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642 results for “cucumber”
FIGURE 12 in A taxonomic guide to the Echinodermata of the South Atlantic Bight, USA: 1. Sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 12. Thyonella gemmata (Pourtalès, 1851). A, whole animal; B, C, cups; D, E, buttons.
FIGURE 25 in A taxonomic guide to the Echinodermata of the South Atlantic Bight, USA: 1. Sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 25. Psolus operculatus (Pourtalès, 1868). A, whole animal; B, C, buttons.
FIGURE 24 in A taxonomic guide to the Echinodermata of the South Atlantic Bight, USA: 1. Sea cucumbers (Echinodermata: Holothuroidea)
FIGURE 24. Psolus fabricii (Düben & Koren, 1846). A, whole animal; B, C, D, cups and ellipses.
FIGURE 11. Rhopalodinaria bocherti n in Additions to the sea cucumber fauna of Namibia and Angola, with descriptions of new taxa (Echinodermata: Holothuroidea)
FIGURE 11. Rhopalodinaria bocherti n. sp. Holotype, SAM A28108. A-D. Tentacle deposits.
FIGURE 4 in Lissothuria caboblanquensis n. sp., a new species of sea cucumber (Holothuroidea: Dendrochirotida: Psolidae) from Costa Rica
FIGURE 4. Distribution map of Lissothuria caboblanquensis sp. nov.
Figure 2 in The paracaudinid sea cucumbers of Australia and New Zealand (Echinodermata: Holothuroidea: Molpadida: Caudinidae)
Figure 2. SEM images of ossicles from the holotype of Paracaudina ambigua O'Loughlin and Barmos sp. nov. from Shark Bay, central Western Australia (WAM Z29767): upper, forms of predominant ossicles from the mid-body wall; lower, forms of ossicles from the caudal body wall (rarely occurring chilensis-like ossicles with cross and box bridging shown lower top right and lower bottom left).
Figure 4 in The paracaudinid sea cucumbers of Australia and New Zealand (Echinodermata: Holothuroidea: Molpadida: Caudinidae)
Figure 4. SEM images showing variation in form of ossicles from the mid-body wall of a specimen of Paracaudina australis (Semper, 1868) from Dunwich, Moreton Bay, south-east Queensland (AM J13583). Rarely occurring chilensis-like ossicle with cross and box bridging shown bottom right.
Figure 19 in The paracaudinid sea cucumbers of Australia and New Zealand (Echinodermata: Holothuroidea: Molpadida: Caudinidae)
Figure 19. SEM images of ossicles from the mid-body wall of the holotype of Paracaudina tripoda O'Loughlin and Barmos sp. nov. (AM J24922).
Figure 16 in The paracaudinid sea cucumbers of Australia and New Zealand (Echinodermata: Holothuroidea: Molpadida: Caudinidae)
Figure 16. SEM images of ossicles from the mid-body wall of a specimen of Paracaudina tetrapora (H. L. Clark, 1914) from Merricks, Westernport Bay, Victoria (NMV F76565).
Figure 14 in The paracaudinid sea cucumbers of Australia and New Zealand (Echinodermata: Holothuroidea: Molpadida: Caudinidae)
Figure 14. SEM images of ossicles from the mid-body wall of the holotype specimen of Paracaudina keablei O'Loughlin and Barmos sp. nov. from Dunwich, Stradbroke Island, Moreton Bay, Queensland (AM J13579).
FIGURE 6 in Two new species of sea cucumbers (Echinodermata: Holothuroidea) from the seagrass meadow of Penang, Malaysia
FIGURE 6. Acaudina spinifera sp. nov., USMCRC-Echi 029; lateral view. A=Anterior; P=Posterior.
FIGURE 1 in Two new species of sea cucumbers (Echinodermata: Holothuroidea) from the seagrass meadow of Penang, Malaysia
FIGURE 1. Location of sampling area in Middle Bank and Pulau Gazumbo.
FIGURE 2 in Two new species of sea cucumbers (Echinodermata: Holothuroidea) from the seagrass meadow of Penang, Malaysia
FIGURE 2. Euthyonidiella zulfigaris sp. nov. USMCRC-Echi 010; dorsal view. A=Anterior; P=Posterior.
Figure 3 from: Renner SS (2017) A valid name for the Xishuangbanna gourd, a cucumber with carotene-rich fruits. PhytoKeys 85: 87-94. https://doi.org/10.3897/phytokeys.85.17371
Figure 3 - Physical position of the ore gene on Cucumis sativus chromosome 3. Blue diamonds below the seven chromosomes indicate the positions of 43 SNPs c Mutation at residue 257 changing the conserved amino acid of a putative β-carotene hydroxylase (CsaBCH1). Xishuangbanna group cucumbers carry asparagine, whereas all other cucumbers and homologous proteins from ten other species carry alanine d CsaBCH1 mRNA levels in Xishuangbanna cucumbers that accumulate β-carotene. Reproduced from Qi et al. (2013).
Figure 2 from: Renner SS (2017) A valid name for the Xishuangbanna gourd, a cucumber with carotene-rich fruits. PhytoKeys 85: 87-94. https://doi.org/10.3897/phytokeys.85.17371
Figure 2 - Section of a mature fruit of Cucumis sativus var. xishuangbannanensis. Reproduced from Staub et al. (2011).
Figure 1 from: Renner SS (2017) A valid name for the Xishuangbanna gourd, a cucumber with carotene-rich fruits. PhytoKeys 85: 87-94. https://doi.org/10.3897/phytokeys.85.17371
Figure 1 - Cucumber populations. a The core collection of 115 lines re-sequenced by Qi et al. (2013). Colour codes indicate geographic groups b Fruit morphology of the four groups. The cucumber line CG1601 (East Asian) bears fruits with dense, white spines and an elongated stalk. Fruits of cucumber line CG5278 (Eurasian) lack spines and have a short fruit stalk. Cucumber line CG9164 (Xishuangbanna) bears melon-like fruits with a low fruit shape index (length/width) and a unique orange endocarp. Cucumber line CG0002 (Indian) bears small, oval fruits with sparse, black spines. Note that the images differ in scale. Reproduced from Qi et al. including Renner (2013).
Figure 7 in A revision of Antarctic and some Indo-Pacific apodid sea cucumbers (Echinodermata: Holothuroidea: Apodida)
Figure 7. Prototrochus linseae sp. nov. (S Shetland Is; RBINS IG 31 459). a, SEM of plates of the calcareous ring with prominent single anterior projections; b, SEM of wheels from the body wall.
Figure 11 in A revision of Antarctic and some Indo-Pacific apodid sea cucumbers (Echinodermata: Holothuroidea: Apodida)
Figure 11. SEM images for specimens of Sigmodota magnibacula (Massin and Hétérier, 2004). a, b, plates from calcareous ring (Prydz Bay; RBINS IG 31 459 ex NMV F68691); c, wheels from body wall (S Orkney Is; RBINS IG 31 459 ex NMV F168842); d, hooks from body wall (S Orkney Is; RBINS IG 31 459); e, rods from tentacles (S Orkney Is; RBINS IG 31 459 ex NMV F168842).
Figure 2. a in A revision of Antarctic and some Indo-Pacific apodid sea cucumbers (Echinodermata: Holothuroidea: Apodida)
Figure 2. a, drawing of tentacle and part of non-calcareous ring of Achiridota smirnovi sp. nov. (Prydz Bay; holotype, NMV F68687); b, drawing of tentacle and part of calcareous ring of Kolostoneura griffithsi sp. nov. (S Orkney Is; holotype, NMV F168634).
Figure 5 in The fisheries of the sea around Saint-Pierre and Miquelon: from cod to sea cucumber
Figure 5. – Biomass trend of cod off the Canadian coast and around St Pierre and Miquelon, 1508 to 2019. A: 1508 to 2019, based on a CMSY assessment by Schijns et al. (2021); B: the same data, for 1950 to 2019, and emphasizing the trawler-induced collapse if cod biomass in the entire eastern Canadian region; C: biomass trend in an independent CMSY assessment of cod from the Southern Grand Banks-Southern Newfoundland (see Fig. 3B, C), validated by CPUE data (black dots with corresponding confidence intervals) documented for # 12 in Table I.
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