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134 results for “infrageneric classification”
FIGURE 3 in Infrageneric classification of Elwendia (Apiaceae) with a restored species
FIGURE 3. Variability in fruit anatomy within Elwendia on schematic transects of mericarps. A, E. caroides with mericarps hardly separating, non-lignified mesocarp parenchyma cells in marginal ribs, solitary small vallecular vittae and flat endosperm on commissural side. B, E. cylindrica with broad mericarp commissure, non-lignified mesocarp parenchyma cells in marginal ribs, solitary vallecular vittae and flat endosperm on commissural side. C, E. latiloba with broad mericarp commissure, lignified mesocarp parenchyma cells with pitted walls in marginal ribs, numerous vallecular vittae and flat endosperm on commissural side. D, E. salsa with intermediate mericarp commissure, non-lignified mesocarp parenchyma cells in marginal ribs, solitary vallecular vittae and flat endosperm on commissural side. E, E. setacea with intermediate mericarp commissure, non-lignified mesocarp parenchyma cells in marginal ribs, large solitary vallecular vittae and endosperm on commissural side with groove. F, E. vaginata with broad mericarp commissure, sclerenchyma cells at marginal ribs, solitary vallecular vittae and flat endosperm on commissural side. 1, exocarp; 2, vallecular vittae; 3, vascular bundle; 4, mesocarp, non-lignified parenchyma cells; 5, sclerenchyma cells; 6, endosperm; 7, commissure; 8, lignified parenchyma cells with pitted walls. Scale bar: 1 mm.
FIGURE 2 in Infrageneric classification of Elwendia (Apiaceae) with a restored species
FIGURE 2. Variability in fruit morphology in Elwendia from dorsal (A, C–D) and lateral (B) sides. A, mericarp of E. afghanica with beak. B, fruit of E. caroides with mericarps hardly separating. C, mericarp of E. persica with filiform dorsal and marginal ribs and without beak. D, mericarp of E. setacea with almost obsolete dorsal and marginal ribs and without beak. E, mericarp of E. vaginata with narrow-winged marginal ribs and without beak.
FIGURE 1 in Infrageneric classification of Elwendia (Apiaceae) with a restored species
FIGURE 1. Variability in shape of stem leaf sheaths within Elwendia. A, E. persica (MW barcode MW0859216), linear-lanceolate sheaths. B, E. vaginata (MW barcode MW0859365), inflated sheaths. Courtesy of the National Depository Bank of Live Systems, Moscow State University.
FIGURE 1. A in A review of the infrageneric classifications proposed for Kalanchoe (Crassulaceae subfam. Kalanchooideae) from the earliest times up to 2000
FIGURE 1. A. Kalanchoe pinnata, the type of K. subg. Bryophyllum. B. Kalanchoe laciniata, the type of the genus name Kalanchoe. C. Kalanchoe tomentosa, the type of K. sect. Stellatopilosae in the 'woody clade' of K. subg. Kalanchoe. D. Kalanchoe synsepala, the currently accepted name of K. trichantha, the type of K. [unranked] Trichanthae in the 'woody clade' of K. subg. Kalanchoe. All photographs by Gideon F. Smith.
FIGURE 2. A in A review of the infrageneric classifications proposed for Kalanchoe (Crassulaceae subfam. Kalanchooideae) from the earliest times up to 2000
FIGURE 2. A. Kalanchoe linearifolia, the type of K. [unranked] Linearifoliae in the 'woody clade' of K. subg. Kalanchoe. B. Kalanchoe luciae, a species included in K. sect. Raveta of K. subg. Kalanchoe. C. Kalanchoe pumila, type of K. [unranked] Pumilae, at present included in K. subg. Kalanchoe. D. Kalanchoe daigremontiana, which is included in K. [subg. Bryophyllum] sect. Invasores Shtein & Smith (2021: 105). All photographs by Gideon F. Smith.
Data from: A new infrageneric classification of Meconopsis (Papaveraceae) based on a well-supported molecular phylogeny
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Data from: Plastid and seed morphology data support revised infrageneric classification and African origin of the pantropical genus Xylopia (Annonaceae)
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Supplementary material 8 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade A cpDNA (trnL-F, matK) alignment
Supplementary material 11 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade B nrITS alignment
Supplementary material 12 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade C cpDNA (trnL-F, matK) alignment
Supplementary material 10 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade B cpDNA (trnL-F, matK) alignment
Supplementary material 9 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade A nrITS alignment
Figure 7 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Figure 7 Goodenia Clade B_2 phylogeny from combined nrDNA + cpDNA sequence data and exemplar taxa of major subclades. Topology is 50% majority rule cladogram from the partitioned Bayesian inference analysis. Support values above the branches are Bayesian posterior probabilities and below are maximum likelihood bootstrap values. Branch colour corresponds with support values and taxon colour corresponds to the taxonomic classification of Carolin et al. (1992). For updated taxonomy from this paper, see Tables 1, 2. Taxa represented by multiple accessions are distinguished by project code numbers as listed in Suppl. material 1. AG. leiospermaBG. heteromeraCG. heterochilaDG. muellerianaEG. macroplectraFG. glandulosaGG. odonnelliiHG. pilosaIG. armstrongiana (White form). Images: C. Nieminski (A, G–I); Seeds of South Australia (B, C, F); A. Perkins (D); K.R. Thiele (E).
Figure 1 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Figure 1 Summary of broad relationships in Goodeniaceae from Jabaily et al. (2012) based on a 50% majority-rule cladogram from a partitioned Bayesian inference analysis of trnL-F and matK, with additional bootstrap values from separate parsimony and maximum likelihood analyses (values above branches are Bayesian posterior probabilities, values below branches are maximum likelihood bootstrap). Left inset – Coopernookia strophiolata showing the unique indusium pollen presenter (red arrow) that is diagnostic for the family. Voucher: K.R. Thiele 3710. Image: K.R. Thiele.
Figure 4 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Figure 4 Diagramatic sections of ovaries (l.s.) modified from Carolin (1959). From left–right Velleia, Goodenia, Verreauxia, and Scaevola, showing fusion of floral parts and structure of the incomplete locules and placentation of ovules.
Supplementary material 3 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade A nrITS phylogeny
Supplementary material 4 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade B cpDNA (trnL-F, matK) phylogeny
Figure 3 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Figure 3 Characterisation of inflorescence structure in Goodenias.l. modified from Carolin (1967a) with his corresponding Bauplan 'Type' concepts stated were applicable and phylogenetic position for exemplar species given in brackets; MI = main inflorescence, EZ = enrichment zone, V = vegetative zone. A Form A (Type 1) is a thyrse with leafy bracts and bracteoles e.g. Goodenia ovata (Goodenia I) or (Type 2) 1(–2)-flowered raceme with leafy bracts and bracteoles e.g. G. laevis (Goodenia I) (inset) B Form B (Type 5) is a basal rosette with leafy bracts and bracteoles e.g. G. hederacea (Goodenia II) C Form C (no Type) with flowers solitary in leaf axils, leafy bracts and bracteoles e.g. G. convexa (Goodenia II) D Form D (no Type) flowers solitary in leaf axils with leafy bracts, bracteoles absent e.g. G. pumilo (Porphyranthus I) E Form E (Type 4) a basal rosette, bracteoles, with leafy bracteose bracts and either a panicle-like form e.g. G. paniculata, raceme e.g. G. gracilis (Porphyranthus II) (inset above) or a thyrse e.g. G. pterigosperma (Coeruleae) (inset below) F Form F (Type 6) with ebracteolate racemes and leafy bracts e.g. G. hispida (Ebracteolatae II), (Type 7) non-leafy bracts e.g. G. cusackiana (Ebracteolatae I) (inset above), or (Type 8) a subumbel e.g. G . pulchella (Ebracteolatae I) (inset below) G Form G (Type 3) represented by a thyrse with reduced bracts and bracteoles e.g. G. scapigera (Monochila) and H Form H (Velleia Type) is a compound dichasium with leafy bracts and bracteoles e.g Velleia lyrata (Velleia).
Figure 2 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Figure 2 Diagnostic features of various species in Goodenias.l.A the type species Goodenia ovataBScaevola collaris fan-like flowers and immature fleshy fruit CG. concinna subumbellate inflorescence DG. scapigera with short, stiff hairs on the style, narrow indusium and white fan-like flowers EVelleia cycnopotamica with free sepals attached below the ovary (white arrow) FG. vilmoriniae seed with a broad membranous wing GG. scapigera habit with cauline leaves and thyrse-like inflorescences HG. gypsicola leafy bracts (white arrow) ISelliera radicans with prostrate stems rooting at the nodes, and solitary, bracteolate, fan-like flowers in the leaf axils. Vouchers: K.A. Shepherd KS 1530 (A); K.A. Shepherd KS 1533 (B); K.A. Shepherd KS 1591 (C); K.A. Shepherd KS 1584 (D); K.R. Thiele KRT 4201 (E); DEM6887 (F); K.A. Shepherd KS 1468 (G); R. Davis s.n. (H); J.A. Cochrane & S. Barrett 4181 (I). Images: K.A. Shepherd (A–D, G); K.R. Thiele (E, I); Seeds of South Australian (F); R. Davis (H).
Supplementary material 7 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Goodenia Clade C nrITS phylogeny
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