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26 results for “Lecanicephalidea”
Fig. 3 in Adding one more to the list: A new species of Eniochobothrium (Cestoda: Lecanicephalidea) from the Oman cownose ray in South Africa
Fig. 3. Maximum likelihood phylogram based on partial sequences of the large subunit 28S rRNA gene. Nodal support is shown as posterior probability and bootstrap. GenBank accession number precedes species name. Branch length scale bar indicates the number of substitutions per site. (//) Branch length reduced to one time the scale bar; (///) branch length reduced to two times the scale bar. Squares represent Posterior Probability values while circles represent Bootstrap values.
Fig. 4 in Adding one more to the list: A new species of Eniochobothrium (Cestoda: Lecanicephalidea) from the Oman cownose ray in South Africa
Fig. 4. Maximum likelihood phylogram based on partial sequences of the mitochondrial cytochrome oxidase subunit I (mtCOI) gene. Nodal support is shown as posterior probability and bootstrap. GenBank accession number precedes species name. Branch length scale bar indicates the number of substitutions per site. (//) Branch length reduced to one time the scale bar. Squares represent Posterior Probability values while circles represent Bootstrap values.
Fig. 2 in Adding one more to the list: A new species of Eniochobothrium (Cestoda: Lecanicephalidea) from the Oman cownose ray in South Africa
Fig. 2. Scanning electron micrographs of an immature specimen of Eniochobothrium acostae n. sp. from the South-western Indian Ocean off Scottburgh and Richards Bay, KwaZulu-Natal Province, South Africa. A, entire strobila; B, scolex; C, genital pore; D, trough formed by non-reproductive proglottids of the anterior strobila.
Fig. 1 in Adding one more to the list: A new species of Eniochobothrium (Cestoda: Lecanicephalidea) from the Oman cownose ray in South Africa
Fig. 1. Line drawings of Eniochobothrium acostae n. sp. from the South-western Indian Ocean off Scottburgh and Richards Bay, KwaZulu-Natal Province, South Africa. A, outline of entire cestode; B, mature proglottid; C, early gravid proglottid; D, trough formed by non-reproductive proglottids of the anterior strobila; E, scolex; F, terminal genitalia; G, cocoon with eggs. Abbreviations: c (cirrus); cs (cirrus sac); ex (excretory canal); gp (genital pore); isv (internal seminal vesicle); ot (ootype); ov (ovary); t (testes); u (uterus); vd (vas deferens); vf (vitelline follicle).
Fig. 8 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 8. Light micrographs of Anteropora species. A, primarily glandular apical organ of A. joannae, new species, holotype (MZUM[P] 2013.7[H]); B, primarily muscular apical organ of A. pumilionis, new species, paratype (USNPC 106535); C, crosssection through proglottid of A. joannae, new species anterior to cirrus-sac, paratype (USNPC 106526); D, cross-section through proglottid of A. joannae, new species at level of ovary, paratype (USNPC 106526). (Abbreviations: ESV, external seminal vesicle; MG, Mehlis' gland; O, ovary; T, testis; U, uterus; VG, vagina; VT, vitelline follicle.)
Fig. 7 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 7. Scanning electron micrographs of Anteropora pumilionis, new species. A, whole worm; B, scolex (small letters indicate location of details in C–H); C, surface of raised rim of apical modification of scolex proper; D, surface of apical modification of scolex proper; E, distal bothridial surface; F, proximal bothridial surface; G, surface of scolex proper posterior to bothridia; H, surfaces at boundary between adjacent proglottids.
Fig. 5 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 5. Scanning electron micrographs of Anteropora patulobothridium, new species. A, scolex (small letters indicate location of details in E, F, H); B, scolex with scolex proper laterally extended; C, apical modification of scolex proper (small letters indicate location of details in D, G); D, surface of raised rim of apical modification of scolex proper; E, distal bothridial surface; F, proximal bothridial surface; G, surface of apical modification of scolex proper; H, surface of scolex proper posterior to bothridia; I, surface of posterior margin of proglottid.
Fig. 6 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 6. Line drawings of Anteropora pumilionis, new species. A, whole worm, holotype (MZUM[P] 2013.14[H]); B, scolex, holotype (MZUM[P] 2013.14[H]); C, terminal proglottid, paratype (USNPC 106534).
Fig. 4 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 4. Scanning electron micrographs of Anteropora glandapiculis, new species. A, whole worm; B, scolex (small letters indicate location of details in C–G); C, surface of apical modification of scolex proper; D, surface of scolex proper at base of apical modification; E, distal bothridial surface; F, proximal bothridial surface; G, surfaces at boundary between adjacent proglottids.
Fig. 3 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 3. Line drawings of Anteropora species. A–C, A. glandapiculis, new species. A, whole worm, paratype (USNPC 106524); B, scolex, paratype (USNPC 106522); C, terminal proglottid, holotype (MZUM[P] 2013.4[H]). D–F, A. patulobothridium, new species. D, whole worm, holotype (MZBCa 181); E, scolex, paratype (USNPC 106531); F, terminal proglottid, paratype (USNPC 106532).
Fig. 2 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 2. Scanning electron micrographs of Anteropora species. A–F, A. joannae, new species. A, scolex (small letters indicate location of details in B–F); B, surface of apical modification of scolex proper; C, surface of scolex proper at base of apical modification; D, distal bothridial surface; E, proximal bothridial surface; F, surface of posterior margin of proglottid. G–K, A. cuba, new species. G, scolex (small letters indicate location of details in H–K); H, surfaces of apical modification of scolex proper; I, distal bothridial surface; J, proximal bothridial surface; K, surface of posterior margin of proglottid.
Fig. 1 in Revision Of Anteropora (Cestoda: Lecanicephalidea) And Descriptions Of Five New Species From Stingrays (Myliobatiformes: Dasyatidae) In Borneo
Fig. 1. Line drawings of Anteropora species. A–C, A. joannae, new species. A, whole worm, holotype (MZUM[P] 2013.7[H]); B, scolex, paratype (USNPC 106528); C, terminal proglottid, paratype (USNPC 106528). D–F, A. cuba, new species. D, whole worm, holotype (MZUM[P] 2013.1[H]); E, scolex, paratype (USNPC 106521); F, subterminal proglottid, paratype (USNPC 106521).
FIGURE 3 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 3. Light micrographs of Stoibocephalum arafurense n. gen., n. sp. (A) Cross-section through mature proglottid anterior to genital pore (paratype, LRP 7945). (B) Cross-section through mature proglottid between cirrus sac and ovary (paratype, LRP 7943). (C) Cross-section through mature proglottid at level of ovarian bridge (paratype, LRP 7946); asterisks (*) indicate excretory vessels. (D) Cross-section through anterior region of strobila (paratype, QM G233995); asterisks (*) indicate excretory vessels. (E) Egg (paratype, QM G233992). Abbreviations: CS, cirrus sac; ESV, external seminal vesicle; O, ovary; OC, ovicapt; OD, oviduct; T, testis; VA, vagina; VF, vitelline follicle; U, uterus.
FIGURE 1 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 1. Line drawings of Stoibocephalum arafurense n. gen., n. sp. (A) Scolex (holotype, QM G233981). (B) Mature proglottid (paratype, USNPC 106064.00); arrowheads indicate locations at which cross-sections in Figs. 3A–C were taken; vitelline follicles above cirrus sac are drawn with dashed lines. (C) Whole worm (holotype, QM G233981); arrowhead indicates location at which cross-section in Fig. 3D was taken.
FIGURE 2 in Stoibocephalum n. gen. (Cestoda: Lecanicephalidea) from the sharkray, Rhina ancylostoma Bloch & Schneider (Elasmobranchii: Rhinopristiformes), from northern Australia
FIGURE 2. (A–M) Scanning electron micrographs and (N) light micrograph of histological section of Stoibocephalum arafurense n. gen., n. sp. (A) Scolex; small letters indicate location of detail in Figs. 2B–E. (B) Surface of scolex proper anterior to suckers covered with scolopate spinitriches and acicular to capilliform filitriches. (C) Scolex proper surface between suckers covered with capilliform filitriches. (D) Sucker surface covered with scolopate spinitriches and acicular to capilliform filitriches. (E) Strobilar surface covered with shorter capilliform filitriches and small coniform spinitriches (see inset) at posterior proglottid margin. (F) Mature proglottid with everted cirrus. Small letter indicates detail in Fig. 2I. (G) Close-up of base of cirrus. Small letter indicates detail in Fig. 2H. (H) Surface of base of cirrus covered with capilliform filitriches. (I) Close-up of proglottid dehiscence; white arrowhead indicates egg. (J) Frontally bisected scolex with retracted apical organ. White arrowheads indicate boundary between apical organ and apical modification of scolex proper (AMSP); black arrowheads indicate boundary between AMSP with acicular filitriches and AMSP with capilliform filitriches; and grey arrowheads indicate puckered rim of AMSP. Small white letters indicate detail in Figs. 2K–L. (K) Invaginated surface of AMSP covered with capilliform filitriches. (L) Surface of the AMSP flanking the apical organ covered with acicular filitriches. (M) Apical organ surface covered with acicular filitriches. (N) Longitudinal section of scolex in situ. White arrowheads indicate boundary between apical organ and AMSP; black arrowheads indicate boundary between AMSP with acicular filitriches and AMSP with capilliform filitriches; and grey arrowheads indicate protruded rim of aperture of AMSP (see arrowheads in Fig. 2J for comparison). Abbreviation: AO, apical organ.
FIGURE 7 in Two new American species of Aberrapex (Eucestoda: Lecanicephalidea: Aberrapecidae) from myliobatid stingrays (Batoidea: Myliobatidae)
FIGURE 7. Line drawings of Aberrapex catarinensis sp. nov. from Myliobatis goodei Garman. A—scolex (MZUSP 8046e, paratype); B—mature proglottid, dorsal view (MZUSP 8045, holotype); C—detail of ootype region, ventral view (MZUSP 8045, holotype). Abbreviations: Mg. Mehlis' gland; O. ovary; Oc. ovicapt; Od. oviduct; T. teste; V. vagina; Vd. vas deferens; Vit. vitelline follicle.
FIGURE 5 in Two new American species of Aberrapex (Eucestoda: Lecanicephalidea: Aberrapecidae) from myliobatid stingrays (Batoidea: Myliobatidae)
FIGURE 5. Light micrographs of cocoons of Aberrapex panamensis sp. nov. A—tangle of strand-like cocoons. B—part of a strand-like cocoon.
FIGURE 6 in Two new American species of Aberrapex (Eucestoda: Lecanicephalidea: Aberrapecidae) from myliobatid stingrays (Batoidea: Myliobatidae)
FIGURE 6. Micrographs of transversal histological sections of Aberrapex spp. A–B—Aberrapex panamensis sp. nov. A— section at level of cirrus sac; B—section at level of ovary. C–D—A. catarinensis sp. nov. C—section at level of cirrus sac; D—section at level of ovary. Abbreviations: Cs. cirrus sac; O. ovary; Od. oviduct; T. testes; V. vagina; Vd. vas deferens; Vit. vitelline follicle.
FIGURE 8 in Two new American species of Aberrapex (Eucestoda: Lecanicephalidea: Aberrapecidae) from myliobatid stingrays (Batoidea: Myliobatidae)
FIGURE 8. Scanning electron micrographs of Aberrapex catarinensis sp. nov. from Myliobatis goodei Garman. A—scolex and most anterior immature proglottids; uppercase italic letters indicate location of details shown in C–E; B—bothridiate acetabulum; C—surface of the apex of the scolex; D—distal acetabular surface; E—proximal acetabular surface; F—surface of a mature proglottid.
FIGURE 4 in Two new American species of Aberrapex (Eucestoda: Lecanicephalidea: Aberrapecidae) from myliobatid stingrays (Batoidea: Myliobatidae)
FIGURE 4. Light micrographs of proglottids of Aberrapex spp. A–B—Aberrapex panamensis sp. nov. A—terminal fully mature proglottids in which most testes are degenerated (MZUSP 8050b, paratype); B—detached gravid proglottid (MZUSP 8050q, paratype). C—Aberrapex catarinensis sp. nov., terminal fully mature proglottids in which most testes are degenerated (MZUSP 8046d, paratype). Abbreviation: Esv. external seminal vesicle.
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