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274 results for “plant phylogeny”
FIGURES 8–9 in Taxonomy, host-plant associations and phylogeny of African Crotalaria - feeding seed beetles (Coleoptera, Chrysomelidae, Bruchinae): the Conicobruchus strangulatus (Fåhraeus) species group
FIGURES 8–9. Conicobruchus rubricollis: 7—median lobe; 8—basal strut and lateral lobes (specimen 18907, Zimbabwe).
FIGURES 5–7 in Taxonomy, host-plant associations and phylogeny of African Crotalaria - feeding seed beetles (Coleoptera, Chrysomelidae, Bruchinae): the Conicobruchus strangulatus (Fåhraeus) species group
FIGURES 5–7. Conicobruchus decoratus: 5—median lobe; 6—basal strut and lateral lobes (specimen 02012, Zambia); Conicobruchus flabellicornis: 7—median lobe (specimen 01209, Kenya).
FIGURE 1 in Taxonomy, host-plant associations and phylogeny of African Crotalaria - feeding seed beetles (Coleoptera, Chrysomelidae, Bruchinae): the Conicobruchus strangulatus (Fåhraeus) species group
FIGURE 1. Dorsal view of specimens belonging the to six species of the Conicobruchus strangulatus species group.
FIGURE 2. Molecular phylogeny constructed from 427 in A new genus and twenty new species of Australian jumping plant-lice (Psylloidea: Triozidae) from Eremophila and Myoporum (Scrophulariaceae: Myoporeae)
FIGURE 2. Molecular phylogeny constructed from 427 bp region of the mitochondrial gene cytochrome c oxidase subunit I (COI) for ingroup taxa, Myotrioza with locality data and host associations from Eremophila (Erem.) and Myoporum (Myop.).
FIGURE 1. Molecular phylogeny constructed from 427 in A new genus and twenty new species of Australian jumping plant-lice (Psylloidea: Triozidae) from Eremophila and Myoporum (Scrophulariaceae: Myoporeae)
FIGURE 1. Molecular phylogeny constructed from 427 bp region of the mitochondrial gene cytochrome c oxidase subunit I (COI) for the Myotrioza from Eremophila and Myoporum comprising a broad sampling of in-group and 5 out-group taxa. The number of putative species are shown for uncorrected pairwise percent divergences (Table 1) at 2%, 3–5%, 5–6% and 8%.
FIGURES 73–76 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 73–76. Scanning electron micrographs of anterior end of parthenogenetic females of Fergusobia. 73: from E. planchoniana 'leafy' LBG. 76: from E. delegatensis TLG. 77: from E. tereticornis TLG. 78: from E. gomphocephala PG. Scale bars 2 µm.
FIGURES 80–88 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 80–88. Gall forms induced by the Fergusobia/Fergusonina mutualism. 80: PG on leaf and petiole on S. luehmannii. 81: SBG on M. quinquenervia. 82: axial bud 'stem' galls on C. tessellaris. 83: FBG on E. eugenioides. 84: TLG on E. camaldulensis. 85: Bud galls on E. leucoxylon. 86: Unilocular axial bud gall on M. decora. 87: PG on leaf of E. pauciflora. 88: PG on leaf of E. gomphocephala. Scale bars 80–83 = 5mm; 84 = 1cm; 85–88 = 5mm
FIGURES 69–72 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 69–72. Scanning electron micrographs of lateral fields of parthenogenetic females of Fergusobia. 69: from E. gomphocephala PG. 70: from E. tereticornis TLG. 71: from E. viminalis 'leafy' LBG. 72: from E. gomphocephala PG. Scale bars 69–71 = 5 µm; 72 = 2 µm.
FIGURES 1–22 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 1–22. Habitus drawings of parthenogenetic females from Fergusobia clades inferred from sequences of D2/ D3. 1: F. magna from C. tessellaris axial bud 'stem' galls. 2: from M. linariifolia SBG. 3: from E. camaldulensis TLG. 4: from E. camaldulensis FBG. 5: from E. microcarpa FBG. 6: from E. delegatensis TLG. 7: from E. fasciculosa style gall. 8: from E. gomphocephala PG. 9: from E. planchoniana 'leafy' LBG. 10: from E. tereticornis PG. 11: from S. luehmannii PG. 12: F. ptychocarpae from C. ptychocarpa FBG. 13: from A. floribunda TLG. 14: F. fisheri from E. leucoxylon FLG. 15: from Corymbia sp. PG. 16: from E. camaldulensis axial bud 'stem' galls. 17: F. quinquenerviae from M. quinquenervia SBG. 18: from M. nervosa BSG. 19: from M. quinquenervia 'rosette' gall. 20: from E. obliqua FBG a. 21: from E. obliqua FBG b. 22: from E. viminalis 'leafy' LBG. Scale bars = 50µm.
FIGURES 62–68 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 62–68. Shield forms found on third stage larvae of Fergusonina fly species associated with Fergusobia nematodes. "Bars" form. 62: from E. delegatensis TLG. 63: from Eucalyptus sp. FLG. "Dots" form. 64: from E. porosa PG. 65: from E. viminalis ULBG. 66: from E. odorata FLG. 67: from E. siderophloia FLG. "Plates with teeth" form. 68: from E. cosmophylla TLG. Scale bars 62–67 = 0.02mm; 68= 0.2mm.
FIGURES 44–61 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 44–61. Habitus drawings of preparasitic infective females from Fergusobia clades inferred from sequences of D2/D3. 44: F. magna from C. tessellaris axial bud 'stem' galls. 45: from M. linariifolia 46 from E. camaldulensis TLG. 47: from E. camaldulensis FBG. 48: from E. microcarpa FBG. 49: from E. delegatensis TLG. 50: from E. fasciculosa style gall. 51: from E. gomphocephala PG. 52: from E planchoniana 'leafy' LBG. 53: from S. luehmannii PG. 54: F. ptychocarpae from C. ptychocarpa FBG. 55: from A. floribunda TLG. 56: F. fisheri from E. leucoxylon FLG. 57: from Corymbia sp. PG. 58: from E. camaldulensis axial bud 'stem' galls. 59: F. quinquenerviae from M. quinquenervia SBG. 60: from M. quinquenervia 'rosette' gall. 61: from E. viminalis 'leafy' LBG. Scale bars = 50µm.
FIGURES 23–43 in The nematode genus Fergusobia (Nematoda: Neotylenchidae): molecular phylogeny, descriptions of clades and associated galls, host plants and Fergusonina fly larvae 2633
FIGURES 23–43. Habitus drawings of males from Fergusobia clades inferred from sequences of D2/D3. 23: F. magna from C. tessellaris axial bud 'stem' galls. 24: from M. linariifolia ULBG. 25: from E. camaldulensis TLG. 26: from E. camaldulensis FBG. 27: from E. microcarpa FBG. 28: from E. delegatensis TLG. 29: from E. fasciculosa style gall. 30: from E. gomphocephala PG. 31: from E. planchoniana 'leafy' LBG. 32: from E. tereticornis PG. 33: from S. luehmannii PG. 34: F. ptychocarpae from C. ptychocarpa FBG. 35: from A. floribunda TLG. 36: F. fisheri from E. leucoxylon FLG. 37: from Corymbia sp. PG. 38: from E. camaldulensis axial bud 'stem' galls. 39: F. quinquenerviae from M. quinquenervia SBG. 40: from M. quinquenervia 'rosette' gall. 41: from E. obliqua FBGa. 42: from E. obliqua FBGb. 43: from E. viminalis 'leafy' LBG. Scale bars = 50µm.
Appendix. The status of global taxonomic checklist preparation for flowering plant families (based on Angiosperm Phylogeny Group II but modified to reflect circumscriptions of existing checklists). If a checklist is complete and available on the Internet then the URL is also given. The species numbers (sp. no.) given are either based on actual working lists (WL) where they exist or are based on Stevens (2006) if no WL is available. Five categories are used to describe the status of a particular working list: 1, checklist complete and accessible via the Internet now; 2, checklist available on Internet by end of 2007 (Asteraceae 2010); 3, checklist complete but not online; 4, some online lists giving partial coverage may be available; 5, no global checklist being compiled so far as known. in Towards Target 1 of the Global Strategy for Plant Conservation: A working list of all known plant species - Progress and prospects
Appendix. The status of global taxonomic checklist preparation for flowering plant families (based on Angiosperm Phylogeny Group II but modified to reflect circumscriptions of existing checklists). If a checklist is complete and available on the Internet then the URL is also given. The species numbers (sp. no.) given are either based on actual working lists (WL) where they exist or are based on Stevens (2006) if no WL is available. Five categories are used to describe the status of a particular working list: 1, checklist complete and accessible via the Internet now; 2, checklist available on Internet by end of 2007 (Asteraceae 2010); 3, checklist complete but not online; 4, some online lists giving partial coverage may be available; 5, no global checklist being compiled so far as known.
FIGURE 4 in Morphology and Phylogeny of a new species Pseudocercospora rauvolfiicola on medicinal plant Rauvolfia serpentina from Sonebhadra Forest, Uttar Pradesh, India
FIGURE 4. Molecular Phylogenetic analysis of Pseudocercospora crotalariigena sp. nov. (AMH:10041 Holotype; NFCCI:4441 ex type): Batesian tree from LSU, ITS, ACT and TEF1α. Numbers on the branches are bootstrap values for Mega 5 Maximum likelihood (ML) and Mega 5 maximum parsimony and Bayesian posterior probability (PP). Pallidocercospora heimii and Coremiopassalora eucalypti are out groups.
FIGURE 2 in Morphology and Phylogeny of a new species Pseudocercospora rauvolfiicola on medicinal plant Rauvolfia serpentina from Sonebhadra Forest, Uttar Pradesh, India
FIGURE 2. Pseudocercospora rauvolfiicola sp.nov. (Holotype AMH: 10139) a–p Conidia. q–s Fascicles of conidiophores. Scale bars: 20 µm.
FIGURE 1. a in Morphology and Phylogeny of a new species Pseudocercospora rauvolfiicola on medicinal plant Rauvolfia serpentina from Sonebhadra Forest, Uttar Pradesh, India
FIGURE 1. a Habit of the host plant (Rauvolfia serpentina (L.) Benth.ex Kurz. b–c Symptoms on upper and lower surfaces of leaf. d Transverse Section through infection spots of leaf showing fungal colonies on lower surfaces. e Fungal culture on Potato dextrose Agar. f Fungal culture on Oatmeal Agar.
FIGURE 3. Scanning Electron Micrographs a–b in Morphology and Phylogeny of a new species Pseudocercospora rauvolfiicola on medicinal plant Rauvolfia serpentina from Sonebhadra Forest, Uttar Pradesh, India
FIGURE 3. Scanning Electron Micrographs a–b Fascicles of conidiophores arising from stomata of leaf of the host plant. c Conidia attached to conidiophores (showing arrow). d Fascicle of conidiophores showing conidiogenous cells (showing arrow). Scale bars: a–c= 10 µm, d=2µm.
FIGURE 1 in Taxonomy, phylogeny and host plants of some Abia sawflies (Hymenoptera, Cimbicidae)
FIGURE 1. Phylogenetic relationships among the studied Abia species. Bayesian trees based on the COI (A), cytb (B), 28S (C), concatenated cytb-28S (D) and COI-cytb-28S (E) datasets. Bayesian posterior probabilities (>0.50) / parsimony bootstraps (>50) are given in Fig. 1A-D and Bayesian posterior probabilities obtained for the species tree / concatenated COI-cytb-28S (>0.50) are given in Fig. 1E. Voucher numbers (of JLB sawfly collection) or GenBank accession numbers are given after the sawfly species names. On the right part of the trees, genus names of host plants are listed according to: 1Benson (1951), 2Taeger et al. (1998), 3Savina & Chevin (2012), 4Chevin (2001), 5Benson (1946), 6Smith (1979), 7Harizanova et al. (2012), 8Liston & Späth (2006), 9Savina & Liston (2009). (?) No larvae, but adults have mostly been found on or near Lonicera alpigena.
Figure 9 in Phylogeny and classification of jumping plant lice of the subfamily Liviinae (Hemiptera: Psylloidea: Liviidae) based on molecular and morphological data
Figure 9. Male terminalia and tarsal arolium of immature Liviinae: A, G, L, Klyveria crassiflagellata (Burckhardt); B, H, Liella cf. insolita (Mifsud and Burckhardt); C, Diclidophlebia fremontiae (Klyver); D, Diclidophlebia leptonychiae Burckhardt et al.; E, Haplaphalara dahli (Rübsaamen); F, Haplaphalara irvingiae (Burckhardt et al.); I, Melanastera lucens (Burckhardt et al.); J, Psyllopsis fraxini (Linnaeus); K, Livia junci (Schrank); N, Melanastera Brazil. A, B, male proctiger, in lateral view; C–I, apex of proximal portion and distal portion(s) of aedeagus; J–N, tarsal arolium of fifth instar immature. Scales A, B = 0.05 mm; C–I = 0.05 mm; J–N, = 0.05 mm.
Figure 10 in Phylogeny and classification of jumping plant lice of the subfamily Liviinae (Hemiptera: Psylloidea: Liviidae) based on molecular and morphological data
Figure 10. Maximum likelihood (ML-mix) tree resulting from a mixture (heterotachous) model (–m GTR+H4 option in IQ TREE) based on the molecular data of the Liviidae and showing the three subfamilies Euphyllurinae, Neophyllurinae, and Liviinae, and two tribes Liviini and Paurocephalini. The numbers below the branches represent the bootstrap values of ≥50. Nodes with boostrap values of <50 are shown in interrupted lines. Light blue and yellow bars indicate the non-monophyletic genera, Diclidophlebia and Haplaphalara.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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