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2,295 results for “New Caledonia”
Fig. 7 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 7. Radulae of species of Amalda H. Adams & A. Adams, 1853. A–G. A. hilgendorfi (von Martens, 1897). A–B. MNHN IM-2019-621 (shell on Fig. 4D). C. MNHN IM-2009-11961 (shell on Fig. 4J). D. MNHN IM-2013-58045, Papua New Guinea. E. MNHN IM-2013-19909, Papua New Guinea. F. MNHN IM-2013-63430, southern New Caledonia. G. MNHN IM-2007-33312 (shell on Fig. 5F). H. A. aureomarginata Kilburn & Bouchet, 1988, MNHN IM-2013-63421, specimen not sequenced, southern New Caledonia. I–J. A. miriky sp. nov. I. Miriky, stn CP3210, specimen not sequenced, Madagascar. J. Miriky, stn DW3215 (shell on Fig. 10J). K–L. A. cacao sp. nov., holotype, MNHN IM-2000-35296 (shell on Fig. 11A–E).
Fig. 9 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 9. Distribution map of Amalda aureomarginata Kilburn & Bouchet, 1988 (A) and A. fuscolingua Kilburn & Bouchet, 1988 (B) off southern New Caledonia. Red circles = the type localities; stars = indicate stations where the species were recovered.
Fig. 5 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 5. Amalda hilgendorfi (von Martens, 1897). A–F. Coral Sea morph. A-B. MNHN IM-2007- 33313, SL 66 mm. C. MNHN IM-2007-33289, SL 51.3 mm. D. MNHN IM-2007-33288, SL 60.3 mm. E. MNHN IM-2013-63901, SL 27-3 mm. F. MNHN IM-2007-33312, SL 25.9 mm. G–K. Northern New Caledonia morph = A. hilgendorfi richeri Kilburn & Bouchet, 1988. G. Holotype, MNHN IM-2000- 1378, SL 66.9 mm. H. MNHN IM-2009-11916, SL 65 mm. I. MNHN IM-2009-11918, SL 43.2 mm. J. MNHN IM-2007-42675, SL 48.7 mm. K. MNHN IM-2009-11966, SL 29 mm. Shells at the same scale.
Fig. 4 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 4. Amalda hilgendorfi (von Martens, 1897). A–D. Typical morph, Japan. A–C. MNHN IM-2019- 616, SL 53.1 mm. D. MNHN IM-2019-621, SL 50.0 mm. E–G. Philippine morph. E. MNHN IM-2007- 31950, SL 38.7 mm. F–G. MNHN IM-2007-33427, SL 40.3 mm. H–L. Solomon Islands and Papua New Guinea (PNG) morph. H. Solomons, MNHN IM-2007-33286, SL 52.6 mm. I. PNG, MNHN IM-2013- 44995, SL 51.3 mm. J. Solomons, MNHN IM-2009-11961, SL 32.9 mm. K. PNG, MNHN IM-2009- 22244, SL 63.1 mm. L. PNG, MNHN IM-2009-23330, SL 69.3 mm. M. Amalda tankervillii (Swainson, 1825), Venezuela, Isla de Margarita, 30–35 m, collection of Ron Voskuil, RV 0175, SL 80 mm. Photo by Ron Voskuil et al. (2011) (http://olivirv.myspecies.info/en/taxon-pages/ancillaria-tankervillii). Shells (except M, reduced) at the same scale.
Fig. 1 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 1. Aglaophenia digitulus Vervoort & Watson, 2003, colony from sample MNHN-IK-2015-569. Scale bar: 2 cm.
Fig. 8. A–F. Plumularia conjuncta Billard, 1919 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 8. A–F. Plumularia conjuncta Billard, 1919, portion of branch with proximalmost part of a cladium seen laterally (A); portion of cladium in frontal view (B); insertion of lateral nematothecae, seen frontally (C); nematothecae: mesial (D), from cladial intersegment (E) and from axil of cladium (F); all from sample MNHN-IK-2015-590. — G. Plumularia setacea (Linnaeus, 1758), portion of stem, proximal part of a cladium and female gonotheca, from sample MNHN-IK-2015-594. Scale bars: A–B, G = 300 µm; C–F = 50 µm.
Fig. 4 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 4. Actinopluma mirifica Galea gen. et sp. nov., distalmost, monosiphonic portion of stem with three successive cladial apophyses (A); portion of monosiphonic stem with proximalmost part of a cladium (B); detail of the axil (C); portion of main cladium with hydro- and nematothecae (D); all from holotype MNHN-IK-2015-612. Scale bars: A = 300 µm; B = 200 µm; C–D = 100 µm.
Fig. 3 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 3. Median-joining haplotype network based on Cox1 sequences of Amalda hilgendorfi (von Martens, 1897). Circles are colour coded by general location reported on the map and sized according to each haplotype's relative abundance. Lengths of the lines connecting haplotype circles are proportional to the number of nucleotide differences among haplotypes. Green rectangle and oval encircle assemblages of haplotypes from New Caledonia (each including a specimen from Papua New Guinea).
Fig. 11. A in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 11. A. Antennella aff. varians (Billard, 1911), colony, MNHN-IK-2015-603. — B. Corhiza megatheca (Ansín Agís et al., 2009), colony, MNHN-IK-2015-600. — C. Corhiza patula Galea sp. nov., holotype colony, MNHN-IK-2015-602. — D. Corhiza pauciarmata Ansín Agís et al., 2009, colony, MNHN-IK-2015-604. Scale bars: 1 cm.
Fig. 1 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 1. Bayesian tree (MrBayes) for the Cox1 gene. Bootstrap supports (± 70) and posterior probabilities (> 0.90) values are shown for each supported node. The unit for the scale is "substitutions/site". The clades of Amalda hayashii Ninomiya, 1988, A. fuscolingua Kilburn & Bouchet, 1988 and A. aureomarginata Kilburn & Bouchet, 1988 containing multiple specimens with minimal genetic distances are collapsed. The clade of A. hilgendorfi (von Martens, 1897) is collapsed and shown on Fig. 2.
Fig. 2 in The Indo-Pacific Amalda (Neogastropoda, Olivoidea, Ancillariidae) revisited with molecular data, with special emphasis on New Caledonia
Fig. 2. Molecular phylogeny of Amalda hilgendorfi (von Martens, 1897) produced by a Bayesian analysis of the Cox1 gene dataset. Outgroups and other species of Amalda have been removed from the tree. Only posterior probabilities ± 90% are shown. The unit for the scale is "substitutions/site". The geographical distribution and morphological morphs are coded for each specimen: Phil = Philippines; Sol = Solomon Islands; PNG = Papua New Guinea; sNC = South New Caledonia; nNC = North New Caledonia; CS = Coral Sea. Numbers in parentheses at the tips of the tree link the MNHN IM voucher number to the corresponding photo on the right.
Fig. 12 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 12 (opposite page). A–C. Antennella aff. varians (Billard, 1911) from sample MNHN-IK-2015-603, proximal part of cladium showing prosegment (A), and comparison with counterpart of A. balei (Billard, 1911) (F); hydrotheca in frontal view (B) compared to hydrothecae of true A. varians (D) and A. balei (G); hydrotheca in lateral view (C) compared to hydrothecae of true A. varians (E) and A. balei from various samples (H–J). A–C from sample MNHN-IK-2015-603; D–E from sample HRG-1584; F–H from sample HRG-1337; I from sample HRG-0546; J from sample HRG-0132; Scale bars: A, F = 1 mm; B–E, G–J = 200 µm.
Fig. 5 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 5 (opposite page). Actinopluma mirifica Galea gen. et sp. nov., main cladium with couple of accessory counterparts (A); proximal portion of another main cladium (B), accessory cladia not shown; middle portion of a cladium with aberrant branching (C); accessory cladium with nematothecate internodes and intervening hydrothecate internode (D); all from holotype MNHN-IK-2015-612. Scale bar: 300 µm.
Fig. 17 in Plumularioid hydroids (Cnidaria: Hydrozoa) from off New Caledonia collected during KANACONO and KANADEEP expeditions of the French Tropical Deep-Sea Benthos Program
Fig. 17 (opposite page). A–B. Monostaechas fisheri Nutting, 1905, stem internode with proximal portion of cladium bearing a female gonotheca, from sample MNHN-IK-2015-607 (A); male gonotheca from sample MNHN-IK-2015-606 (B). — C–I. Monostaechas fisheri Nutting, 1905, morphotype with shallower hydrothecae and longer lateral nematothecae: stem internode with proximal portion of cladium (C); lateral and axillar nematothecae from one side of a hydrotheca, seen laterally (D); axillar nematotheca occurring either singly (E) or in pairs (F), and detail of a theca seen from its adaxial side (G); male (H) and female (I) gonothecae; all from sample MNHN-IK-2015-605. — J. Monostaechas quadridens (McCrady, 1859), stem internode with proximal portion of cladium bearing a female gonotheca, from sample HRG-0853, for comparison. Scale bars: A–C, H–J = 300 µm; D–G = 100 µm.
Fig. 10 in New species and records of Evanioidea and Stephanoidea from New Caledonia (Hymenoptera)
Fig. 10. Pseudofoenus caledonicus Jennings & Austin, 2005 (MNHN). Lateral habitus. Scale bar = 1.0 mm.
Fig. 12. A in New species and records of Evanioidea and Stephanoidea from New Caledonia (Hymenoptera)
Fig. 12. A. Distribution of Aulacus pascali sp. nov., Pristaulacus elveni sp. nov. and Pristaulacus villemantae sp. nov. B. Distribution of Aulacus burwelli Jennings, Austin & Stevens, 2004; red circle = type locality; blue circle = specimens concerned by this study. C. Distribution of Gasteruption jenningsi sp. nov.; red circle = type locality; blue circle = specimens concerned by this study. D. Distribution of Gasteruption maquis Jennings, Krogmann & Parslow, 2015; red circle = type locality; blue circle = specimens concerned by this study. E. Distribution of Pseudofoenus caledonicus Jennings & Austin, 2005; red circles = localities previously published; blue square = specimens concerned by this study. F. Distribution of Parastephanus mouensis Aguiar, 2005; red circle = type locality; blue circle = specimens concerned by this study.
Fig. 9 in New species and records of Evanioidea and Stephanoidea from New Caledonia (Hymenoptera)
Fig. 9. Gasteruption maquis Jennings, Krogmann & Parslow, 2015 (MNHN). Lateral habitus. Scale bar = 5.0 mm.
Fig. 8 in New species and records of Evanioidea and Stephanoidea from New Caledonia (Hymenoptera)
Fig. 8. Gasteruption jenningsi sp. nov., holotype, ♀ (MNHN). A. Mesosoma in lateral view. B. Head in full-face view. C. Mesosoma in dorsal view. D. Apex of the ovipositor. E. Line drawing of the fore wing venation. Scale bars = 1.0 mm.
Fig. 6 in New species and records of Evanioidea and Stephanoidea from New Caledonia (Hymenoptera)
Fig. 6. Evaniidae (MNHN). A. Szepligetella deercreeki Deans & Mikó, 2013. B. Szepligetella irwini Deans & Mikó, 2013. C. Szepligetella levipetiolata (Turner, 1919). D. Male 1 (indet.) from Malaise trap n°KAT8-MAL4. E. Male 2 (indet.) from Malaise trap n°KAT8-MAL3. Scale bars = 1 mm.
Figure 9 from: Irwin ME, Winterton SL, Metz MA (2020) New stiletto flies from New Caledonia (Therevidae, Agapophytinae). ZooKeys 984: 83-132. https://doi.org/10.3897/zookeys.984.53587
Figure 9 Calophytus chazeaui sp. nov. A adult male (MEI125624), lateral view B same, oblique view C adult female (MEI030131), oblique view D same, lateral view. Body length: male: 8.3 mm; female: 9.0 mm.
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