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21 results for “Heterocypris”
Fig. 9 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 9. Bilocypris fortescuensis gen. et sp. nov., ♂, holotype (WAM 67205), from Forstescue Marsh (type locality, sample PSW002). A. Hp. B. Lpp. C. Rpp. D. CR attachment (note: the bifurcation at the left side is the basis of the actual CR). E. CR. Scale = 92 µm.
Fig. 10 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 10. Bilocypris mandoraensis gen. et sp. nov., Mandora Marsh (type locality). A. LVi, ♂, holotype (WAM 67226). B. RVi, ♂, holotype (WAM 67226). C. LVi, ♀, allotype (WAM 67601). D. RVi, ♀, allotype (WAM 67601). E. CpD, ♀, paratype (WAM 67604). F. CpV, ♀, paratype (WAM 67603). G. RVi, ♂, anterior detail, holotype (WAM 67226). Scales: A–F = 1 mm; G = 500 µm.
Fig. 6 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 6. Trilocypris horwitzi gen. et sp. nov., Lake Austin (type locality). A. LVi, ♂, holotype (WAM 67199). B. RVi, ♂, holotype (WAM 67199). C. CpD, ♀ (WAM 67203). D. LVi, ♀, allotype (WAM 67200). E. CpRL, anterior detail, ♂ (RBINS INV 138035). F. CpRL, ♂ (RBINS INV 138035). G. CpD, ♂ (specimen lost). H. CpV, anterior detail, ♂ (WAM 67203). I. CpV, posterior detail, ♂ (WAM 67203). J. CpV, ♂ (WAM 67203). Scale: A–D, F–G, J = 1 mm; E = 200 μm; H–I = 300 μm.
Fig. 5 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 5. Patcypris outback gen. et sp. nov. A–C. ♂, holotype (WAM 67184) from Lake Maitland (type locality, sample LN5217). A. Hp. B. Rpp. C. Lpp. D. CR, ♂ (WAM 67197) from Lake Carey (sample OSTR60C). E. CR, ♀ (WAM 67198) from Lake Carey (sample OSTR60C). Scale = 92 µm.
Fig. 2 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 2. Patcypris outback gen. et sp. nov., Lake Maitland (type locality). A. LVi, ♂, holotype (WAM 67184). B. RVi, ♂, holotype (WAM 67184). C. CpRL, ♂, paratype, small specimen (WAM 67188). D. LVi, ♀, allotype (WAM 67185). E. RVi, ♀, allotype (WAM 67185). F. CpRL, ♂, paratype, detail of external rimmed pore on RV (WAM 67188). G. CpD, ♀, paratype (WAM 67187). H. CpD, ♂, paratype, detail anterior (WAM 67189). I. CpD, ♂, paratype, detail posterior (WAM 67189). J. CpD, ♂, paratype (WAM 67189). Scales: A–E, G, J = 1 mm; F = 10 µm; H–I =200 µm.
Fig. 3 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 3. Patcypris outback gen. et sp. nov., Lake Carey. A–C. ♂ (WAM 67197). A. A1, showing chaetotaxy of segments 4–6. B. A1, showing chaetotaxy of segments 1–3. C. A1, showing chaetotaxy of segment 7. D–E. ♀ (WAM 67198). D. Md coxa. E. T1 (respiratory plate not shown). Scale: A, C = 37 µm; B, E = 92 µm; D = 232 µm.
Fig. 8 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 8. Bilocypris fortescuensis gen. et sp. nov., Forstescue Marsh (type locality). A. LVi, ♂, holotype (WAM 67205). B. RVi, ♂, holotype (WAM 67205). C. CpV, detail anterior, ♀ (WAM 67216). D. LVi, ♀, allotype (WAM 67206). E. RVi, ♀, allotype (WAM 67206). F. RVi, ♀, detail central muscle scars, allotype (WAM 67206). G. CpRL, ♂ (WAM 67212). H. CpRL, ♀ (WAM 67215). I. CpRL, detail anterior, ♀ (WAM 67212). J. CpD, ♂ (WAM 67213). K. CpV, ♀ (WAM 67216). L. CpD, ♀ (RBINS INV 1380377). M. CpD, detail anterior, ♂ (WAM 67213). Scales: A–B, D–E, G–H, J–L = 1 mm; C, F, M = 200 µm; I = 300 µm.
Fig. 12 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 12. Billcypris davisae gen. et sp. nov. A–I, L. Lake Cowan (type locality, sample OSTR064B). J, K. Lake Lefroy (sample OSTR063A). A. LVi, ♂, holotype (WAM 67217). B. RVi, ♂, holotype (WAM 67217). C. RVi, detail of central muscle scars, ♂, holotype (WAM 67217). D. LVi, ♀, allotype (WAM 67218). E. RVi, ♀, allotype (WAM 67218). F. CpD, ♂ (WAM 67222). G. CpRL, ♀ (WAM 67219). H. CpRL, ♂ (WAM 67221). I. CpRL, detail of external surface, ♀ (WAM 67219). J. LVi, ♂ (WAM 67224). K. RVi, ♂ (WAM 67224). L. CpD, ♀ (WAM 67220). Scales: A–B, D–H, J–L = 1 mm; C = 200 µm; I = 100 µm.
Fig. 4 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 4. Patcypris outback gen. et sp. nov., Lake Carey. A–C. ♀ (WAM 67198). A. A2. B. A2, distal chaetotaxy. C. Mx1, palp and 3rd endite showing Zahnborsten. D. ♂ (WAM 67197), A2, distal chaetotaxy. Scale: A= 232 µm; B–D = 37 µm.
Fig. 13 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 13. Billcypris davisae gen. et sp. nov., Lake Cowan (type locality, sample OSTR064B). A–C. ♂, holotype (WAM 67217). A. Hp. B. Rpp. C. Lpp. D–F. ♂, paratype (RBINS INV 138038). D. Hp outline. E. Lpp. F. Rpp. G–H. ♂, holotype (WAM 67217). G. CR attachment (note: the bifurcation at the left side is the basis of the actual CR). H. CR. Scale: A–C, E–H = 92 µm; D = 232 µm.
Fig. 11 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 11. Bilocypris mandoraensis gen. et sp. nov., Mandora swamp (type locality). A–F. ♂, holotype (WAM 67226). A. Hp. B. Rpp. C. Lpp. D. T2. E. Caudal ramus. F. Support of caudal ramus. G–H. ♀, allotype (WAM 67601). G. Female genital organ. H. Female genital organ, distal detail. Scale: A–D, H = 92 µm; E–F = 232 µm; G = 37 µm.
Fig. 7. A–B in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 7. A–B. Patcypris outback gen. et sp. nov., Lake Maitland (type locality), ♂, holotype (WAM 67184). A. CR attachment (note: the bifurcation to the right is the basis of the CR itself). B. T2. – C–G. Trilocypris horwitzi gen. et sp. nov., Lake Austin (type locality), ♂, holotype (WAM 67199). C. Hp. D. Rpp. E. Lpp. F. CR attachment. G. CR. Scale = 92 µm.
Fig. 5 in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 5. Heterocypris sarakhamensis, new species, female. A, T3; B, CR; C, CR attachment. Scale bar = 100 µm.
Fig. 1. Heterocypris sarakhamensis, new species. A–C, F in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 1. Heterocypris sarakhamensis, new species. A–C, F, female; D–E, male. A, Cp, dorsal view; B, Cp, right lateral view; C, Cp, left lateral view; D, Cp, dorsal view; E, Cp, right lateral view; F, valve surface of Cp, left lateral view. Scale bar: A–E = 200 µm, F = 10 µm.
Fig. 4 in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 4. Heterocypris sarakhamensis, new species, female. A, Md-coxa; B, Mx1; C, T1; D, T2. Scale bar = 100 µm.
Fig. 6 in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 6. Heterocypris sarakhamensis, new species, male. A, A2, terminal part; B, terminal segment of A2; C, left palp of T1; D, right palp of T1; E, hemipenis; F, Zenker's organ. Scale bar = 100 µm.
Fig. 2. Heterocypris sarakhamensis, new species. A–F in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 2. Heterocypris sarakhamensis, new species. A–F, female; G–H, male. A, LV, internal view; B, RV, internal view; C, posterior part of LV, internal view; D, anterior part of LV, internal view; E, anterior part of RV, internal view; F, posterior part of RV, internal view; G, LV, internal view; H, RV, internal view. Scale bar: A, B, G, H = 200 µm, C–F = 100 µm.
Fig. 3 in Description of a new species of Heterocypris Claus, 1892 (Crustacea: Ostracoda: Cyprididae) from Thailand
Fig. 3. Heterocypris sarakhamensis, new species, female. A, A1; B, A2; C, Md-palp; D, terminal segment of Md-palp. Scale bar = 100 µm.
Fig. 1 in Four new genera and five new species of 'Heterocypris' from Western Australia (Crustacea, Ostracoda, Cyprinotinae)
Fig. 1. Map of Western Australia, showing localities where the new species were collected.
Heterocypris incongruens maintains an egg bank in stormwater habitats and influences the development of larval mosquito, Culex restuans
<p>Dormant propagules can provide a rapid colonization source for temporary aquatic habitats and set the trajectory for community dynamics, yet the egg banks of stormwater management systems have received little attention. We asked which species hatched from the sediment of drainage ditches in Champaign County, IL, and found bdelloid rotifers and ostracods (<em>Heterocypris incongruens</em>) to be the most common taxa. These sites also are colonized by mosquitoes, and we established laboratory experiments to examine interspecific interactions between common co-occurring taxa. Culex restuans larvae were reared in the presence or absence of <em>H. incongruens</em> at two intra- and interspecific densities (20 or 40 total individuals) and their survivorship to adulthood, development time to adulthood, adult body size, and sex ratio were determined. Survival for Cx. restuans was significantly lower at high larval density than at low larval density in both treatments. Culex restuans larvae reared in the presence of H. incongruens had a shorter development time to adulthood and emerged as larger adults compared to those reared in the absence of <em>H. incongruens</em>. The sex ratios in the <em>H. incongruens</em> treatments were female-biased whereas those in the Culex-only treatments were male-biased. These differences may have epidemiological implications, as only female mosquitoes serve as disease vectors. Our results emphasize the importance of understanding interspecific interactions in influencing larval mosquito development traits.</p>
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