| Literature DB >> 32357898 |
Nikol Kmentová1,2,3, Rodney A Bray4, Stephan Koblmüller5, Tom Artois6, Els Lea R De Keyzer7, Milan Gelnar8, Maarten P M Vanhove8,6,7,9, Simona Georgieva10.
Abstract
BACKGROUND: Lake Tanganyika is considered a biodiversity hotspot with exceptional species richness and level of endemism. Given the global importance of the lake in the field of evolutionary biology, the understudied status of its parasite fauna is surprising with a single digenean species reported to date. Although the most famous group within the lake's fish fauna are cichlids, the pelagic zone is occupied mainly by endemic species of clupeids (Actinopterygii: Clupeidae) and lates perches (Actinopterygii: Latidae, Lates Cuvier), which are an important commercial source for local fisheries. In this study, we focused on the lake's four lates perches and targeted their thus far unexplored endoparasitic digenean fauna.Entities:
Keywords: Grandifundilamena n. g.; Neocladocystis bemba n. sp.; Neocladocystis biliaris n. sp.; Species complex; Tanganyikatrema n. g.
Mesh:
Substances:
Year: 2020 PMID: 32357898 PMCID: PMC7195733 DOI: 10.1186/s13071-020-3913-x
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
List of digenean species described from members of the family Latidae
| Host | Digenean species | Family | Reference |
|---|---|---|---|
| Clinostomidae | [ | ||
| Cryptogonimidae | [ | ||
| [ | |||
| [ | |||
| Diplostomidae | [ | ||
| Echinostomatidae | [ | ||
| Acanthocolpidae | [ | ||
| Allocreadiidae | [ | ||
| Aporocotylidae | [ | ||
| [ | |||
| [ | |||
| Bucephalidae | [ | ||
| [ | |||
| Callodistomidae | [ | ||
| Cryptogonimidae | [ | ||
| [ | |||
| Fellodistomidae | [ | ||
| [ | |||
| Hemiuridae | [ | ||
| [ | |||
| Opecoelidae | [ | ||
| Psilostomidae | [ | ||
| Sanguinicolidae gen. sp. | Sanguinicolidae | [ | |
| Transversotrematidae | [ | ||
| [ | |||
| Acanthocolpidae | [ |
a Reported as Psilostomum chilkai Chatterji, 1956
b Reported as Complexobursa magna Bilqees, 1979
c Reported as Lecithochirium neopacificum Velasquez, 1962
Distribution and infection parameters of cryptogonimid species recovered in this study
| Host species | Locality | Coordinates | Locality sub-basina | Date of collection | No. of fish specimens examined | No. of fish specimens infectedb |
|---|---|---|---|---|---|---|
| Mpulungu | 8°46ʹS, 31°07ʹE | Southern | 12.iv.2018 | 7 | 2/0/1/2/1/1 | |
| Uvira | 3°22ʹS, 29°09ʹE | Northern | 12.viii.2016 | 2 | 0/1/0/0/0/0 | |
| Mpulungu | 8°46ʹS, 31°07ʹE | Southern | 16.iv.2018 | 11 | 0/0/0/0/0/0 | |
| Mutondwe Island | 8°42ʹS, 31°07ʹE | Southern | 16.iv.2018 | 8 | 3/0/0/2/0/0 | |
| Katukula | 8°43ʹS, 30°57ʹE | Southern | 14.iv.2018 | 5 | 3/0/0/3/0/0 | |
| Mpulungu | 8°46ʹS, 31°07ʹE | Southern | 13.iv.2018 | 14 | 8/0/0/3/2/0 | |
| Uvira | 3°22ʹS, 29°09ʹE | Northern | 12.viii.2016 | 7 | 0/0/0/0/0/0 | |
| Mpulungu | 8°46ʹS, 31°07ʹE | Southern | 6.iv.2018 | 3 | 0/0/0/0/0/0 | |
| Uvira | 3°22ʹS, 29°09ʹE | Northern | 12.viii.2016 | 28 | 0/0/0/0/0/0 |
a After Danley et al. [51]
b Infection parameters are provided in the following order: Neocladocystis bemba n. sp./Neocladocystis biliaris n. sp./Neocladocystis sp./Tanganyikatrema fusiforma n. sp./Tanganyikatrema sp. ‛elongataʼ/Grandifundilamena novemtestes n. sp
Fig. 1Map of Lake Tanganyika with the sampling locations of Lates spp. The map was created using SimpleMappr software v7.0.0. (http://www.simplemappr.net). Accessed 5 Mar 2019
GenBank accession numbers for sequences (28S rRNA gene and cox1 gene) for the digenean species generated in the present study
| Parasite species | Host species | Locality | GenBank ID | |
|---|---|---|---|---|
| Katukula (8°43ʹS, 30°57ʹE) | MN705808 | MN702809, MN702812, MN702814, MN702815 | ||
| Mpulungu (8°46ʹS, 31°07ʹE) | MN702813 | |||
| Mutondwe Island (8°42ʹS, 31°07ʹE) | MN702810, MN702811 | |||
| Uvira (4°20ʹS, 29°09ʹE) | MN705809 | |||
| Mutondwe Island (8°42ʹS, 31°07ʹE) | MN705810 | MN702816 | ||
| Mpulungu (8°46ʹS, 31°07ʹE) | MN705811 | MN702817 | ||
| Mpulungu (8°46ʹS, 31°07ʹE) | MN705812 | |||
Fig. 2Line drawings of paragenophores of Neocladocystis spp. aNeocladocystis bemba n. sp. from the pyloric caeca of Lates microlepis off Mutondwe Island, Lake Tanganyika. bNeocladocystis biliaris n. sp. from the liver of L. mariae, Uvira fish market, Lake Tanganyika. Scale-bars: 500 µm
Comparative morphometric data for the newly described species of Neocladocystis, Tanganyikatrema n. g. and Grandifundilamena novemtestes n. g.
| BL | 1067–1823 (1329)a | 255–1028 (597)j | 1940–3074 (2286)j | 632–1574 (990)j | 335–525 (456)m | 437–679 (558)n | 3458–4585 (3948)m |
| BW | 475–745 (609)a | 114–401 (273)j | 944–1201 (1000)j | 146–387 (249)j | 103–171 (133)m | 95–96 (95.5)n | 303–414 (362)m |
| OSL | 114–176 (141)b | 81–160 (99)j | 198–272 (225)g | 119–206 (157)j | 100–115 (108)m | 107–110 (108.5)n | 355–482 (415)m |
| OSW | 128–189 (154)b | 68–168 (108)j | 206–269 (231)g | 70–152 (115)i | 65–77 (73)m | 69–92 (80)m | 425–612 (510)m |
| VSL | 71–114 (92)c | 47–84 (57)j | 93–121 (109)m | 62–134 (105)i | 51–84 (64)m | 54–58 (56)n | 165–206 (187)m |
| VSW | 75–124 (98)d | 51–81 (57)j | 106–136 (121)m | 54–127 (107)i | 54–91 (68)m | 53–54 (53.5)n | 168–216 (189)m |
| FBL | 349–514 (422)c | 83–369 (207)g | 679–698 (689)n | 220–494 (306)i | 128–237 (189)m | 262–419 (304.5)n | 787–1063 (927)m |
| HBL | 719–1210 (874)c | 125–575 (333)g | 1140–1408 (1274)n | 320–765 (510)d | 156–253 (205)m | 202–209 (205.5)n | 2506–3316 (2883)m |
| PPH | 10–38 (18)j | not detectable | 15–20 (18)n | 20–122 (53)l | not detectable | 80–120 (100)n | 80–264 (170)m |
| PHL | 61–96 (70)e | 38–73 (54)g | 93–107 (98)l | 64–122 (87)c | 35o | 39–50 (45)n | 223–278 (247)m |
| PHW | 47–94 (60)e | 34–56 (46)l | 79–89 (86)l | 35–76 (52)c | 39o | 25–29 (27)n | 160–224 (189)m |
| OL | 5–38 (18) j | not detectable | 15–20 (18)l | 43–100 (74)m | not detectable | 60o | absent |
| IB-F | 159–271 (223)a | 70–132 (103)l | 313–364 (341)l | 146–412 (270)c | 148–222 (185)n | 270o | 632–820 (734)m |
| IB-VS | 201–249 (223)g | 50–95 (68)g | 313–346 (330)n | 0–82 (45)g | 0–13 (6.5)n | 0o | 121–265 (189)m |
| POSTCL | 89–250 (158)a | 26–72 (55)g | 116–303 (248)g | 18–59 (36)c | 12–60 (36)n | – | 53–101 (77)m |
| ATL | 181–326 (237)f | 100–206 (139)g | 287–430 (379)j | 82–183 (129)j | 38–66 (52)n | 53o | 81–160 (121)m |
| ATW | 135–255 (183)f | 78–113 (98)g | 278–359 (304)j | 75–214 (143)d | 56–66 (61) n | 47o | 99–176 (141)m |
| PTL | 167–394 (254)h | 95–197 (138)g | 348–450 (416)j | 99–171 (136)c | 37–65 (51)n | 5o | 120–160 (146)m |
| PTW | 135–306 (226)e | 67–128 (90)g | 248–416 (309)j | 88–187 (127)c | 56–71 (63.5)n | 58o | 95–157 (130)m |
| POSTL | 132–401 (205)h | 67–162 (110)g | 80–323 (201)g | 44–126 (85)c | 16–22 (19)n | 29o | 55–209 (128)m |
| OVL | 140–296 (176)c | 70–113 (92)g | 213–284 (242)m | 47–120 (83)i | 28–66 (46)m | – | 166–196 (181)m |
| OVW | 144–247 (185)i | 65–109 (81)g | 186–319 (241)l | 53–102 (73)i | 41–47 (43)m | – | 102–177 (140)m |
| ABE-OV | 510–720 (608)c | 243–296 (261)l | 1073–1868 (1344)m | 487–1124 (695)c | 209o | – | 1978–3355 (2676)m |
| VS-OV | 73–200 (145)j | 8–78 (28)g | 295o | 120–496 (257)i | 30–41 (35.5)n | – | 1026–2077 (1560)m |
| OV-AT | 65–220 (123)j | 30–80 (58)g | 113–173 (141)l | 0i | 0n | – | 100–355 (220)m |
| EL | 34–40 (37)e | not detectable | 33–38 (35,3)d | 27–39 (31)c | not detectable | 29o | 26–28 (27)m |
| EW | 12–19 (16)e | not detectable | 13–18 (15,9)d | 13–20 (16)c | not detectable | 15o | 10–11 (10.5)m |
| POSTUL | 176–478 (353)f | 120–300 (203)g | 457–683 (587)j | 171–397 (281)c | 79–140 (115.3)m | – | 636–828 (732)m |
| PREVIL | 228–455 (318)f | not detectable | 139–578 (447)j | 320–583 (396)d | 280o | – | 1879–2208 (2043)m |
| VITL | 714–1206 (944)k | not detectable | 1356–1648 (1518)l | 226–483 (359)d | 120o | – | 2100–2200 (2160)m |
| POSTVITL | 59–150 (96)k | not detectable | 80–213 (134)d | 198–603 (355)c | 125o | – | 166–310 (229)m |
| SRL | 79–220 (139)j | not detectable | 205–323 (264)j | 52–156 (86)l | 40–41 (40.5)n | – | 129–214 (172)m |
| SRW | 82–184 (136)d | not detectable | 119–251 (173)j | 42–98 (59)l | 18–33 (25.5)n | – | 156–224 (190)m |
| VSL/OSL | 1.2–2.1 (1.6)c | 1.5–1.9 (1.7)j | 1.7–1.8 (1.7)n | 1.2–1.9 (1.5)i | 1.4–2.2 (1.8)m | 1.7–2.0 (1.9)n | 2.15–2.3 (2.2)m |
| VSW/OSW | 1.5–1.8 (1.7)d | 1.3–2.1 (1.9)j | 1.5–1.9 (1.7)n | 0.8–1.4 (1.1)i | 0.8–1.3 (1.1)m | 1.5–1.7 (1.6)n | 2.5–2.9 (2.7)m |
| OSL/BL (%) | 8.1–12.7 (10.8)a | 12.7–32.5 (18.5)j | 8.8–11.0 (9.7)g | 10.2–22.2 (17.2)i | 19.7–32.8 (24.8)m | 15.8–22.9 (19.3)n | 10.2–10.5 (10.4)m |
| VSL/BL (%) | 5.4–8.0 (6.6)c | 6.9–18.4 (10.7)j | 4.6–6.2 (5.3)m | 6.0–19.1 (12.6)i | 11.4–16.0 (14.2)m | 7.9–13.3 (10.6)n | 12.3–13.3 (12.8)m |
| FBL/BL (%) | 26.0–35.4 (30.7)c | 28.7–38.5 (34.6)g | 31.2–35.0 (33.1)n | 23.0- 40.0 (31.3)i | 38.2–46.7 (41.0)m | 59.9–61.7 (60.8)n | 22.8–24.2 (23.2)m |
| HBL/BL (%) | 57.6–67.2 (62.7)c | 49.0–64.4 (54.4)g | 58.8–62.9 (60.8)n | 50.6–65.5 (57.7)d | 40.8–48.2 (45.1)m | 29.7–47.8 (38.8)n | 71.7–72.3 (72.1)m |
| PHL/BL (%) | 4.0–6.6 (5.3)a | 5.2–11.8 (8.5)g | 4.2–5.0 (4.6)l | 5.7–16.3 (9.5)c | 10.4o | 5.7o | 6.1–6.4 (6.2)m |
| IB-F/BL (%) | 12.1–21.0 (16.22)i | 22.1–25.1 (23.6)m | 14.2–18.2 (15.9)l | 11.3–42.8 (27.8)j | 43.7–44.2 (43.9)n | – | 17.9–18.3 (18.4)m |
| POSTCL/BL (%) | 8.3–15.6 (11.9)k | 5.0–14.2 (10.8)g | 6–12.7 (10.5)g | 2.2–7.9 (4.2)c | 3.6–11.4 (7.5)n | – | 1.5–2.2 (1.9)m |
| ATL/BL (%) | 15.2–23.2 (18.5)i | 18.2–22.9 (20.9)g | 14.9–21.3 (18.8)g | 9.6–14.1 (11.5)j | 11.3–13.0 (12.2)n | 7.8o | 2.3–3.5 (3.0)m |
| PTL/BL (%) | 15.0–28.0 (19.5)k | 19.2–24.4 (20.7)g | 17.5–22.3 (20.2)g | 9.9–14.6 (12.5)c | 14.0–16.7 (15.3)n | 8.5o | 3.0–4.6 (3.7)m |
| POSTL/BL (%) | 12.6–22.0 (16.2)a | 12.8–20.4 (16.7)g | 4.0–14.4 (9.2)g | 10.9–17.4 (13.5)c | 11.0–12.8 (11.9)n | 7.4o | 1.6–4.6 (3.2)m |
| ABE-OV/BL (%) | 39.0–54.9 (47.0)c | 40.3–49.5 (45.9)l | 48.5–60.8 (54.9)m | 57.1–71.4 (66.9)c | 62.4o | – | 57.2–73.2 (68.2)m |
| VS-OV/BL (%) | 6.3–14.5 (10.9)j | 1.6–7.6 (3.5)g | 15.2o | 19.0–31.5 (25.1)i | 8.1–9.0 (8.5)n | – | 29.7–45.3 (40.0)m |
| OV-AT/BL (%) | 5.3–19.2 (9.6)j | 9.1–16.2 (11.6)m | 5.0–7.9 (6.5)l | 0c | 0m | – | 2.9–7.7 (5.2)m |
| OVL/BL (%) | 10.7–25.9 (14.0)d | 11.0–16.2 (14.1)g | 9.2–11.9 (10.2)m | 9.9–14.6 (12.5)c | 14.0–16.7 (15.3)n | 8.5o | 4.3–4.8 (4.6)m |
| POSTUL/BL (%) | 20.6–36.7 (28.2)a | 24.3–31.0 (27.6)n | 22.2–31.0 (26.3)g | 23.5–34.6 (28.2)d | 23.6–26.7 (25.1)m | – | 18.1–18.4 (18.5)m |
| PREVITL/BL (%) | 16.8–28.8 (21.9)k | not detectable | 16.0–26.7 (22.3)g | 31.2–46.4 (38.0)d | 53.3o | – | 47.6–48.2 (51.1)m |
| VITL/BL (%) | 65.1–77.1 (70.3)k | not detectable | 65.8–74.9 (70.4)l | 29.9–55.3 (34.9)j | 22.9o | – | 48.4–53.2 (54.0)m |
| POSTVITL/BL (%) | 5.5–10.0 (7.3)i | not detectable | 3.2–11.0 (6.5)j | 23.6–39.8 (35.4)d | 23.8o | – | 4.8–6.8 (5.9)m |
| SRL/BL (%) | 7.4–15.5 (10.9)g | not detectable | 10.2–14.7 (12.8)g | 9.9–12.1 (11.0)n | not detectable | – | 2.8–5.4 (4.3)m |
| BW/BL (%) | 1.7–2.7 (2.2)a | 1.9–2.6 (2.2)j | 2.1–2.6 (2.3)g | 3.2–5.7 (4.0)i | 3.1–4.0 (3.4)m | 4.6–7.1 (5.0)n | 10.4–11.6 (11.1)m |
Notes:a (n = 11); b (n = 15); c (n = 8); d (n = 7); e (n = 14); f (n = 12); g (n = 5); h (n = 13); i (n = 9); j (n = 6); k (n = 10); l (n = 4); m (n = 3); n (n = 2); o (n = 1)
Fig. 3Line drawings of paragenophores of Tanganyikatrema spp. aTanganyikatrema fusiforma n. sp. from the intestine of Lates microlepis in Katukula Bay, Lake Tanganyika. bTanganyikatrema sp. ‛elongataʼ from the intestine of L. angustifrons off Mpulungu. Scale-bars: 500 µm
Fig. 4Line drawing of Grandifundilamena novemtestes n. sp. Specimen recovered in the intestine of Lates angustifrons, Mpulungu fish market, Lake Tanganyika. Scale-bar: 500 µm
Comparative data for morphological characters among the selected cryptogonimid genera based on [44] and this study
| Body shape | Irregular oval | Elongate, fusiform | Long, relatively narrow | Elongate-oval to distinctly elongate | Fusiform | Elongate with distinct constriction immediately posterior to oral sucker | Elongate-oval | Very elongate | Oval, enlongate-oval |
| BL/BW | 1.5–2.5 | 4–7 | 2–3.5 | 2–2.5 | 11–16 | 2–3.5 | |||
| OS | Almost round, opens subterminally | Infindibular or cup-shaped, massive, relatively large, longer than wide, squared-off posteriorly, opens terminally | Massive, broadly infundibular, opens terminally | Funnel-shaped, opens terminally | Nearly round, opens terminally | Funnel- or cup-shaped, opens almost terminally | Almost round, opens subterminally | Longer than wide, opens subterminally | Nearly round, opens almost terminally |
| Circumoral spines | Absent | Absent | Absent | Enlarged (rarely absent) | Enlarged | Absent | Absent | Absent | Absent |
| VS | Pre-equatorial, rounded, unspecialised, not obviously embedded in ventrogenital sac | Pre-equatorial, rounded, unspecialised, embedded in ventrogenital sac | Pre-equatorial, rounded, much smaller than oral sucker. | Pre-equatorial, rounded, unspecialised, not obviously embedded in ventrogenital sac | Pre-equatorial, rounded, unspecialised, embedded in ventrogenital sac | Pre-equatorial, rounded unspecialised, deeply embedded in ventrogenital sac | Pre-equatorial, rounded, unspecialised, not obviously embedded in ventrogenital sac | Pre-equatorial, rounded, unspecialised, not obviously embedded in ventrogenital sac | Pre-equatorial, rounded unspecialised, embedded in ventrogenital sac, usually smaller than VS |
| OSW/VSW | 1.5–2.1 | 0.8–1.7 | 1–2.5 | 1.5–2.5 | 2.0–2.5 | 1–2.5 | |||
| Tegument | Smooth or spined, spines reach to posterior extremity, largest in mid-region | Spined, spines can reach at about level of ovary | Spines not observed | Smooth or spined, spines reach to posterior extremity | Spined, spines reach to posterior extremity | Spines not observed | Spines not observed | Spines not observed | Spined |
| Forebody | 26–40% of BL | 30–62% of BL | 5–40% of BL | 20–25% of BL | 20–25% of BL | 20–33% of BL | |||
| Prepharynx | Short or absent | Variable in length | Broadly oval, larger than ventral sucker | Short | Very short | Very short | Very short | Short | Short |
| Oesophagus | Short or indistinct | Shorter than prepharynx | Absent | Short | Very short | Short | Very short | Long | Short |
| Intestinal bifurcation | In about mid-forebody, at level of ventral sucker | In posterior forebody just anterior to VS | In posterior forebody | Immediately anterior to VS | Immediately anterior to or dorsal to VS | In anterior forebody | In mid-forebody | In posterior forebody | In mid-forebody |
| Caeca | Blind, end at level of testes or post-testicular region | Blind, reach into post-testicular region | Blind, reach into post-testicular region | Opens | Blind, end close to posterior extremity | Blind, end posteriorly to testes | Blind, end close to posterior extremity | Blind, end close to posterior extremity | Blind, end close to posterior extremity |
| Testes | 2, symmetrical or oblique, lobed, contiguous or slightly separated | 2, entire, tandem, contiguous, in posterior third of hindbody; anterior testis oval, posterior testis sub-triangular | 9, transversely oval, entire, in tandem row, contiguous, in posterior third of hindbody | 2, entire, tandem, contiguous, in posterior third of hindbody | 2, symmetrical to slightly oblique, close to posterior extremity | 2, strongly oblique to tandem, in mid-hindbody | 9, irregular, in posterior hindbody | 2, mostly intercaecal, distinctly elongate, strongly oblique to slightly tandem | Usually 9, in two lateral groups, or one large group in hindbody |
| Seminal vesicle | Elongate-oval, naked | Tubulo-saccular, naked, long, convoluted | Naked, long, convoluted | Tubular | Tubulo-saccular | Tubulo-saccular, in forebody | Tubular | Tubular | Tubulo-saccular |
| Gonotyl | Absent | Absent | Absent | Absent | A spined muscular structure immediately anterior to VS | Absent | Absent | Absent | Absent |
| Genital pore | Median, immediately anterior to VS | Median, immediately anterior to VS | Median, immediately anterior to VS | Median, immediately anterior to VS | Median, immediately anterior to VS | Median, at mid-level of intestinal bifurcation and VS | Sinistral to VS | Median, immediately posterior to VS | Median, posterior and slightly sininstral to VS |
| Ovary | Dextral, pretesticular, regularly lobed | Oval, pre-testicular, overlapping anterior testis | Irregularly subtriangular, pre-testicular | Entire, pre-testicular; in posterior hindbody | Entire, anterior to testes in posterior hindbody | Entire, immediately anterosinistral to anterior testis | Deeply lobed, median, immediately anterior to testes | Deeply lobed, well separated form anterior testis, occupies full width of body in mid-hindbody | Deeply lobed, immediately anterior to testes |
| Uterus | Fills much of body from intestinal bifurcation to anterior testicular region, mostly intercaecal | Fills much of hindbody from anterior testis anteriorly, passes dorsally to VS, mostly intercaecal | Narrow, reaches between VS and anterior testis, passes dorsally to VS, mostly intercaecal | In hindbody between ovary and VS | In hindbody between ovary and VS | In hindbody, extends close to posterior extremity | In hindbody, between gonads and VS | In hindbody, between VS and anterior testis | In hindbody, extends close to posterior extremity |
| Vitelline follicles | In 2 lateral groups from just post intestinal bifurcation to close to posterior extremity, just overlapping caeca | In 2 lateral groups, reach from VS to level distinctly anterior to ovary, just overlapping caeca dorsally and ventrally | In 2 lateral groups, reach from about halfway between VS and ovary to level of posterior testis | In 2 lateral groups, in hindbody, from slightly posterior to VS to level of anterior testis or mid-body | In 2 lateral groups, in hindbody, from slightly anterior to ovary to the posterior extremity | In 2 restricted lateral groups between VS and gonads | In 2 lateral groups, confluent posteriorly, from level of pharynx to posterior extremity | In 2 bands, occupy full body width from midway between VS to ovary and ovary to anterior testis | In 2 lateral groups, may extend from forebody to level of testes |
| Excretory vesicle | Y-shaped, bifurcates lateral to ovary, narrow posteriorly, widens and reaches uterus | Not clear | Not clear | Y-shaped, bifurcated | Bifurcated | Bifurcated | Unknown | Bifurcated | Y-shaped, bifurcated |
| Excretory vesicle arms | May extend to level of pharynx, excretory pore terminal at posterior end of body | Not clear | Not traced beyond posterior testis | Reach level of pharynx | Reach pharynx | Reach pharynx | Unknown | Reach pharynx | Reach level of pharynx |
| Hosts | Freshwater fishes (Latidae: | Freshwater fishes (Latidae: | Freshwater fishes (Latidae: | Freshwater and marine fishes; reptiles | Freshwater fishes (Malapteruridae, Citharinidae and pelicans - probable pseudoparasitism) | Marine fishes (Albulidae, Sphyraenidae) | Freshwater fishes (Pimelodidae) | Marine fishes (Uranoscopidae) | Marine fishes |
| Site in host | Immature specimens in intestine; eggs-bearing specimens in pyloric caeca and gall-bladder | Intestine | Intestine | Intestine | Intestine | Intestine | Intestine | Intestine | Intestine |
| Distribution | Africa (Lake Tanganyika) | Africa (Lake Tanganyika) | Africa (Lake Tanganyika) | Cosmopolitan | Africa | North America (Florida, USA) | South America (Brazil) | Japan | Atlantic, Indian and Pacific Oceans |
| Type-species |
Abbreviations: BL, body length; BW, body width; OS, oral sucker; OSW, oral sucker width; VSW, ventral sucker width; VS, ventral sucker
Total pairwise differences among partial 28S rDNA sequences for the cryptogonimid species reported in this study
| Species | 1 | 2 | 3 | 4 | 5 | |
|---|---|---|---|---|---|---|
| 1 | – | 0.1 | 0.5 | 1.9 | 1.9 | |
| 2 | 1 | – | 0.6 | 2.0 | 2.0 | |
| 3 | 6 | 7 | – | 1.6 | 1.8 | |
| 4 | 24 | 25 | 20 | – | 0.3 | |
| 5 | 24 | 25 | 22 | 4 | – | |
Note: Uncorrected pairwise differences (below the diagonal) and mean divergence (uncorrected p-distance in % above the diagonal) among the newly discovered cryptogonimid species from Lates spp. in Lake Tanganyika
Fig. 5Bayesian inference phylogram based on partial 28S rDNA sequences (domains D1-D3) for the Cryptogonimidae (a) and Acanthostomum spp. and the newly sequenced cryptogonimid representatives from Lake Tanganyika (b). Both phylograms were inferred under the GTR+Г model of nucleotide substitution. Only posterior probability values > 0.95 are shown. The new cryptogonimid species described here are highlighted in bold. Freshwater and marine origin of the species is indicated by a green and a blue drop, respectively. Host family specification and place of origin of the ingroup taxa are indicated. The scale-bar represents the number of nucleotide substitutions per site. Abbreviations: GBR, Great Barrier Reef; SWA, South-West Asia