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1,692 results for “Caenogastropoda”

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Figure 5 in A case of biodiversity overestimation in the Balkan Belgrandiella A. J. Wagner, 1927 (Caenogastropoda: Hydrobiidae): molecular divergence not paralleled by high morphological variation

Figure 5. Penes of Belgrandiella: (a) Belgrandiella cf. fontinalis, Babja luknja (molecular clade C); (b–d) Belgrandiella robusta, Obrh, type locality (molecular clade A). Scale bar represents 0.5 mm.

opennotspecifiedFeb 2018View details →
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Figure 7. The maximum-likelihood phylogram for H3 in A case of biodiversity overestimation in the Balkan Belgrandiella A. J. Wagner, 1927 (Caenogastropoda: Hydrobiidae): molecular divergence not paralleled by high morphological variation

Figure 7. The maximum-likelihood phylogram for H3 haplotypes. Bootstrap support and Bayesian posterior probabilities are shown.

opennotspecifiedFeb 2018View details →
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Figure 4 in A case of biodiversity overestimation in the Balkan Belgrandiella A. J. Wagner, 1927 (Caenogastropoda: Hydrobiidae): molecular divergence not paralleled by high morphological variation

Figure 4. Renal and pallial section of female reproductive organs of Belgrandiella: (a) Belgrandiella fontinalis, Babja luknja (molecular clade C); (b) Belgrandiella robusta, Obrh, type locality (molecular clade A) (bc, bursa copulatrix; cbc, duct of bursa copulatrix; ga, albuminoid gland; gn, nidamental gland; gp, gonoporus; ov, oviduct; ovl, loop of oviduct; rec, rectum; rs, receptaculum seminis). Scale bar represents 1 mm.

opennotspecifiedFeb 2018View details →
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Figure 5 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe

Figure 5. Maximum likelihood tree for the COI mitochondrial gene, based on the sequences of two Heleobia haplotypes (HI and H2) from Crete and other European (available in GenBank) Heleobia species. The bar indicates 0.005 substitutions per site. For details see Table 1.

opennotspecifiedAug 2014View details →
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Figure 2 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe

Figure 2. Shells of Heleobia maltzani (Westerlund, 1886): (A-G) Almiros of Gheorghioupoulis; (H-O) Almiros of Iraklion; (P-X) Almiros of Aghios Nikolaos. Scale bar = 1 mm.

opennotspecifiedAug 2014View details →
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Figure 4 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe

Figure 4. Renal and pallial section of female reproductive organ of Helobia maltzani from Crete. bc – bursa copulatrix, cbc – duct of bursa copulatrix, ga – albuminoid gland, gn – nidamental (capsule) gland, gp1–gonoporus terminating oviduct, gp2–gonoporus terminating spermal (copulatory) duct, ovs – spiral of (renal) oviduct, pmc – posterior border of mantle (pallial cavity), rs – receptaculum seminis, sd – spermathecal (copulatory) duct.

opennotspecifiedAug 2014View details →
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Figure 1 in Heleobia maltzani (Westerlund, 1886) (Caenogastropoda: Truncatelloidea: Cochliopidae) from Crete and species-level diversity of Heleobia Stimpson, 1865 in Europe

Figure 1. Map of the sampling sites of Heleobia: (A) study sites: K03 – Almiros Gheorghioupoulis; K05 – Almiros of Iraklion; K06 – Almiros of Aghios Nicolaos. The haplotypes (H1 and H2) for the COI mitochondrial gene are also presented, with their frequencies at each site. (B) Sites for reference sequences (for details see Table 1). Red dots correspond to clade A1 and A2.

opennotspecifiedAug 2014View details →
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Figure 26. Bayesian 50 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 26. Bayesian 50% majority rule consensus tree inferred employing cytochrome c oxidase subunit I (COI) mitochondrial gene partial sequence. The numbers above branches represent Bayesian posterior probabilities. Drawings of synapomorphies are referred to: (1) Shell shape, (2) Penis shape, (3) Seminal receptacle and pigmentation on renal oviduct, (4) Bursa copulatrix shape, (5) Lateral teeth of the radula, (6) Length of gastric caecum, (7) Length of supraoesophageal connective. (∗∗) and (∗∗∗) symbolize two and three specimens with identical haplotype respectively. Branch lengths calculated as the mean branch length of all trees in the posterior distribution in which this branch is present. Scale bar: number of estimated changes per site.

opennotspecifiedJan 2012View details →
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Figure 25 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 25. Plot of discriminant function analysis scores on the two canonical axes recorded for shell measurements made in seven Pseudamnicola Corrosella species.

opennotspecifiedJan 2012View details →
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Figure 23 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 23. Anatomy of Pseudamnicola (C.) andalusica sp. nov. from type locality (MNCN 15.05/53714). (A, B) Partial nervous system; (C) ctenidium and osphradium; (D) head of a male and penis; (E) prostate gland; (F) stomach; (G) female genitalia; (H) bursa copulatrix and seminal receptacle.

opennotspecifiedJan 2012View details →
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Figure 21 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 21. Shells of Pseudamnicola (C.) andalusica sp. nov. (A, C–G) Shells from La Salud spring in Albanchez de Mágina, Jaén (type locality); (B) Eduardo spring, Alcaucín, Málaga (MNCN 15.05/49425); (A) holotype (MNCN 15.05/53713a); (D–G) paratypes (MNCN 15.05/53713b), protoconch and detail of its microsculpture.

opennotspecifiedJan 2012View details →
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Figure 22 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 22. Operculum and radula of Pseudamnicola (C.) andalusica sp. nov. from La Salud spring in Albanchez de Mágina, Jaén (type locality, MNCN 15.05/53713b). (A) Internal side of the operculum; (B) external side of the operculum; (C) radula; (D) rows of teeth of the radula; (E) central teeth; (F) detail of an outer marginal tooth.

opennotspecifiedJan 2012View details →
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Figure 20 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 20. Anatomy of Pseudamnicola (C.) iruritai sp. nov. from type locality (MNCN 15.05/53710). (A, B) Partial nervous system; (C) ctenidium and osphradium; (D) head of a male and penis; (E) prostate gland; (F) stomach; (G) female genitalia; (H) bursa copulatrix and seminal receptacle.

opennotspecifiedJan 2012View details →
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Figure 19 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 19. Operculum and radula of Pseudamnicola (C.) iruritai sp. nov. from Don Pedro spring in Loja, Granada (type locality, MNCN 15.05/53710). (A) Internal side of the operculum; (B) external side of the operculum; (C) radula; (D) rows of teeth of the radula; (E) central teeth; (F) detail of outer marginal teeth.

opennotspecifiedJan 2012View details →
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Figure 18 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 18. Shells of Pseudamnicola (C.) iruritai sp. nov. (A–G) Shells from Don Pedro spring in Loja, Granada (type locality, MNCN 15.05/53710); (B) holotype (MNCN 15.05/53708a); (E–G) protoconch very eroded.

opennotspecifiedJan 2012View details →
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Figure 16 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 16. Operculum and radula of Pseudamnicola (C.) marisolae sp. nov. from Pilar del Mono spring in Dúrcal, Granada (type locality, MNCN 15.05/49417b). (A) Internal side of the operculum; (B) external side of the operculum; (C) radula; (D) rows of teeth of the radula; (E) central teeth; (F) detail of an outer marginal tooth.

opennotspecifiedJan 2012View details →
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Figure 15 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 15. Shells of Pseudamnicola (C.) marisolae sp. nov. (A, D–G) Shells from Pilar del Mono spring, Dúrcal, Granada (type locality); (B) shell from Fuente Grande, Alfácar, Granada (MNCN 15.05/49424); (C) Palmones spring, Padul, Granada (MNCN 15.05/49422). (A) Holotype (MNCN 15.05/49417a); (E–G) paratypes (MNCN 15.05/49417b) protoconch and detail of the microsculpture of the protoconch.

opennotspecifiedJan 2012View details →
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Figure 14 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 14. Anatomy of Pseudamnicola (C.) bareai sp. nov. from type locality (MNCN 15.05/49190b). (A, B) Partial nervous system; (C) ctenidium and osphradium; (D) head of a male and penis; (E) prostate gland; (F) stomach; (G) female genitalia; (H) bursa copulatrix and seminal receptacle.

opennotspecifiedJan 2012View details →
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Figure 13 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 13. Operculum and radula of Pseudamnicola (C.) bareai sp. nov. from Spring at Ermita de las Santas, Collados de la Sagra, Granada (type locality, MNCN 15.05/49190b). (A) Internal side of the operculum; (B) external side of the operculum; (C) radula; (D) rows of teeth of the radula; (E) central tooth; (F) outer marginal teeth.

opennotspecifiedJan 2012View details →
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Figure 12 in Underestimated diversity of hydrobiid snails. The case of Pseudamnicola (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae)

Figure 12. Shells of Pseudamnicola (C.) bareai sp. nov. (A, B, D–G) Shells from Spring in Ermita de las Santas, Collados de la Sagra, Granada (type locality); (C) shell from Agüerillo, Castril, Granada (MNCN 15.05/49195). (A, D) Holotype (MNCN 15.05/49190a); (E–G) paratypes (MNCN 15.05/49190b), protoconch and detail of its microsculpture.

opennotspecifiedJan 2012View details →

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