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561 results for “rico”
FIGURES 15–20 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 15–20. Efferia clava sp. nov. Male terminalia, lateral view:15. Intact, left side; 16. Gonostylus with thick sclerotization; 17. Phallus; and 18. Aedeagus with tubes and phallic flange. Female terminalia, lateral view: 19. Ovipositor; 20. Lateral spermatheca.
FIGURES 58–63 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 58–63. Efferia serrula sp. nov. Male terminalia, lateral view: 58. Intact, left side; 59. Gonostylus with thick sclerotization; 60. Phallus; and 61. Aedeagus with tubes and phallic flange. Female terminalia, lateral view: 62. Ovipositor; 63. Median and lateral spermathecae.
FIGURES 9–14 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 9–14. Efferia bullata sp.nov. Male terminalia, lateral view: 9. Intact, left side; 10. Gonostylus; 11. Phallus; and 12. Aedeagus with tubes and phallic flange. Female terminalia, lateral view: 13. Ovipositor; 14. Lateral spermatheca. Abbreviations: cercus=cer; membranous=men; tergites 8, 9=tg8, tg9.
FIGURES 5–8 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 5–8. Efferia angusta sp. nov. Male terminalia, lateral view: 5. Intact, left side; 6. Gonostylus; 7. Phallus; and 8. Aedeagus with tubes and phallic flange.
FIGURES 103–108 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 103–108. Efferia montensis sp. nov. Male terminalia, lateral view: 103. Intact, left side; 104. Gonostylus; 105. Phallus; and 106. Aedeagus with tubes and phallic flange. Female terminalia, lateral view: 107. Ovipositor; 108. Lateral spermatheca.
FIGURES 1–4 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 1–4. Efferia alia sp. nov. Male terminalia: 1. Intact, left side; 2. Gonostylus; 3. Phallus; and 4. Aedeagus with tubes and phallic flange. Abbreviations: aedeagus with tubes= aed; apical process of epandrium=ap; epandrium=epan; epandrial notch=epnh; gonocoxite=gncx; phallic flange=fla; pygidium=pyg; sternite 9 =st9.
FIGURES 89–96 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 89–96. Wings of 8 species of Efferia Coquillett. 89. E. exacta sp. nov.; 90. E. forbesi (Curran); 91. E. fortis (Walker); 92. E. fulvibarbis (Macquart); 93. E. haitensis (Walker); 94. E. montensis sp. nov.; 95. E. nigrimystacea (Macquart); and 96. E. sinuosa sp. nov. Abbrevations: Costa = C; discal cell = dc; first medial cell =m1; fourth radial vein = R4; fifth radial vein = R5; recurrent vein = rec; radial-medial crossvein = r-m.
FIGURE 128 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURE 128. Distribution of Efferia forbesi (Curran), E. nigrimystacea (Macquart), and E. stylata (Fabricius) in the northern Lesser Antilles.
FIGURES 76–81 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 76–81. Efferia suspiciosa sp. nov. Male terminalia: 76. Lateral view, lateral view: 77. Gonostylus; 78. Phallus; and 79. Aedeagus with tubes and phallic flange. Female terminalia: 80. Ovipositor; 81. Lateral spermatheca.
FIGURES 122–127 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURES 122–127. Efferia stylata (Fabricius). Male terminalia: 122. Lateral view, lateral view: 123. Gonostylus; 124. Phallus; and 125. Aedeagus with tubes and phallic flange. Female terminalia: 126. Ovipositor; 127. Lateral spermatheca.
FIGURE 129 in Review of the West Indian species of Efferia Coquillett (Diptera: Asilidae) with 13 new species and checklist: Part II. Hispaniola, Puerto Rico, and Lesser Antilles including Tobago and Trinidad
FIGURE 129. Distribution of Efferia nigrimystacea (Macquart) and Efferia species C in the southern Lesser Antilles.
FIGURE 3 in A New Species of Abbrosoga (Hemiptera: Fulgoroidea: Delphacidae), An Endemic Puerto Rican Planthopper Genus, with an Updated Checklist of the Delphacidae of Puerto Rico
FIGURE 3. Abbrosoga multispinosa Otero and Bartlett, male paratype, Mayagüez, P.R. A. dorsal habitus, B. front, C. lateral habitus, D. dorsal view, head and thorax, E. male terminalia, lateral view, F. male terminalia, caudal view, G. lateral view, head and thorax.
FIGURE 2 in A New Species of Abbrosoga (Hemiptera: Fulgoroidea: Delphacidae), An Endemic Puerto Rican Planthopper Genus, with an Updated Checklist of the Delphacidae of Puerto Rico
FIGURE 2. Abbrosoga errata Caldwell, male terminalia (Maricao State Forest), A. caudal view, B. left lateral view.
FIGURE 5 in A New Species of Abbrosoga (Hemiptera: Fulgoroidea: Delphacidae), An Endemic Puerto Rican Planthopper Genus, with an Updated Checklist of the Delphacidae of Puerto Rico
FIGURE 5. Abbrosoga multispinosa Otero and Bartlett, male genitalia, line art, A. left gonostylus, widest view; B. aedeagus, left lateral view (slightly rotated clockwise).
FIGURE 1. Abbrosoga errata Caldwell, male holotype except D in A New Species of Abbrosoga (Hemiptera: Fulgoroidea: Delphacidae), An Endemic Puerto Rican Planthopper Genus, with an Updated Checklist of the Delphacidae of Puerto Rico
FIGURE 1. Abbrosoga errata Caldwell, male holotype except D (Maricao State Forest); A. dorsal habitus, B. front, C. lateral habitus, D. hind leg and metatibial spur, ventral view, E. labels.
Fig. 1 in Reproductive Interference between Native and Introduced Lady Beetles (Coleoptera: Coccinellidae) in Puerto Rico
Fig. 1. Male Cycloneda sanguinea limbifer attempting to mate heterogeneric lady beetle females. a) With female Olla v-nigrum; b–d) With female Coelophora inaequalis. Laboulbeniales thalli can be seen on the elytra of two C. s. sanguinea (a and b, d).
Fig. 1 in A New Species of Decuanellus Osella (Coleoptera: Curculionidae: Molytinae: Lymantini) from Maricao State Forest, Puerto Rico
Fig. 1. Decuanellus coronarostris, new species, holotype male. A) Dorsal habitus, B) Dorsal rostrum, C) Dorsal antennal flagellum, D) Dorsal elytron, E) Dorsal middle and hind legs, F) Dorsal middle leg.
Fig. 2 in A New Species of Decuanellus Osella (Coleoptera: Curculionidae: Molytinae: Lymantini) from Maricao State Forest, Puerto Rico
Fig. 2. Decuanellus coronarostris, new species, holotype male, genitalia. A) Aedeagus, dorsal view, B) Aedeagus, partial lateral view, C) Sternite IX, dorsal view, D) Sternite VIII, ventral view.
FIGURE 2 in Cyathea ruttenbergii, a new tree fern (Cyatheaceae, Polypodiopsida) from Puerto Rico
FIGURE 2. Field characters of Cyathea ruttenbergii and similar species. A. Cyathea ruttenbergii, fertile frond, adaxially (Luquillo Mountains, Rio Grande, Puerto Rico). B. Cyathea pungens, fertile frond, adaxially (Pilcopata, Cusco, Peru). C. Cyathea borinquena, fertile frond, adaxially (Luquillo Mountains, Rio Grande, Puerto Rico). D. Cyathea ruttenbergii, trunk apex. E. Cyathea pungens, trunk apex. F. Cyathea borinquena, trunk apex. G. Cyathea ruttenbergii, petiole. H. Cyathea pungens, petiole. I. Cyathea borinquena, petiole. All photos by A. Tejedor.
Data from: Does trait variation within broadly distributed species mirror patterns across species? A case study in Puerto Rico
Although populations are phenotypically diverse, the majority of trait-based studies have focused on examining differences among species. The justification for this broadly applied approach is based on the assumption that differences among species are always greater than within species. This is likely true for local communities, but species are often broadly distributed across a wide range of environments and patterns of intraspecific variation might surpass differences among species. Therefore, an appropriate interpretation of the functional diversity requires an assessment of patterns of trait variation across different ecological scales. In this study, we examine and characterize patterns of leaf trait variation for species that are broadly distributed along an elevational gradient. We focus on seven leaf traits that represent a main axis of functional differentiation in plants reflecting the balance between photosynthetic efficiency, display, and stomatal conductance. We evaluated patterns of trait variance across ecological scales (elevation, species, populations, and individuals) and examined trait covariance at both within species and across species levels, along the elevation gradient. Our results show three key patterns: (1) intraspecific leaf trait variation for broadly distributed species is comparable to the inter-specific trait variation, (2) the trait variance structure is highly variable across species and (3) trait coordination between pairs of leaf traits is evident across-species along the gradient, but not always within species. Combined, our results show that trait coordination and covariance are highly idiosyncratic across broadly distributed and co-occurring species, indicating that species may achieve similar functional roles even when exhibiting different phenotypes. This result challenges the traditional paradigm of functional ecology that assumes single trait values as optimal solutions for environments. In conclusion, patterns of trait variation both across and within species should be considered in future studies that assess trade-offs among traits over environmental gradients.
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Allen Brain Atlas
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OpenNeuro
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