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76 results for “Hoplias”
Figure 11-12 from: Marques TM, Boeger WA (2018) Proposal of Tiddergasilus gen. nov. (Ergasilidae: Cyclopoida) for T. iheringi comb. nov. from the gills of Hoplias malabaricus (Erythrinidae: Characiformes) from Brazil. Zoologia 35: 1-6. https://doi.org/10.3897/zoologia.35.e21577
Figure 11-12 (11) Morphological phylogeny of 15 genera of Ergasilidae showing Bremer support values and character changes supporting each node. Bremer support values are indicated in gray numerals; characters that indicate a homoplasy or reversal events are indicated. (12) Morphological phylogeny of 15 genera of Ergasilidae without the Character 3, showing Bremer support values and character changes supporting each node. Bremer support values are indicated in gray numerals; characters that indicate a homoplasy or reversal events are indicated.
Figures 1-10 from: Marques TM, Boeger WA (2018) Proposal of Tiddergasilus gen. nov. (Ergasilidae: Cyclopoida) for T. iheringi comb. nov. from the gills of Hoplias malabaricus (Erythrinidae: Characiformes) from Brazil. Zoologia 35: 1-6. https://doi.org/10.3897/zoologia.35.e21577
Figures 1-10 Tiddergasilus iheringi comb. nov. adult female. (1) dorsal view; (2) egg sac; (3) antennule; (4) urosome, caudal ramus; (5) mouth parts; (6) antenna; (7) leg 1; (8) leg 2; (9) leg 3; (10) leg 4. Scale bars: 1–2 = vertical 250 μm, 3–10 = 50 μm.
Linked collectors and determiners for: On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae).
Natural history specimen data linked to collectors and determiners held within, "On the taxonomy of the Italian endemic Hoplia dubia (Rossi, 1792), with the description of two new species (Coleoptera: Scarabaeidae: Melolonthinae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f3a915c9-a35b-454a-9090-c8792904d8d4">https://bionomia.net/dataset/f3a915c9-a35b-454a-9090-c8792904d8d4</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f3a915c9-a35b-454a-9090-c8792904d8d4">https://gbif.org/dataset/f3a915c9-a35b-454a-9090-c8792904d8d4</a>. Formatted as a Frictionless Data package.
Fig. 4 in Biology of growth of Hoplias aff. malabaricus (Bloch, 1794) in a shallow pampean lake (Argentina)
Fig. 4. Total frequency distribution of the scale radius (Rn) and decomposition of first ring measurements (shaded columns) in order to discriminate between the fish from summer and from spring groups (a). Decomposition of polymodal frequency distribution of ring measures from summer group (b) and spring group (c).
Fig. 2 in Biology of growth of Hoplias aff. malabaricus (Bloch, 1794) in a shallow pampean lake (Argentina)
Fig. 2. Average daily water temperatures registered at Yalca Lake during an annual cycle (a), and frequency distribution of the average daily temperatures (b).
Fig. 3 in Response of mucous cells of the gills of traíra (Hoplias malabaricus) and jeju (Hoplerythrinus unitaeniatus) (Teleostei: Erythrinidae)
Fig. 3. Mean values (± SEM) of mucous cell density, individual surface area and mucous cell fractional area (MCFA) at filament epithelial surface of Hoplias malabaricus exposed to deionized water and high ion concentration water.
Fig. 1. a-b in Response of mucous cells of the gills of traíra (Hoplias malabaricus) and jeju (Hoplerythrinus unitaeniatus) (Teleostei: Erythrinidae)
Fig. 1. a-b. Saggital section of gill filament showing filament and lamellar epithelium. c-d. Cross section of filament showing the distribution of mucous cells (arrowheads). a and c, Hoplias malabaricus. b and d, Hoplerythrinus unitaeniatus. Scale bar in mm. aa - filament afferent artery, c - cartilage, cc - chloride cell, cvs - central venous sinus, ea - filament efferent artery, L - lamella.
Fig. 7 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 7. Interorbital width vs. head length for Hoplias curupira (dots) and remaining species of Hoplias lacerdae group (circles).
FIGURE 21. Hoplias malabaricus, ROM 88821, 91.6 in Annotated list and key to the stream fishes of Trinidad & Tobago
FIGURE 21. Hoplias malabaricus, ROM 88821, 91.6 mm SL, Chatham River, Trinidad.
Figure 5. – The K2P in A new species of the Hoplias malabaricus species complex (Characiformes: Erythrinidae) from the La Plata River basin
Figure 5. – The K2P/NJ tree of BAR- CODE sequences from Hoplias misionera and related BINs from lower Plata Basin River. Numbers at each branch are bootstrap values.
Figure 3 in A new species of the Hoplias malabaricus species complex (Characiformes: Erythrinidae) from the La Plata River basin
Figure 3. – Compari- son between Hoplias mbigua, CI-FML 6764, 248 mm SL (above) and Hoplias misionera n sp., UNMDP 3328, 146 mm SL (below), showing dif- ferences. A: Body col- ouration; B: Dorsal profile of head; C: Last vertical series of scales on the base of the caudal-fin rays. Scale bars = 5 cm.
Figure 2 in A new species of the Hoplias malabaricus species complex (Characiformes: Erythrinidae) from the La Plata River basin
Figure 2. – Configuration of the medial margins of the dentary in selected specimens of Hoplias. A: Parallel-shaped in Hoplias lacerdae, UNMDP 594, 163 mm SL, Ramos stream, Misiones, Argentina; B: V-shaped in Hoplias cf malabaricus, UNMDP 504, 159 mm SL, Rio Rojas, Ascención, Buenos Aires, Argentina; C: Y-shaped in Hoplias misionera n. sp., holotype, UNMDP 574, 164 mm SL, stream tributary of the Acaraguá River, Misiones, Argentina. Scale bars = 2 cm.
Fig. 4 in New data on the distribution of Hoplia stenolepis (Scarabaeoidea: Melolonthidae) in Bulgaria
Fig. 4. Hoplia stenolepis ♀. Zemen Gorge, 05.06.2013, leg. D. Gradinarov. Scale bar: 5 mm.
Fig. 5. C in Pleistocene karyotypic divergence in Hoplias malabaricus (Bloch, 1794) (Teleostei: Erythrinidae) populations in southeastern Brazil
Fig. 5. C-banding patterns of H. malabaricus populations. Lake names are indicated.
Fig. 2. Giemsa-stained H in Pleistocene karyotypic divergence in Hoplias malabaricus (Bloch, 1794) (Teleostei: Erythrinidae) populations in southeastern Brazil
Fig. 2. Giemsa-stained H. malabaricus karyomorphs from middle rio Doce lakes, MG, Brazil.
Figure 4 in A new species of the Hoplias malabaricus species complex (Characiformes: Erythrinidae) from the La Plata River basin
Figure 4. – Geographic distribution of Hoplias misionera sp nov in South America. *: type locality.
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