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28 results for “Butia”
Figure 1 in Ten years from propagule to mature plant of Butia purpurascens Glassman (Arecaceae): an endemic and endangered palm of the Brazilian Cerrado
Figure 1. General view of Butia purpurascens population in southwest Goiás, with its leaves extracted (relived crown). In the foreground, some plants with inflorescence and immature infrutescences. In the background, the clearing of natural areas of Cerrado for agricultural use (A). Detail of individuals without extracted leaves. Note the large size (about 6-7 m heigth) of some individuals (B). Photos are from the authors.
Figure 2 in Ten years from propagule to mature plant of Butia purpurascens Glassman (Arecaceae): an endemic and endangered palm of the Brazilian Cerrado
Figure 2. Details of fruits, pyrenes and seedling of Butia purpurascens. Mature fruits (A); stem primordium (B); predate pyrenes (C) and seedling showing root primordium (D). Credit to James Dean L. Rocha for Foto C. Other photos are from the authors.
Figs. 3A-C in Impacto de las concentraciones de ANA y sacarosa en el enraizamiento in vitro de Butia odorata (Barb. Rodr.) Noblick
Figs. 3A-C. Enraizamiento in vitro de plantas de Butia odorata en medio de cultivo con 45 g.L-1 de sacarosa y ácido naftalenacético a 0,3; 0,6 y 0,9 mg.L-1. A. plantas con callo; B. número de raíces; C. largo de hojas.
Fig. 1 in Impacto de las concentraciones de ANA y sacarosa en el enraizamiento in vitro de Butia odorata (Barb. Rodr.) Noblick
Fig. 1. Planta de Butia odorata enraizada in vitro en medio de cultivo con ácido naftalenacético (0,6 mg.L-1).
Fig. 3 in Bird visits and resource use in Butia odorata (Arecaceae) palm groves in southern Brazil
Fig. 3. Average indices of flower and ripe fruit supply of Butia odorata and number of frugivory and insectivory events in the evaluated months, Tapes, Rio Grande do Sul, Brazil.
Fig. 1. 1 in Bird visits and resource use in Butia odorata (Arecaceae) palm groves in southern Brazil
Fig. 1. 1. Study site location at municipality of Tapes, Rio Grande do Sul, Brazil. 2. Photo of an area of the palm grove (Photo by Cyro Menezes da Gloria). 3. Sampling area outlined in red; Map image created in R Studio; Study area in Google Earth, Google (C), 2019 (Edited by Cyro Menezes da GlÓria).
Figures 1–2. Butia eriospatha. 1 in Biological aspects and redescription of the weevil Revena plaumanni Bondar (Coleoptera: Curculionidae)
Figures 1–2. Butia eriospatha. 1) Plants and PVC tubes used for obtaining adults of Revena plaumanni. 2) Fruit with larvae exit hole.
FIGURE 64. Syagrus pimentae. A. Habit. B. Palm with Ricardo Pimenta for scale. C. Palm showing Butia-like leaves with evenly spaced leaflets. D. Old inflorescences. E. Newly opened inflorescence. F. Infructescence. G in A revision of the genus Syagrus (Arecaceae)
FIGURE 64. Syagrus pimentae. A. Habit. B. Palm with Ricardo Pimenta for scale. C. Palm showing Butia-like leaves with evenly spaced leaflets. D. Old inflorescences. E. Newly opened inflorescence. F. Infructescence. G. Whole plant with infructescence. (Pimenta & Campos-Rocha s.n. [holotype HPL]).
FIGURE 2. Butia poni. A in Resurrection and epitypification of Butia poni (Arecaceae), a neglected palm micro-endemic in the grasslands of Misiones, Argentina
FIGURE 2. Butia poni. A. Basal part of the plant, showing the stems. B. Leaf sheath plus petiole. C. Fruits. D. Pistillate flowers. E. Fruits, in section showing the endocarp. F. Staminate flower. G. Staminate flower (A–F, from Keller et al. 13022).
Data from: At risk of population decline? An ecological and genetic approach to the threatened palm species Butia eriospatha (Arecaceae) of southern Brazil
Open the record for dataset details and reuse information.
Data from: Linking phenology to mating system: exploring the reproductive biology of the threatened palm species Butia eriospatha
Open the record for dataset details and reuse information.
Fig. 2 in Tolerância à dessecação e armazenamento em temperatura sub-zero de sementes de Butia odorata (Barb. Rodr.) Noblick
Fig. 2. Germinação (G%) e formação de plântulas completas (P%) a partir de sementes de Butia odorata escarificadas pelo método de abertura total da cavidade embrionária, após armazenadas em ambiente de laboratório por 120 dias (teor de água de 6,14%) (controle); após armazenadas em ambiente de laboratório por 120 dias seguido de 24h em estufa com circulação de ar forçada a 30 ºC constantes (teor de água de 3,8%); e seguido de 120 dias sob temperatura negativa (sub-zero). Médias seguidas de letras minúsculas para G% e maiúsculas para P% não diferem estatisticamente pelo teste LSD de Fisher.
Fig. 1 in Tolerância à dessecação e armazenamento em temperatura sub-zero de sementes de Butia odorata (Barb. Rodr.) Noblick
Fig. 1. Teor de água de diásporos inteiros e de sementes isoladas de Butia odorata logo após a coleta; após dez dias em ambiente de laboratório; após 120 dias; após 120 dias seguido de 120 dias sob temperatura negativa; e após 120 dias em ambiente de laboratório seguido de 24h em estufa com circulação de ar forçada a 30 ºC constantes. Médias seguidas de letras minúsculas para sementes e maiúsculas para diásporos, não diferem estatisticamente pelo teste LSD de Fisher.
Figs. 2A-C in Impacto de las concentraciones de ANA y sacarosa en el enraizamiento in vitro de Butia odorata (Barb. Rodr.) Noblick
Figs. 2A-C. Enraizamiento in vitro de plantas de Butia odorata sometidos a los medios de cultivo con diferentes concentraciones del ácido naftalenacético. A. porcentaje de plantas con callo; B. porcentaje de plantas enraizadas; C. masa fresca de plantas.
FIGURE 3 in Resurrection and epitypification of Butia poni (Arecaceae), a neglected palm micro-endemic in the grasslands of Misiones, Argentina
FIGURE 3. Map of the geographic distribution of B. poni.
Figure 8 from: Noblick LR, Sant'anna-Santos BF (2021) Diversity of leaf anatomy within a single leaflet and between leaflets of four Butia (Arecaceae, Arecoideae) species. PhytoKeys 180: 31-52. https://doi.org/10.3897/phytokeys.180.66018
Figure 8 Within and between leaflet comparisons of Butia paraguayensis cross-sections A centre cross-section and those sections 5 cm and 10 cm to either side of it within the same middle leaflet B centre of middle leaflet and centres of the leaflets 18 cm and 36 cm to either side of it. Scale bars: 0.3 mm.
Figure 4 from: Noblick LR, Sant'anna-Santos BF (2021) Diversity of leaf anatomy within a single leaflet and between leaflets of four Butia (Arecaceae, Arecoideae) species. PhytoKeys 180: 31-52. https://doi.org/10.3897/phytokeys.180.66018
Figure 4 Anatomical changes of the leaflet margins in a 10 cm region to either side of the leaflet centre: Butia paraguayensis. PVB-SVB = primary vascular bundles transitioning to secondary vascular bundles; SVB-PVB = secondary vascular bundles transitioning to primary vascular bundles. Gone = vascular bundle has disappeared or nearly ended. Scale bar: 0.5 mm.
Figure 2 from: Noblick LR, Sant'anna-Santos BF (2021) Diversity of leaf anatomy within a single leaflet and between leaflets of four Butia (Arecaceae, Arecoideae) species. PhytoKeys 180: 31-52. https://doi.org/10.3897/phytokeys.180.66018
Figure 2 Carrot cube with leaflet sample secured within the carrot slit. Mid-rib of leaflet sample orientated parallel and adjacent to the side of the cube, ready to be placed in the hand-held microtome for sectioning.
Figure 12 from: Noblick LR, Sant'anna-Santos BF (2021) Diversity of leaf anatomy within a single leaflet and between leaflets of four Butia (Arecaceae, Arecoideae) species. PhytoKeys 180: 31-52. https://doi.org/10.3897/phytokeys.180.66018
Figure 12 Differences in the centre mid-rib cross-sections within plants of the same species and same accession (seed collected from the same mother plant), but growing under different environmental conditions resulting in a different stage of developmental plant and leaf maturity M, N are Butia paraguayensis plant accession 20060222*M and 20060222*N A, C are Butia yatay. plant accession 20040335*A and 20040335*C. Note the differences in the developmental stage of the plant above and its corresponding anatomy below.
Figure 11 from: Noblick LR, Sant'anna-Santos BF (2021) Diversity of leaf anatomy within a single leaflet and between leaflets of four Butia (Arecaceae, Arecoideae) species. PhytoKeys 180: 31-52. https://doi.org/10.3897/phytokeys.180.66018
Figure 11 Population and individual differences in Butia odorataA, B, D–H are from Rocha, Uruguay, C is from Tapes, RS, Brazil A 20060233*E B 20060233*G C contrasting stains make the abs from the Brazil specimen more visible D enlargement of A E enlargement of B F 20060234*M G 20060237*C H 20060240*A. Note that the presence of accessory bundles (ab) surrounding the mid-rib fibrous ring (MFR) is more apparent in the Brazil sample C partially due to the staining, but less apparent or absent from the Uruguay samples. Red arrows pointing out the abs in the Uruguayan samples and abs do not completely surround the MFR in F–H. Scale bars: 0.3 mm (A, B, F–H), 0.1 mm (C), 0.2 mm (D, E).
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