Sycon bellum Chagas & Cavalcanti 2017, sp. nov.
Bibliographic record
Abstract
Sycon bellum sp. nov. Etymology. From Latin bellum = beautiful. The name is related to the charismatic morphology of the specimens. Diagnosis. Sycon without stalk and fringe of trichoxeas but with osculum surrounded by membrane. The surface is hispid, with small tufts of diactines. Distal region of the cones with diactines and triactines. Both tubar and subatrial regions formed by triactines. The atrial region has several triactines and few tetractines. Type material. UFBA 4527- POR [Holotype. Marina of the Nautical Tourist Terminal of Bahia (1258’20.8’’S, 3830’54.6’’W), Salvador, Bahia State, Brazil; collected by C. Chagas; 20/II/2016; 1m depth] and UFBA 4474 -POR (Paratype. Same locality; collected by F. Cavalcanti & E. Lanna; 06/VIII/2014; 1 m depth). Type locality. Salvador, Bahia State, Brazil. Description.: Colour is beige alive and after fixation (Figure 6A). The holotype measures 0.9 x 0.5 cm (height x width). It is tubular and has two apical oscula surrounded by membranes (Figure 6A). These oscular membranes have tetractines and numerous triactines, the latter with the unpaired actine larger than the paired ones and projected to the base of the sponge (Figure 6B). Hispid surface, but with small tufts of diactines (Figures 6A, C). The body wall is 0.15 cm thick. The aquiferous system is syconoid. The atrial cavity is wide but does not fill the whole specimen. The distal portion of the cones is composed of triactines and is commonly ornamented with tufts of diactines and trichoxeas (Figures 6C, D). In the tubar skeleton, there are triactines with the unpaired actine towards the distal region (Figure 6E). These spicules form an articulated skeleton, although rare scattered spicules are observed. The subatrial region is formed by few triactines with the unpaired actine choanosome-oriented. The atrial skeleton is formed mainly by triactines and few tetractines, so its surface is slightly hispid (Figure 6F). Spicules (Table 3; measurements obtained from two specimens): Trichoxeas: Present only in the distal region of the cones. Thin and variable in size. Diactines: Smooth and slightly curved, with blunt tips [118.1– 248.5 (60.9)–373.4/1.9– 5.6 (1.9)–11.4 µm; Figure 7A]. Triactines of the distal cones: Slightly conical, with blunt tips. Paired actines are curved down and can be slightly wavy. The unpaired actine is straight and short or is the same size as the paired ones [paired: 32.9– 67.6 (12.3)–91.5/2.5– 4.8 (1.0)–7.2 µm; unpaired: 30.4– 64.0 (17.9)–113.5/2.8– 5.0 (1.3)–9.3 µm; Figure 7B]. Tubar triactines: Slightly conical with blunt tips. Paired actines commonly forming an angle close to 180°. In many cases, one of the paired actines has a curvature while the other is straight and short. The unpaired actine is larger or the same size as the paired actines [paired: 51.5– 99.0 (30.2)–200.1/3.1– 5.5 (1.5)–13.0 µm; unpaired: 50.7– 105.0 (33.2)–222.7/3.3– 6.0 (1.6)–13.3 µm; Figure 7C]. Subatrial triactines: Rare, sagittal, cylindrical and with blunt tips. Paired actines have different sizes and are slightly curved at the base. The unpaired actine is larger than the paired ones [paired: 38.5– 61.3 (15.3)–101.7/2.9– 4.8 (1.0)–7.0 µm; unpaired: 52.5– 106.5 (23.5)–149.3/2.3– 5.8 (1.6)–8.9 µm; Figure 7D]. Atrial triactines: Cylindrical and sharply pointed. The unpaired actine is sometimes slightly smaller. The atrial triactines are larger than the other categories of triactines [paired: 87.7– 134.4 (22.1)–184.9/3.3– 6.1 (1.9)–10.4 µm; unpaired: 79.5– 142.7 (27.4)–198.4/3.8– 6.2 (1.8)–12.6 µm; Figure 7E]. Atrial tetractines: Less abundant than the atrial triactines. Cylindrical with sharp tips. Paired actines are slightly curved and the unpaired is straight. All basal actines are the same size. Apical actine is curved [paired: 88.9– 143.8 (25.1)–191.9/4.5– 6.9 (1.6)–10.0 µm; unpaired: 84.6– 137.9 (28.6)–193.4/5.4– 8.2 (1.5)–11.5 µm; apical: 8.0– 19.7 (8.3)–42.9/3.5– 6.0 (2.0)–11.9 µm; Figure 7F]. Ecology. The holotype was found on recruitment plates prepared with fragments of nautical cables. As they remained submerged for 2 months (at 1 meter depth), this is the maximum age of the individual. Other organisms, such as tunicates, bryozoans and macroalgae, also colonised the plates. The paratype was found on nautical cables used to dock the boats, and it is not possible to estimate its age. Remarks. Sycon is one of the richest genera within the class Calcarea. We compared our specimens with the 89 species known to Sycon and concluded that their skeletal composition, with many triactines and few tetractines that are exclusive of the atrial region, in addition to differences in the sizes of spicules, makes S. bellum sp. nov. a new species to science. In a straight comparison with species from the Atlantic Ocean (Table 4), the most similar species considering the skeletal composition are S. ampulla (Haeckel, 1870), S. brasiliense Borojevic, 1971, S. barbadense (Schuffner, 1877), S. elegans (Bowerbank, 1845), S. protectum Lambe, 1896, and S. raphanus Schmidt, 1862. Their type localities are Southern Caribbean, Brazil, Barbados, South Africa, Vancouver Islands (Canada), and the Adriatic Sea, respectively. Considering their distributions, S. elegans and S. raphanus had never been recorded along the Western Atlantic Ocean. Species Distal cones Tubar skeleton Subatrial skeleton Atrial skeleton (-) Not mentioned by the original description. The most obvious difference between S. ampulla and the new species described here is the external morphology. The former is tubular, composed of several tubes united by stalks of diactines, each tube with an apical osculum ornamented by a well-developed fringe of trichoxeas (Haeckel 1870; Burton 1963). In contrast, S. bellum sp. nov. is formed by a sole tube with two apical oscula ornamented by membranes, without a fringe of trichoxeas or stalk. An important difference between Sycon bellum sp. nov. and S. brasiliense is that in the latter species diactines are rare and do not form tufts in the distal cones (the sponge surface is smooth). Although not evident to the naked eye, in the new species described here, these tufts of diactines are present in most of the distal cones, as observed in Figure 6C. In relation to Sycon barbadense, S. elegans and S. protectum, the size of the apical actines of their atrial tetractines is larger than that of our new species (S. barbadense: 80/13 µm; S. elegans: 120–160/12–16 µm; S. protectum: 85/6µm; S. bellum sp. nov.: 8.0– 19.7 (8.3)–42.9/3.5– 6.0 (2.0)–11.9 µm). Additionally, S. elegans has triactines in the distal cones that are considerably thicker (paired: 50–90/25–35 µm, unpaired: 200–400/25–35 µm; S. bellum sp. nov.: paired: 32.9– 67.6 (12.3)–91.5/2.5– 4.8 (1.0)–7.2 µm; unpaired: 30.4– 64.0 (17.9)–113.5/2.8– 5.0 (1.3)–9.3 µm). Finally, S. protectum and S. raphanus have diactines that are up to 12 times larger than the mean value observed in S. bellum sp. nov. (S. protectum: 1000/19 µm; S. raphanus: 1000–3000/20–24 µm; S. bellum sp. nov.: 118.1– 248.5 (60.9)–373.4/ 1.9– 5.6 (1.9)–11.4 µm). Sycon avus sp. nov. Etymology. From Latin avus = grandfather. For Manoel Pedro das Chagas, the paternal grandfather of the first author of this work, who in life worked close to the studied area. Diagnosis. Sycon with hispid surface. Distal cones with triactines and tufts of smooth diactines. Tubar skeleton formed by triactines in which, commonly, one of the paired actines is short and curved while the other paired actine is straight. Subatrial skeleton formed by triactines and few tetractines. Atrial region formed by few triactines and several tetractines. A long projection of the body can be present below the fringe of trichoxeas, similar to a “long neck. Type material. UFBA 4526- POR [Holotype. Marina of the Nautical Tourist Terminal of Bahia (1258’20.8’’S, 3830’54.6’’W), Salvador, Bahia State, Brazil; collected by C. Chagas; 20/II/2016; 1 m depth] and UFBA 4656 - POR (Paratype. Same locality and sampling data). Type locality. Salvador, Bahia State, Brazil. Description. Colour is beige alive and after fixation. The holotype measures 0.7 x 0.5 cm (height x width) and is formed by a single tube, with apical osculum ornamented by a fringe of trichoxeas (Figure 8A). The base of this fringe has a ring of sagittal spicules, mostly tetractines, but triactines are also present (Figure 8B). Such spicules are positioned with the unpaired actine pointing to the base of the sponge body. It is worth mentioning that in some of the analysed specimens, two fringes of trichoxeas were observed: one of which was more closed (surrounding the osculum) and the other more open (external to the internal fringe). In addition, some specimens have a long oscular membrane similar to a “long neck”. In the holotype (UFBA 4526-POR), this membrane is short and contains sagittal spicules, mainly tetractines with the apical actines towards the osculum. The surface of the body is hispid with tufts of diactines. The body wall is 0.1 cm thick. The atrial cavity is large, and the aquiferous system is syconoid. The distal skeleton is composed of triactines and tufts of diactines piercing the cones (Figures 8C, D). In the tubar skeleton, there are triactines with the unpaired actines towards the distal region and forming an articulated skeleton (Figures 8D, E). There is also a monolayer of triactines outlining the choanocyte chambers. The subatrial region is mostly formed by triactines, with the unpaired actine oriented to the choanosome. Tetractines were observed in this region, but they are not abundant. The atrial skeleton is formed mainly by tetractines and by few triactines (Figure 8F). Spicules (Table 5; measurements obtained from two specimens): Trichoxeas: Present in the distal cones and at the oscular fringe. Thin and variable in size. Diactines: Fusiform, sharply pointed with smooth surface. Several diactines are broken, possibly due to their large size [321.1– 807.9 (260.4)–1413.0/8.7–
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How this classification was reachedexpand
Full frame machine prediction
Teacher imitationNot calibrated prevalence, not ground truth. Human validation pending. The Gemma side is a direct model label for every work in the frame, read from the title-only record. The Codex side is a classifier learned from the 10,348 direct Codex labels and calibrated to design-weighted sample rates; fields without enough sample support carry no Codex call. Candidate is the union of the two sides; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels.
Distilled classifier scores by category (both heads)
| Category | Codex | Gemma |
|---|---|---|
| Metaresearch | 0.000 | 0.001 |
| Meta-epidemiology (narrow) | 0.002 | 0.000 |
| Meta-epidemiology (broad) | 0.001 | 0.000 |
| Bibliometrics | 0.002 | 0.002 |
| Science and technology studies | 0.003 | 0.001 |
| Scholarly communication | 0.001 | 0.003 |
| Open science | 0.001 | 0.001 |
| Research integrity | 0.002 | 0.001 |
| Insufficient payload (model declined to judge) | 0.011 | 0.007 |
Machine scores (provisional)
The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.
Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.
score_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from itClassification
machine, unvalidatedMachine predicted; a candidate call from one source (direct Gemma or distilled Codex), not a consensus.
How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".