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20 results for “Tubastraea”
Data from: Life-history traits of Tubastraea coccinea: reproduction, development, and larval competence
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FIGURE 7 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 7. Stenothoe ogumi sp. nov. holotype (UFBA 3567) 3.1mm, Cavo Artemidi Shipwreck,15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bars: 0.5 mm (Gn1, Gn2, P3, P4); 0.3mm (palm).
FIGURE 3 in A new family of poecilostomatoid copepods (Strepidae fam. nov.) associated with the sun coral, Tubastraea coccinea Lesson, 1829 in Taiwan
FIGURE 3. Maximum likelihood tree of 75 species of Copepoda based on 18S rDNA sequences. Numbers below nodes represent support based on 1,000 bootstraps; only boot strap values higher than 70 are indicated on the nodes.
FIGURE 2 in A new family of poecilostomatoid copepods (Strepidae fam. nov.) associated with the sun coral, Tubastraea coccinea Lesson, 1829 in Taiwan
FIGURE 2. Strepus elongatus gen. et sp. nov. (female, A–B; male, C–E). A, maxilla; B, maxilliped; C, habitus, lateral; D, leg 1; E, leg 2. Scale bars: A–B, D–E = 0.02 mm; C = 0.5 mm.
FIGURE 1 in A new family of poecilostomatoid copepods (Strepidae fam. nov.) associated with the sun coral, Tubastraea coccinea Lesson, 1829 in Taiwan
FIGURE 1. Strepus elongatus gen. et sp. nov. (female). A, habitus, dorsal; B, habitus, lateral; C, urosome; D, caudal ramus; E, cephalosome, ventral; F, cephalosome, lateral; G, rostrum and antennule (dot indicating position of aesthetasc in male); H, antenna; I, mandible; J, maxillule. A1 = antennule, A2 = antenna, MD = mandible, MX1 = maxillule, MX2 = maxilla, MXPD = maxilliped. Scale bars: A–B = 0.5 mm; C = 0.2 mm; D–E = 0.04 mm; F = 0.1 mm; G–J = 0.02 mm.
Figure 4 in The competition of native sponges and the sun coral Tubastraea spp. does not influence the morphological pattern of a new Photis (Photidae: Senticaudata)
Figure 4. Photis oxalai sp. nov., holotype (UFBA 3668). Scale bars: P3, P4, U1, U2, U3, T = 0.3 mm; P5, P6, P7, Ep1–3 = 0.5 mm.
Figure 3 in The competition of native sponges and the sun coral Tubastraea spp. does not influence the morphological pattern of a new Photis (Photidae: Senticaudata)
Figure 3. Photis oxalai sp. nov. G1, G2 (holotype, UFBA 3668, male 3.0 mm); fG2 (allotype, UFBA 3669, female 3.6 mm); juvG2 (paratype, UFBA 3672, male 2.5 mm). Scale bars: 0.5 mm.
Figure 2 in The competition of native sponges and the sun coral Tubastraea spp. does not influence the morphological pattern of a new Photis (Photidae: Senticaudata)
Figure 2. Photis oxalai sp. nov., holotype (UFBA 3668). Scale bars: A1, A2, H = 0.5 mm; LL, UL, rMd, lMd, Mp, Mx1 and Mx2 = 0.1 mm.
FIGURE 3 in A new species of the sun coral genus Tubastraea (Scleractinia: Dendrophylliidae) from Hong Kong
FIGURE 3. Possible predators of Tubastraea megacorallita sp. nov. A: an individual of Phestilla melanobrachia feeding on T. coccinea; also shown are egg masses (yellow) of the nudibranch; B: an individual of Coralliophila costularis feeding on a colony of T. megacorallita sp. nov.; C: three individuals of Coralliophila costularis feeding on a colony of Tubastraea diaphana. D: an individual of Epidendrium sp. feeding on a colony of T. coccinea.
FIGURE 2 in A new species of the sun coral genus Tubastraea (Scleractinia: Dendrophylliidae) from Hong Kong
FIGURE 2. Phylogenetic trees of the concatenated COI/IGR/rDNA sequence dataset constructed using the Maximum Likelihood (left) and Bayesian Inference (right) method. Maximum Likelihood bootstrap values>50 and Bayesian Inference posterior probability values> 0.7 are shown in the nodes. Specimens used in this study are denoted by an asterisk.
FIGURE 1 in A new species of the sun coral genus Tubastraea (Scleractinia: Dendrophylliidae) from Hong Kong
FIGURE 1. Tubastraea megacorallita. sp. nov. A: A living specimen in the field; B: Skeleton of a specimen with tissues removed (TMBC030850); C: a corallite (TMBC030853); D: Fossa (TMBC030853); E: Costae (c) and Intercostal striae (i.s.) (TMBC030853). Scale bar: A–B: 1 cm; C: 5 mm; D–E: 1 mm.
FIGURE 5 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 5. Stenothoe ogumi sp. nov. holotype (UFBA 3567) 3.1mm, Cavo Artemidi Shipwreck,15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bar: 1.0 mm.
FIGURE 6 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 6. Stenothoe ogumi sp. nov. holotype (UFBA 3567) 3.1mm, Cavo Artemidi Shipwreck, 15 m depth, Todos os Santos Bay, Brazil (13°13'.31''S, 38°31'.55''W). Scale bars: 0.1 mm
FIGURE 1 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 1. Leucothoe oxumae sp. nov. holotype (UFBA 3564) 3.5 mm, Cavo Artemidi Shipwreck, 15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bar: 1.0 mm.
FIGURE 4 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 4. Leucothoe oxumae sp. nov. holotype (UFBA 3564) 3.5 mm, Cavo Artemidi Shipwreck, 15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bar: 0.5 mm.
FIGURE 8 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 8. Stenothoe ogumi sp. nov. holotype (UFBA 3567), 3.1mm, Cavo Artemidi Shipwreck, 15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bars: 0.5 mm.
FIGURE 3 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 3. Leucothoe oxumae sp. nov. holotype (UFBA 3564) 3.5 mm, Cavo Artemidi Shipwreck,15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bar: 0.5 mm.
FIGURE 2 in Two new Amphilochida (Amphipoda: Amphilochidea) associated with the bioinvasive Tubastraea coccinea fromTodos-os-Santos Bay, Bahia State, Brazil
FIGURE 2. Leucothoe oxumae sp. nov. holotype (UFBA 3564) 3.5 mm, Cavo Artemidi Shipwreck, 15 m depth, Todos os Santos Bay, Brazil (13°13'31''S, 38°31'55''W). Scale bars: 0.5 mm (H, A1, A2, Gn1, Gn2); 0.1 mm (Mp, l Md, rMd, UL, Mx2); 0.3 mm (palm).
Figure 1 in The competition of native sponges and the sun coral Tubastraea spp. does not influence the morphological pattern of a new Photis (Photidae: Senticaudata)
Figure 1. Photis oxalai sp. nov., holotype (UFBA 3668), 3.0 mm, Terminal Turístico Náutico da Bahia, Salvador City, Todos-os-Santos Bay, Bahia State, 12°58ʹ14.1"S 38°30ʹ55.4"W. Scale bar: 1 mm.
Figure 5 in The competition of native sponges and the sun coral Tubastraea spp. does not influence the morphological pattern of a new Photis (Photidae: Senticaudata)
Figure 5. Graph of canonical discriminant analysis comparing the different samples from sponges free from competition with Tubastraea spp. (1 – Tedania ignis, 2 – Dysidea etheria, 3 – Darwinella sp., 4 – Chlatria sp.), and sponges in close contact with or covering Tubastraea spp. (5 – Tubastraea sp. and Chlatria sp., 6 – Tubastraea sp. and Tedania ignis, 7 – Tubastraea sp. and Chlatria sp., 8 – Tubastraea sp. and Darwinella sp.)
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