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124 results for “Monacha”

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zenodo36/100

Map 6 in Genus Monacha FITZINGER 1833 in Bulgaria (Gastropoda, Pulmonata, Hygromiidae)

Map 6. Distribution of Monacha (Monacha) solidior (Mousson 1863) (UTM-grid, 10 km-squares).

opencc-by-4.0Jul 2008View details →
zenodo36/100

Map 3 in Genus Monacha FITZINGER 1833 in Bulgaria (Gastropoda, Pulmonata, Hygromiidae)

Map 3. Distribution of Monacha (Monacha) claustralis (MENKE 1828) (UTM-grid, 10 kmsquares).

opencc-by-4.0Jul 2008View details →
zenodo36/100

Map 4 in Genus Monacha FITZINGER 1833 in Bulgaria (Gastropoda, Pulmonata, Hygromiidae)

Map 4. Distribution of Monacha (Monacha) ocellata (ROTH 1839) (UTM-grid, 10 km-squares).

opencc-by-4.0Jul 2008View details →
zenodo32/100

FIG. 18 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIG. 18. Distribution of Monacha (Monacha) cartusiana (O. F. MuÈller) y; Monacha (Metatheba) perfrequens (Hesse) _ (UTM-grid, 10 km squares).

opennotspecifiedDec 2000View details →
zenodo32/100

FIG. 19 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIG. 19. Distribution of Monacha (Metatheba) ciscaucasica, sp. n. +; Monacha (Metatheba) subcarthusiana (Lindholm) E (UTM-grid, 10 km squares).

opennotspecifiedDec 2000View details →
zenodo32/100

FIG. 17 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIG. 17. Distribution of Monacha (Paratheba) claussi, sp. n. +; Monacha (Paratheba) kuznetsovi, sp. n. _; Monacha (Paratheba) roseni (Hesse) E (UTM-grid, 10 km squares).

opennotspecifiedDec 2000View details →
zenodo32/100

FIGS 14 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIGS 14± 16. Monacha spp., genitalia: (14) Monacha (Metatheba) ciscaucasica, sp. n., Russia: Pyatigorsk, Mashuk Gora (ZMH 2770); (15) Monacha (Metatheba) perfrequens (Hesse), Georgia: Pitsunda (ZMH 2772); (16) Monacha (Metatheba) subcarthusiana (Lindholm), Georgia: Mikelrypsh (CLA). Scale bar 5 1 mm.

opennotspecifiedDec 2000View details →
zenodo32/100

FIGS 6 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIGS 6± 9. Monacha spp., shells: (6) Monacha (Metatheba) perfrequens (Hesse), Georgia: Kutaisi (lectotype SMF 6572); (7) Monacha (Metatheba) samsunensis (L. PfeiOEer), Kordsul (lectotype of T. scrobiculosa ZIRAN); (8) Monacha (Metatheba) samsunensis (L. PfeiOEer), Kordsul (lectotype of T. scrobiculosa var. perforata ZIRAN); (9) Monacha (Metatheba) subcarthusiana (Lindholm), Russia: Sochi (lectotype ZIRAN). Scale bar 5 5 mm.

opennotspecifiedDec 2000View details →
zenodo32/100

FIGS 10 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIGS 10± 13. Monacha spp., genitalia: (10) Monacha (Paratheba) claussi, sp. n., Russia: between Monastyrka and Kepsh (ZMH 2766); (11) Monacha (Paratheba) kuznetsovi, sp. n., Russia: SW slope of the Markotkh Gora NE of Gelendzhik (holotype ZMH 2767); (12) Monacha (Paratheba) roseni (Hesse), Georgia: between Shroma and Akhalsheni (CLA); (13) Monacha (Monacha) cartusiana (O. F. MuÈller), Russia: Tuapse (ZIRAN). Scale bar 5 1 mm

opennotspecifiedDec 2000View details →
zenodo32/100

FIGS 1 in genus Monacha in the Western Caucasus Gastropoda: Hygromiidae)

FIGS 1±5. Monacha spp., shells: (1) Monacha (Paratheba) claussi, sp. n., Russia: between Monastyrka and Kepsh (holotype ZMH 2765); (2) Monacha (Paratheba) kuznetsovi, sp. n., Russia: SW slope of the Markotkh Gora NE of Gelendzhik (holotype ZMH 2767); (3) Monacha (Paratheba) roseni (Hesse), Russia: Suvorovskaya (lectotype SMF 6606a); (4) Monacha (Monacha) cartusiana (O. F. MuÈller), Russia: Tuapse (ZIRAN); (5) Monacha (Metatheba) ciscaucasica, sp. n., Russia: Pyatigorsk, Mashuk Gora (holotype ZMH 2771). Scale bar 5 5 mm.

opennotspecifiedDec 2000View details →
zenodo32/100

Supplementary material 7 from: Pieńkowska JR, Manganelli G, Proćków M, Barbato D, Sosnowska K, Giusti F, Lesicki A (2024) Next step in Monacha cantiana (Montagu, 1803) phylogeography: northern French and Dutch populations (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 1198: 55-86. https://doi.org/10.3897/zookeys.1198.119738

Concatenated sequences of COI + 16SrDNA long + H3 + [(5.8SrDNA)+ITS2+(28SrDNA)] used in NJ/ML-MEGA7/ML-IQ Tree/RAxML/BI analysis (Fig. 11)

opencc-zeroApr 2024View details →
zenodo32/100

Supplementary material 6 from: Pieńkowska JR, Manganelli G, Proćków M, Barbato D, Sosnowska K, Giusti F, Lesicki A (2024) Next step in Monacha cantiana (Montagu, 1803) phylogeography: northern French and Dutch populations (Eupulmonata, Stylommatophora, Hygromiidae). ZooKeys 1198: 55-86. https://doi.org/10.3897/zookeys.1198.119738

Concatenated sequences of H3 + [(5.8SrDNA)+ITS2+(28SrDNA)] used in NJ/ML-MEGA7/IQ Tree/RAxML/BI analysis (Fig. 10)

opencc-zeroApr 2024View details →
zenodo32/100

Figs. 1–9. Cyclocephala monacha. 1 in Description of the Female ofCyclocephala monachaRatcliffe, 2008 (Coleoptera: Scarabaeidae: Dynastinae: Cyclocephalini), with a Checklist ofCyclocephalaDejean Species Occurring in Colombia

Figs. 1–9. Cyclocephala monacha. 1) Male; 2) Female; 3) Female protarsus; 4) Male protarsus; 5) Female epipleuron; 6) Male epipleuron; 7) Genital plates of female (scale bar = 0.25 mm); 8) Parameres, caudal view; 9) Parameres, lateral view.

opennotspecifiedSep 2016View details →
zenodo28/100

Figures 32- 33 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figures 32- 33 Principal component analysis (PCA) and Redundancy analysis (RDA) with species or molecular lineage constraint applied to the original shell matrix (32) and shape-related Z-matrix (33).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figures 23-31 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figures 23-31 Shell variability in Monacha pantanellii from Via Salaria, Poggio San Lorenzo [Lor] (FGC 41551) (23–25), Valle dell'Aniene, Roccagiovine [Ani] (FGC 42974) (26–29) and Carsoli [Car] (FGC 41651(30, 31).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figure 34 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figure 34 Box plots for shell characters of the nine Monacha species or molecular lineages investigated. The lower and upper limits of the rectangular boxes indicate the 25th to 75th percentile range, and the horizontal line within the boxes is the median (50th percentile).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figure 4 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figure 4 Bayesian 50% majority-rule consensus tree of the concatenated data set of COI and 16S rDNA haplotypes, and ITS2 and H3 common sequences (see Table 4). Sequences of M. pantanellii were compared with appropriate sequences of M. cantiana s. l. and M. parumcincta obtained from GenBank (Tables 2, 4). Posterior probabilities (left) and bootstrap support above 50% from ML analysis (right) are indicated next to the branches. Bootstrap analysis was run with 1000 replicates (Felsenstein 1985). The tree was rooted with M. cartusiana concatenated sequences obtained from GenBank (Table 2).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figures 15-22 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figures 15-22 Shell variability in Monacha pantanellii from Lago del Turano [Tur2] (FGC 41654) (15–17), Via Salaria, Ornaro Alto [Alt] (FGC 41553) (18–20) and Vallonina [Val] (FGC 25345) (21, 22).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figures 5-14 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figures 5-14 Shell variability in Monacha pantanellii from Monte Fionchi, summit [Fio1] (FGC 8140) (5, 6), Monte Fionchi, Torrecola [Fio2] (FGC 38944) (7), road to Montenero Sabino [Sab] (FGC 41552) (8–10) and Turania [Tur1] (FGC 42971) (11–14).

opencc-by-4.0Nov 2020View details →
zenodo28/100

Figure 3 from: Pieńkowska JR, Manganelli G, Giusti F, Barbato D, Kosicka E, Hallgass A, Lesicki A (2020) Redescription of Monacha pantanellii (De Stefani, 1879), a species endemic to the central Apennines, Italy (Gastropoda, Eupulmonata, Hygromiidae) by an integrative molecular and morphological approach. ZooKeys 988: 17-61. https://doi.org/10.3897/zookeys.988.56397

Figure 3 Maximum Likelihood (ML) tree of concatenated ITS2 and H3 common sequences of Monacha pantanellii (see Table 4). New ITS2 and H3 sequences of M. pantanellii (Table 1) were compared with ITS2 and H3 sequences of M. cantiana s. l. and M. parumcincta obtained from GenBank (Tables 2, 4). Numbers next to branches indicate bootstrap support above 50% calculated on 1000 replicates (Felsenstein 1985). The tree was rooted with M. cartusiana concatenated sequences obtained from GenBank (Table 2).

opencc-by-4.0Nov 2020View details →

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