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37 results for “Anadara”
Figure 1. Collection localities, 1 in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 1. Collection localities, 1-Bokhali, 2-Sagar Island, 3-Junput, 4-Jalda (Tajpur), 5-Digha, 6-Udaypur & Talsari, 7-Chandipur, 8-Paradip, 9-Chandrabhaga, 10-Puri, 11-Chilka New Mouth, 12-Gopalpur, 13-Vishakhapatnam, 14-Kakinada, 15-Pulicat lake, 16-Chennai, 17-Rameswaram, 18-Tuticorin.
Figure 5. a-b in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 5. a-b,Mosambicarca erythraneonensis (Jonas in Philippi, 1851), a-exterior of left valve, b- interior of left valve, c-d, Tegillarca granosa (Linnaeus, 1758); c- exterior of right valve, d- internal view of right valve; e-f, T. nodifera (Martens, 1860); e-exterior of left valve, f- interior of left valve; g-h, T. rhombea (Born, 1778); g-exterior of left valve, h-interior of left valve.
Figure 4. a-g,A in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 4. a-g,A. troscheli (Dunker, 1882); a-b, interior right & left valve, c- exterior right valve, d- umbo, e- anterior, f- posterior & g- ventral view of shell.
Figure 2. a-b in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 2. a-b,Anadara antiquata (Linnaeus, 1758); a- exterior of right valve, b- interior of right valve; c-e, A. consociata (E.A. Smith, 1885), c- exterior of left valve, d- interior of left valve & e- dorsal view of umbo; f-g, A.eherenbergi (Dunker, 1868), f- exterior of left valve, g- interior of left valve.
Figure 3. a-b,A in First report of two ark shells, Anadara consociata (E.A. Smith, 1885) and A. troscheli (Dunker, 1882) (Arcidae: Anadarinae) from Indian waters with notes on morpho-taxonomy of some related species from east coast of India
Figure 3. a-b,A. ferriginea (Reeve, 1844), a- exterior of left valve, b- exterior of right valve; c-e, A. inaequivalvis (Bruguière, 1789); c-exterior of left valve, d- exterior of left valve & left valve overlapping the right valve along postero-ventral region, e- umbo; f-g, A. pilula (Reeve, 1843); f- exterior of right valve, g- interior of right valve.
Fig. 1 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 1. Localities in the Black Sea and the Sea of Azov where the samples were collected: 1 — Cordon "Morskoj", the Black Sea Biosphere Reserve (BSBR), Gola Prystan District, Kherson Region, Ukraine (46°07´54˝ N, 32°13´39˝ E, 2011 and 2012, coll. V. V. Anistratenko and O. Yu. Anistratenko); 2 — Fedotova Spit in the vicinity of Kirillovka settlement, Akimovka District, Zaporizhzhya Region, Ukraine (46°19´40˝ N, 35°20´03˝ E, 2005, 2006, 2012, coll. V. V. Anistratenko, O. Yu. Anistratenko and I. A. Khaliman); 3 — Yurkino settlement, Lenino District, Crimea, Ukraine (45°25´24˝ N, 36°33´15˝ E, October 12, 2003, coll. V. V. Anistratenko and O. Yu. Anistratenko); 4 — Pichory village, Galy District, Abkhazia (42°26´57˝ N, 41°32´30˝ E, June 22, 1989, coll. V. V. Anistratenko); 5 — Chakvy settlement, Adzharia (41°44´05˝ N, 41°43´57˝ E, June 21, 1989, coll. V. V. Anistratenko).
Fig. 4. A in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 4. A ratio of basic types of the shell shape in A. inaequivalvis from the Black Sea and the Sea of Azov. Enumerated forms correspond to those in the text discussed; the first symbol specifies an absolute number of valves in the sample, the second symbol means a percentage share of this form in the sample.
Fig. 6 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 6. Morphology of the shell A. inaequivalvis from the Black-Azov Sea Basin: A, B — left valve with wellsculptured radial ribs (Caucasus coast near Pichory village, Abkhazia); C–F — inequivalvity in adult shells: C, D — specimen from the Sea of Azov, Fedotova Spit, E, F — specimen from the Black Sea, cape Opuk. Arrows indicate the line of valves occlusion.
Fig. 3 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 3. Basic forms of the shell shape i. e. commissural opening in A. inaequivalvis from the Black Sea and the Sea of Azov. A, B — form 1; C, D — form 2; E, F — form 3; G, H — form 4; I, J — form 5; K, L — form 6. All specimens — from the BSBR. Numeration is selected arbitrarily, explanations see in the text.
Fig. 2 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 2. Shells of A. inaequivalvis from the Black Sea (G–L) and the Sea of Azov (А–F): А–F — specimens from the northwestern part of the Sea of Azov (Fedotova Spit); G–L — specimens from the northwestern part of the Black Sea (Cordon "Morskoj", the BSBR). A, C, E, G, I, K — inner side of the valves; B, D, F, H, J, L — outer side of the same specimens.
Fig. 5 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 5. Morphological ranges of basic types of the shell shape in A. inaequivalvis from the Black-Azov Sea Basin. Outlines of the shell commissural opening are given in the same scale. The form 4 is defined as initial for all other modifications presented.
Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 17. Выброшенная раковина анадары (Anadara broughtonii) на пляЖе б. Теляковского с прикрепившимися риЗоидами водорослей. Fig. 17. A stranded blood cockle shell (Anadara broughtonii) with attached algae rhizoids on the beach of Telyakovskogo Bay.
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1. in Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy
Рис. 5. Характер повреЖдений створок анадары Броутона (Anadara broughtonii) иЗ раскопа 1. Fig. 5. Fragmentation patterns of valves of the Broughton's blood cockle (Anadara broughtonii) from excavation 1.
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 5. Морские двустворчатые моллюски иЗ раскопов памЯтника Константиновка-1: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – раскоп 3, постройка № 40, пласт 6, квадрат Ж.3-10, длина раковины 49.3 мм; C, D – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 40.8 мм; G, H – раскоп 3, постройка № 40, квадрат Ж.3-10, длина фрагмента 41.6 мм; I–K – раскоп 1, пласт 1, квадрат Б2, длина фрагмента 35.8 мм; E, F – Crenomytilus grayanus (Dunker, 1853), подъемный материал, длина фрагмента 100.7 мм. Fig. 5. Marine bivalves from the Konstantinovka-1 site excavations: A–D, G–K – Anadara talmiensis Kalishevich, 1976 (A, B – excavation 3, construction N 40, layer 6, square Ж.3-10, shell length 49.3 mm; C, D – excavation 3, construction N 40, square Ж.3-10, fragment length 40.8 mm; G, H – excavation 3, construction N 40, square Ж.3-10, fragment length 41.6 mm; I–K – excavation 1, formation 1, square B2, fragment length 35.8 mm); E, F – Crenomytilus grayanus (Dunker, 1853), lifting material, fragment length 100.7 mm.
Fig 2 in Bivalve Spat (Anadara granosa) recruitment in rehabilitation mangrove ecosystem of Rangsang Island, Riau province
Fig 2: Distribution of Mangrove Density in the Mangrove Ecosystem Rehabilitation of Rangsang Island, Riau
Figure 7 in Population abundance and growth parameters of an exotic bivalve species, Anadara kagoshimensis, in the Southwestern Black Sea
Figure 7. Seasonal (red line) and non-seasonal (blue line) von Bertalanffy growth curves of A. kagoshimensis
Figure 10 in Population abundance and growth parameters of an exotic bivalve species, Anadara kagoshimensis, in the Southwestern Black Sea
Figure 10. UPGMA phylogenetic tree based on COI gene sequences of two Anadara species and Arca avellana retrieved from Genbank and also three new sequences obtained from this study (OK091154-OK091156). Numbers by the nodes show bootstrap support probabilities.
Figure 9 in Population abundance and growth parameters of an exotic bivalve species, Anadara kagoshimensis, in the Southwestern Black Sea
Figure 9. Nonseasonal VBGP obtain from LFDA (shell length 2 mm size classes frequency distributions; February, May, July, December 2011, February, July, December 2012)
Figure 8 in Population abundance and growth parameters of an exotic bivalve species, Anadara kagoshimensis, in the Southwestern Black Sea
Figure 8. Seasonal VBGP obtained from LFDA (shell length 2 mm size classes frequency distributions; February, May, July, December 2011, February, July, December 2012).
Fig 4 in Bivalve Spat (Anadara granosa) recruitment in rehabilitation mangrove ecosystem of Rangsang Island, Riau province
Fig 4: Relationship between Spat Abundance of Bivalve A. granosa and Mangrove Density in Rangsang Island, Riau (A) November 2020 (B) December 2020 (C) January 2021
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