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67 results for “plastid DNA”
FIGURE 4 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 4. Mericarp morphology of Meeboldia yunnanensis, S. microloba, S. thibetica, Tongoloa zhongdianensis and Hymenidium apiolens (a–c, d–f, g–i, j–l and m–o). Fruit views are dorsal side, commissural side and transverse section for each row from left to right. Scale bars are 1 mm. Terminologies followed Kljuykov et al. (2004). cv = commissural vittae; lr = lateral rib; mar = marginal rib; mer = median rib; vv = vallecular vittae.
FIGURE 1 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 1. Phylogenetic tree of Acronema clade (A) and Sinodielsia clade (B) derived from Bayesian inference analysis using the ITS dataset. The numbers above and below the nodes are BI-PP and ML-BS presented as percentages, respectively (> 50%). Those nodes not occurring in the ML tree are indicated by pound symbols (#). The names of the clades follow the study of Downie et al. (2010).
FIGURE 6 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 6. Habit and morphology of Sinodielsia microloba. a. Habit. b. Compound umbels. c. Flowers. d. Cauline leaf. e. Bracts. f. Bracteoles. g. Basal leaves. h. Root. i. Fruits.
FIGURE 3 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 3. Specimen and fruits of Meeboldia achilleifolia. a. Specimen of M. achilleifolia (From herbarium BM, barcode BM000622295, Wallich 568 (Natural History Museum 2014)). b. Attachment on the specimen with note "Meeboldia 3402 Type of Meeboldia". c. Morphology of fruits in the attachment. d. Fruits drawing of M. achilleifolia from previous research (Pu & Peng 2005).
FIGURE 5 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 5. Diagnostic morphological characters of Meeboldia yunnanensis from Kunming, Yunnan. a. Habit. b–c. Compound umbels. d. Basal leaf. e. Root. f. Fruits.
FIGURE 2 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 2. Phylogenetic tree of Meeboldia, Sinodielsia and their relatives derived from Bayesian inference analysis using concatenated rpl16 and rps16 introns dataset. The numbers above and below the nodes are BI-PP and ML-BS presented as percentages, respectively (> 50%). Those nodes not occurring in the ML tree are indicated by pound symbols (#). The names of the clades follow the study of Downie et al. (2010).
FIGURE 7 in Phylogeny and taxonomy of Meeboldia, Sinodielsia and their relatives (Apiaceae: Apioideae) inferred from nrDNA ITS, plastid DNA intron (rpl16 and rps16) sequences and morphological characters
FIGURE 7. Terminal leaflets of basal leaves, from 3 populations of Meeboldia yunnanensis and 1 population of Sinodielsia delavayi. Scale bars are 10 mm. P1. Population of M. yunnanensis from Kunming. P2. Population of S. delavayi from Baisha River, Eryuan. P3. Population of M. yunnanensis from Haba village, Zhongdian. P4. Population of M. yunnanensis from Tiger Leaping Gorge, Zhongdian.
FIGURE 2 in Phylogenetics of two rhizomatous epiphytic species of Cymbidium (Orchidaceae; Cymbidieae): evidence from analyses of nuclear and plastid DNA
FIGURE 2. Maximum likelihood tree for Cymbidium based on combined nuclear and plastid DNA regions. The previously recognised sections from Liu et al. (2006) are highlighted by the colour of branches. Numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (BS ML, BS MP, PP). A dash (–) indicates that the node is inconsistent between the topology of the MP/ML trees and the Bayesian tree. "*" indicates that the node has 100 bootstrap percentage or 1.00 posterior probability.
FIGURE 1 in Phylogenetics of two rhizomatous epiphytic species of Cymbidium (Orchidaceae; Cymbidieae): evidence from analyses of nuclear and plastid DNA
FIGURE 1. Phylogenetic comparison between the ML/MP/BI trees of Cymbidium based on nuclear ribosomal ITS (left) and plastid DNA (right). Numbers near the nodes are bootstrap percentages and Bayesian posterior probabilities (BS, BS, PP). A dash (–) indicates that ML MP the node is inconsistent between the topology of the MP/ML trees and the Bayesian tree. "*" indicates that the node has 100 bootstrap percentage or 1.00 posterior probability.
Data from: Pleistocene climate change and phylogeographic structure of the Gymnocarpos przewalskii (Caryophyllaceae) in the northwest China: Evidence from plastid DNA, ITS sequences, and Microsatellite
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Data from: Strong nuclear differentiation contrasts with widespread sharing of plastid DNA haplotypes across taxa in European purple saxifrages (Saxifraga sect. Porphyrion subsect. Oppositifoliae)
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Data from: Phylogenetic systematics of subtribe Spiranthinae (Orchidaceae: Orchidoideae: Cranichideae) based on nuclear and plastid DNA sequences of a nearly complete generic sample
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Data from: Phylogenetics of the African Asclepias complex (Apocynaceae) based on three plastid DNA regions
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FIGURE 1 in The fundamental karyotype and plastid DNA of Alstroemeria piperata (Liliales, Alstroemeriaceae), a species endemic to the Valparaíso Region, Chile
FIGURE 1. Flowers of Alstroemeria piperata.
FIGURE 4 in The fundamental karyotype and plastid DNA of Alstroemeria piperata (Liliales, Alstroemeriaceae), a species endemic to the Valparaíso Region, Chile
FIGURE 4. Metaphase of Alstroemeria piperata. Scale 10 µm.
FIGURE 3 in The fundamental karyotype and plastid DNA of Alstroemeria piperata (Liliales, Alstroemeriaceae), a species endemic to the Valparaíso Region, Chile
FIGURE 3. Storage roots of Alstroemeria piperata.
FIGURE 2 in The fundamental karyotype and plastid DNA of Alstroemeria piperata (Liliales, Alstroemeriaceae), a species endemic to the Valparaíso Region, Chile
FIGURE 2. Habitat of Alstroemeria piperata.
FIGURES 19–30 in Novel Neidium Pfitzer species from western Canada based upon morphology and plastid DNA sequences
FIGURES 19–30. Neidium vandusenense sp. nov. LM. Fig. 21, holotype. Scale bar = 20 μm.
FIGURES 45–55 in Novel Neidium Pfitzer species from western Canada based upon morphology and plastid DNA sequences
FIGURES 45–55. Neidium collare sp. nov. LM. Fig. 49, holotype. Scale bar = 20 μm.
FIGURES 69–74 in Novel Neidium Pfitzer species from western Canada based upon morphology and plastid DNA sequences
FIGURES 69–74. Neidium lavoieanum sp. nov. LM. Fig. 71, holotype. Scale bar = 10 μm.
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