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394 results for “Malvaceae”
FIGURE 3 in Abelmoschus odishae (Malvoideae: Malvaceae): a new wild okra from tropical Eastern India
FIGURE 3. Abelmoschus odishae sp. nov. A. Habit: A1. Basal leaf, A2. Middle leaf, A3. Apical leaf; B. Stem with indumentum; C. Epicalyx: lateral view; D. Epicalyx: ventral view; E. Epicalyx enclosing flower bud; F. Longitudinal section of flower; G. Staminal column; H. Capsule; I. Seeds. Illustration by R.C.Misra.
FIGURE 2 in Abelmoschus odishae (Malvoideae: Malvaceae): a new wild okra from tropical Eastern India
FIGURE 2. Abelmoschus odishae sp. nov. A–B. Stem and branch showing indumentum; C. Basal leaf; D. Middle leaf; E. Apical leaves; F. Epicalyx enclosing flower bud; G. Epicalyx: lateral view; H. Epicalyx: dorsal view; I. Flower: front view; J. L.S. of flower; K. Sepal; L. Petals; M. Staminal column with epicalyx and sepal; N. Fruit; O. Dehisced capsules; P. Seeds. Photographs by R.C.Misra.
FIGURE 1 in Abelmoschus odishae (Malvoideae: Malvaceae): a new wild okra from tropical Eastern India
FIGURE 1. Abelmoschus odishae sp. nov. A. Natural occurrence of the species on a foot hill in Keonjhar district, Odisha; B. Location map of type collection site; C–D. Live plants maintained in the field gene bank; E. Type specimen preserved at ICAR-NBPGR, Cuttack. Photographs and location map by R.C.Misra.
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>
FIGURE 3 in Synopsis of Pavonia Cav. (Malvaceae) in the state of Pernambuco, Brazil
FIGURE 3. Distribution map of Pavonia in the Pernambuco state, Brazil. (+) P. blanchetiana; (*) P. fruticosa; (♦) P. glazioviana; (★) P. repens; (●) P. sidifolia.
Data from: Just add water: Rainfall-induced anther closure and color change in Ripariosida hermaphrodita (Malvaceae)
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Data from: Molecular phylogenetics of Kosteletzkya (Malvaceae, Hibisceae) reveals multiple independent and successive polyploid speciation events
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Data from: A new large-flowered species of Andeimalva (Malvaceae: Malvoideae) from Peru
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Data from: Chloroplast DNA-based phylogeography of Tilia americana (Malvaceae)
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Data from: Reevaluating monotypic Eleutherostylis from New Guinea and the Moluccas, and its inclusion in Grewia (Malvaceae: Grewioideae)
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Data from: Sida pradeepiana sp. nov. (Malvaceae) from India
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Alignments from: Gene count from target sequence capture places three whole genome duplication events in Hibiscus L. (Malvaceae)
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Phylogenetic relationships of Tilia (Malvaceae) inferred from multiple nuclear loci and plastid genomes
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Data from: A taxonomic revision of the African genus Desplatsia Bocq. (Malvaceae - Grewioideae) with identifiers
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Dynamic morphological plasticity in response to emergence timing in Abutilon theophrasti (Malvaceae)
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Data from: Diversification and fruit evolution in eumalvoids (Malvaceae)
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Architectural plasticity in response to population density in Abutilon theophrasti (Malvaceae)
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Data from: Phylogenetics, delimitation and historical biogeography of the pantropical tree genus Thespesia (Malvaceae, Gossypieae)
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Phylogeny and historical biogeography of <em>Ayenia</em> (Malvaceae) reveal two independent Caribbean colonizations
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Trichome micromorphology in Alcea L. and allied genera (Malvaceae) and its systematic
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