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1,309 results for “Cladoceras”
FIGURE 3 in Cryptic diversity and gene introgression of Moinidae (Crustacea: Cladocera) in Nigeria
FIGURE 3 Bayesian phylogenetic tree and species- delimitation of Moinidae from Southeast Nigeria, based on the mitochondrial COI gene (478 bp). A single representative of each haplotype (for reference sequences see Supplementary Table S1) is included in the tree. Codes of Moinidae haplotypes from Nigeria are provided in Table 1. Only posterior probabilities> 0.70 are shown. The numbers in the bands relating to the bPTP method indicate the statistical support (PP) for lineage membership. The lineage ID s are shown in columns relating to the species-delimitation methods, and the newly detected lineages from Nigeria are indicated in colored squares. Abbreviations of country names in which each haplotype was detected are, BO: Bolivia, CA: Canada, CN: China, CZ: Czech Republic, HU: Hungary, IN: India, JP: Japan, KZ: Kazakhstan, KR: Korea, MX: Mexico, MN: Mongolia, NG: Nigeria, RU: Russia, TH: Thailand, UA: Ukraine, US: U.S.A. Downloaded from Brill.com 12/12/2023 04:27:13PM via Open Access. This is an open access article distributed under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/
FIGURE 2 in Cryptic diversity and gene introgression of Moinidae (Crustacea: Cladocera) in Nigeria
FIGURE 2 Morphology of Moinidae from Southeast Nigeria. Monia cf. micrura from the Nome Pool 2, Amaho: lateral view of (a) parthenogenetic female, (b) male and (c) ephippial female; (d) antenna II, (e) postabdomen (f) valve and (g) postero-ventral margin of valve of the parthenogenetic female. Monia cf. macrocopa, parthenogenetic female from Nome Pool 1: (h) lateral view, (i) antenna II, (j) limb I, (k) postabdomen and (l) valve. Moinodaphnia macleayi, parthenogenetic female from Adanni Opanda Rd Pool 1: (m) lateral view, (n) antenna II, (o) postabdomen and (p) valve. Scale bars 0.1 mm.
FIGURE 1 in Cryptic diversity and gene introgression of Moinidae (Crustacea: Cladocera) in Nigeria
FIGURE 1 Geographic locations of sampling for Moinidae in Southeast Nigeria. Solid black circles indicate locations where moinids were present, empty circles indicate locations where no moinids were detected. Large colored circles near solid black circles represent the distribution of COI lineages. For abbreviations of location names, refer to Table 1.
Fig. 2 in Daphnia Cucullata Sars, 1862 (Crustacea: Cladocera) Distribution And Location In Composition Of Zooplankton Cenosis In Lake Dridzis
Fig. 2. Redundancy analysis (RDA) ordination plot for zooplankton abundance from Lake Dridzis during the sampling period of May to September 2011. Abbreviations: ORP- Oxidation-reduction potential; NTU- Turbidity.
Fig. 1 in Daphnia Cucullata Sars, 1862 (Crustacea: Cladocera) Distribution And Location In Composition Of Zooplankton Cenosis In Lake Dridzis
Fig. 1. Redundancy analysis (RDA) ordination plot for zooplankton abundance from Lake Dridzis during the sampling period of May to September 2010. Abbreviations: ORP- Oxidation-reduction potential; NTU- Turbidity.
Figure 2 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 2. Number of cladoceran species from seven families in the state of Bahia, Brazil. The family Chydoridae was partitioned into Chydorinae and Aloninae sub-families.
Figure 1 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 1. Map of the current distribution of cladocerans throughout the drainage basins and freshwater ecoregions in Bahia State, Brazil. Previous species records are shown as black circles. New records/localities added by this study are shown as white circles, see Tabs. 1, 2. Red and blue colors represent each hydrographic basin within the specific ecoregion where cladocerans were recorded.
Figure 2 in Occurrence of Anthalona neotropica Sousa, Elmoor-Loureiro and Debastiani-Júnior, 2015 (Crustacea: Cladocera: Chydoridae) in Bahia State, Brazil
Figure 2. Anthalona neotropica Sousa, Elmoor-Loureiro and Debastiani-Júnior, 2015. A, Habitus, specimen from Jequitinhonha River. B, Habitus, specimen from Una River. C–E, Post-abdomen (arrow indicating the lateral fascicles). F, Labral keel and antenna. G, Spine on the first segment of endopod of antenna. H, First trunk limb, arrows showing the IDL setae. I, Head pores. mp: main pores, lp: lateral pore. Scale bars = 100 µm (A, B) or 10 µm (C–I).
Figure 3 in Cladocera (Crustacea, Branchiopoda) species of Bahia State, Brazil: a critical update on species descriptions, distributions, and new records
Figure 3. Rarefaction and extrapolation curve using the Hill number (q = 0 species richness) of the Cladocera fauna observed in Bahia State, Brazil (N = 17). Confidence interval of 95 % was obtained by bootstrap method and represented by the shaded area for the fitted curve.
Figure 1 in Occurrence of Anthalona neotropica Sousa, Elmoor-Loureiro and Debastiani-Júnior, 2015 (Crustacea: Cladocera: Chydoridae) in Bahia State, Brazil
Figure 1. Occurrence records of Anthalona neotropica Sousa, Elmoor-Loureiro and Debastiani-Júnior, 2015 in southern Bahia State.
Figs 2-4. Boxplots com mediana e in A variação da diversidade de microcrustáceos (Cladocera e Copepoda) a jusante de pequenos reservatórios é influenciada por táxons litorâneos
Figs 2-4. Boxplots com mediana e quartis dos atributos ecológicos que apresentaram diferença significativa no teste de Kruskal-Wallis entre os pontos de amostragem: riqueza (2), índice de diversidade de Shannon-Wienner (H´)(3) e abundância total (4). Em cinza os pontos localizados nos reservatórios.
Figs 5-8. Boxplots com mediana e in A variação da diversidade de microcrustáceos (Cladocera e Copepoda) a jusante de pequenos reservatórios é influenciada por táxons litorâneos
Figs 5-8. Boxplots com mediana e quartis dos valores de abundância dos táxons que apresentaram diferenças significativas no teste de Kruskal-Wallis entres os pontos de amostragem: Cladocera pelágicos (5), Cladocera limnéticos (6), náuplios (7) e copepoditos de Cyclopoida (8). Em cinza os pontos localizados nos reservatórios.
Fig. 9 in A variação da diversidade de microcrustáceos (Cladocera e Copepoda) a jusante de pequenos reservatórios é influenciada por táxons litorâneos
Fig. 9. Resultado da análise de cluster utilizando distância euclidiana para agrupar os pontos de amostragem quanto à abundância dos táxons.
Fig. 1 in A variação da diversidade de microcrustáceos (Cladocera e Copepoda) a jusante de pequenos reservatórios é influenciada por táxons litorâneos
Fig. 1. Localização da área de estudo no Estado de São Paulo, Brasil e da bacia hidrográfica estudada, com os reservatórios (Lago 1 e Lago 2) e os trechos a jusante de cada um deles, com três pontos de amostragem.
Fig. 4 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 4. Occurrences of the non-indigenous microcrustacean species in the investigated artificial lakes of north-eastern Hungary. Abbrev.: Eurytemora velox: +, Daphnia ambigua: ▲, Pleuroxus denticu-
Fig. 1 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 1. Species accumulation curves of the fish ponds for total microcrustaceans (a) and for cladocerans and copepods separately (b)
Fig. 3 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 3. Frequency of occurrence (incl. species occurring in at least 5 fish ponds). Abbrev.: Chy_sph – Chydorus sphaericus, Bos_lon – Bosmina longirostris, Cyc_vic – Cyclops vicinus, Dap_cuc – Daphnia cucullata, Euc_ser – Eucyclops serrulatus, Aca_tra – Acanthocyclops trajani, Eud_gra – Eudiaptomus gracilis, Mac_alb – Macrocyclops albidus, Ple_adu – Pleuroxus aduncus, Sim_vet – Simocephalus vetulus, Mac_lat – Macrothrix laticornis, Euc_spe – Eucyclops speratus, The_oit – Thermocyclops oithonoides, Nit_hib – Nitocra hibernica, Alo_rec – Alona rectangula, Sca_muc – Scaphole-
Fig. 2 in Allozyme-Based Genetic Variability Of The Daphnia Atkinsoni-Bolivari Species Complex (Cladocera: Daphniidae) In The Hungarian Great Plain
Fig. 2. UPGMAclusteringofNei'soriginalgeneticdistancesbetweenpopulationsof Daphniaatkinsoni and D. bolivari. Themorphological D. bolivari populationsaremarkedwith
Fig. 5 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species
Fig. 5. The relative frequencies of Eurytemora velox (white), Eudiaptomus gracilis (black) and all other microcrustacean species (grey) in those fish ponds where the invasive E. velox was present
Figure 1 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 1. Drawings of Upper Mesozoic Prochydoridae based on SEM photographs. A, Prochydorus rotundus from Khotont, reconstruction based on a series of specimens. B, antenna II of holotype, PIN 4307/2040. C, specimen PIN 4307/2031 from Khotont, antenna II. D, Archeoxus mirabilis from Khotont, reconstruction based on a series of specimens. E, antenna II of specimen PIN 4307/2018. F, 'Archeoxus' vetrosus from Khotont, antenna II of holotype PIN 4307/2027. G, Palaeorak scherbakovi gen. nov., sp. nov. from Khasurty, holotype 5026/178. H, reconstruction of general view based on series of specimens. I, postabdominal claw, 5026/177. J, antenna II, 5026/179. Scale bars: 1 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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OpenNeuro
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