyles boyacensis, a new species of Apodanthaceae (Cucurbitales) from Colombia
FIGURE 3. A. Distribution of Pilostyles in Colombia. B. Altitudinal ranges of the American species of Pilostyles; host and distribution data from Karsten (1856), Solm-Laubach (1878), Rose (1909), Blassingame (1968), Vattimo-Gil (1978), Yatskievych (1993), Cerros-Tlatilpa & Espejo-Serna (1998), Yatskievych & Meijer (2004), Rodríguez et al. (2008), Lárez & Calzadilla (2012), and Bellot & Renner (2014). Geographic distributions are as follows: P. thurberi, S United States and Mexico; P. mexicana, Mexico, Honduras and Guatemala; P. blanchetii, Jamaica, Cayman Islands, Costa Rica, Panama, Colombia, Venezuela, Brazil and N Argentina; and P. berteroi, Peru, Bolivia, Chile, and Argentina.
FIGURE 1. A–C in Pilostyles boyacensis, a new species of Apodanthaceae (Cucurbitales) from Colombia
FIGURE 1. A–C. Pilostyles boyacensis (González 4508) parasitizing Dalea cuatrecasasii at proximal (A, B) and distal (C) portions of the host banches. D, E. Details of flower rows of P. boyacensis. F Mid-level of D. cuatrecasasii branches with some anthetic P. boyacensis flowers; note the narrow space left by the white petals during anthesis. G. Detail of F showing a staminate flower adjacent to a carpellate flower in the same floral row. H–K. Four different floral rows with adjacent staminate and carpellate flowers. L. Fruits, surrounded by a number of floral buds. Scale bars: 1 cm in A, C; 5 mm in B, D; 1 mm in E–G, L; 0.5 mm in H–K.
Supporting data for: The danger zone: the joint trap of incomplete lineage sorting and long-branch attraction in resolving the Gondwanan origin of Rafflesiaceae and Apodanthaceae
<p>This is supporting sequence data for the paper: The danger zone: the joint trap of incomplete lineage sorting and long-branch attraction in resolving the Gondwanan origin of Rafflesiaceae and Apodanthaceae. It contains DNA and protein sequences as well as gene trees for 2135 loci for the investigation of the phylogenetic placement of the parasitic Rafflesiaceae and Apodannthaceae.</p>
Supplementary material 2 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Results of the dissections of 123 flowers from 82 specimens of Apodanthaceae:
Figure 2 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 2 - Geographic distribution of Apodanthaceae based on label information from 785 herbarium collections.
Figure 1 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 1 - Phylogenetic relationships in Apodanthaceae obtained under maximum likelihood from the mitochondrial gene matR (A) and the nuclear ribosomal RNA gene 18S (B). Shown in red are the specimens we wanted to identify to species. Numbers indicate bootstrap support >70%.
Figure 4 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 4 - Tepals of Apodanthaceae. A Tepal of the outer whorl of Apodanthes caseariae B Tepal of the middle whorl of Apodanthes caseariae C Tepal of the inner whorl of Apodanthes caseariae D Tepal margin of Apodanthes caseariae. The scale bar corresponds to 0.2 mm.
Figure 3 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 3 - Phylogenetic relationships among the hosts of Apodanthaceae (legume relationships from Wojciechowski et al. 2006) and among the species of Apodanthaceae (from Bellot and Renner in review). Identical colors link parasite species and their host(s) and are also used in Figure 2. Dashed lines represent associations with rarely reported hosts; hosts in bold are the most common ones.
Figure 5 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
Figure 5 - Sexual organs of Apodanthaceae from rehydrated herbarium material. A Androecium of Pilostyles haussknechtii, note the two rings of pollen sacs topped by a ring of hairs B Style and stigma of Pilostyles haussknechtii C Ovary locule and ovules of Pilostyles haussknechtii D Androecium of Apodanthes caseariae after bursting of the pollen sacs, note the hairs covering the column apex E Gynoecium of Apodanthes caseariae. The scale bar corresponds to 0.2 mm.
Alignments from: Gene lack of expression of embryogenesis related factors correlates with structural reduction in the holoendoparasitic Angiosperm Pilostyles boyacensis (Apodanthaceae)
<p>These files are the alignments used in the work "Gene loss expression in the early embryogenesis network correlates with structural reduction in the holoendoparasitic angiosperm <em>Pilostyles boyacensis </em>(Apodanthaceae)".</p> <p>Nucleotide alignments for the AGO, AP2-ERF, HD-ZIP-III and IV, PIN, RLK-CR4, RLK-RPK2, and WOX gene families. Coding sequences were download from the following databases: TAIR database (Poole, 2007), Phytozome v13) (Goodstein et al., 2012), Cucurbit Genomics Database (Zheng et al., 2019), OneKP database (Carpenter et al., 2019). Also, new data generated for <em>P. boyacensis</em> and deposited in Genbank with the codes OR296323-OR296355.</p> <p>The codes of sequences are in Appendix 1 of "Gene loss expression in the early embryogenesis network correlates with structural reduction in the holoendoparasitic angiosperm <em>Pilostyles boyacensis</em> (Apodanthaceae). The symbol # indicates a numeric or alphanumeric code associated with the gene according to the nomenclature of each base. Alignments were performed using the RevTrans platform (Wernersson and Pedersen, 2003), which translates the sequences into amino acids, aligns them using MAFFT with its automatic parameters, and then generates the corresponding matrix in nucleotides.</p>
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