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214 results for “Seaweeds”
Figure 6 in Range expansion of some non-indigenous seaweeds along the coasts of Brittany - English Channel
Figure 6: Pachymeniopsis lanceolata from Brittany: (a) general habit; (b) tetrasporophyte with numerous marginal proliferations (Herbarium T. Burel); (c) longitudinal section. Scale bars: (a–c) 2 cm; (d) 100 µm.
Figure 7 in Range expansion of some non-indigenous seaweeds along the coasts of Brittany - English Channel
Figure 7: Polyopes lancifolius from Brittany: (a) general habit showing characteristic proliferations; (b) in situ material from Bréhat (picture by T. Burel); (c) dried specimen from the Gulf of Morbihan (Herbarium A. Le Roux), winter form lacking proliferations; (d) vertical section through old axis showing a thick cortex. Scale bars: (a–c) 2 cm; (d) 50 µm.
Figure 2 in From Tasmania to the world: long and strong traditions in seaweed use, research, and development
Figure 2: Examples of the diversity of seaweed species in Tasmania. (A) Hormosira banksii, (B) Asparagopsis armata, (C) Lessonia corrugata, (D) Durvillaea potatorum, (E) front: Caulerpa trifaria; back: Phyllotrichia verruculosa, (F) Macrocystis pyrifera, (G) Phyllospora comosa, (H) Delisea sp., (I) assemblage of red seaweeds including Ballia callitricha, Corallina officinalis, Delisea plumosa, Phymatolithon maisonianum, Pterocladiella capillacea, Spnderphycus coriaceus, (J) Durvillaea spp. and Xiphophora gladiata, (K) reef assemblage including: Ecklonia radiata, Caulerpa trifaria, Plocamium cirrhosum, (L) encrusting red algal assemblage, (M) Ecklonia radiata, (N) assemblage of crustose coralline algae, (O) Sargassum sp. Photo credits:(A, D, E, F) Joanna Smart,(B) Elysha Kennedy, (C) Michael Guiry (AlgaeBase), (G, K) Matthew Doggett, (N) Elisabeth (Beth) Strain, (I) Christopher Cornwall, (J) Scott Ling, (H and L) Cayne Layton, (M) Jo Lane, (O) Emilliano Cimoli.
Figure 1 in Range expansion of some non-indigenous seaweeds along the coasts of Brittany - English Channel
Figure 1: Map of Brittany showing the sites examined during the study, ca. 2018–2022. Blue squares represent sites visited during the citizen science program or during courses at the university, black dots represent sites visited during the monitoring program.
Figure 3 in Range expansion of some non-indigenous seaweeds along the coasts of Brittany - English Channel
Figure 3: Antithamnion hubbsii from Brittany: (a) dried specimen from Brest marina (herbarium of the European Institute for Marine Studies); (b) general habit; (c) characteristic segment showing a cell of the main axis, the opposite distichous branching and the opposite branchlets bearing glandular cells; (d) portion of axis with tetrasporangia; (e) branches and branchlets bearing glandular cells (arrowheads). Scale bars: (a) 5 mm; (b) 2 mm; (c–e) 50 µm.
Figure 1 in From Tasmania to the world: long and strong traditions in seaweed use, research, and development
Figure 1: Map of Tasmania with regional oceanographic currents, and locations referred to in the text and Table 1, including the East Australian Current (EAC) and Zeehan Current (ZC).
Figure 2 in Range expansion of some non-indigenous seaweeds along the coasts of Brittany - English Channel
Figure 2: Distribution range of seven non-indigenous Rhodophyta in Brittany in 2023. Circles: previous records (from Geoffroy et al. 2016; Le Roux 2018), stars: new records (this study). For each species, the first date of introduction in Brittany (always in the Gulf of Morbihan) is indicated on the map (Le Roux 2018 and pers. comm.).
Inhibition of toxic Pseudo-nitzschia spp. by the kelp, Saccharina latissima, and other seaweeds
<p><span>This package contains the datasets and R code used to produce the article “Inhibition of toxic <em>Pseudo-nitzschia </em>spp. by the kelp, <em>Saccharina latissima</em>, and other seaweeds,” which is to appear in Limnology and Oceanography.</span></p>
FIGURES 145–167. Twenty-one nitzschioid diatom species. Fig. 145 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 145–167. Twenty-one nitzschioid diatom species. Fig. 145. Nitzschia sp. 1. Fig. 146. Nitzschia sp. 2. Fig. 147. Nitzschia sp. 3. Figs 148 and 149. N. scalpelliformis. Fig. 150. N. fluminensis. Fig. 151. N. ventricosa. Fig. 152. Nitzschia sp. 4. Figs 153 and 154. Bacillaria sp. Fig. 155. Nitzschia sp. 5. Fig. 156. Conopeate Nitzschia sp. 6. Fig. 157. Conopeate Nitzschia sp. 7. Fig. 158. Nitzschia sp. 8. Fig. 159. N. lanceola. Fig. 160. Nitzschia sp. 9. Fig. 161. Nitzschia marginulata var. didyma. Fig. 162. Nitzschia sp.10. Fig. 163. Nitzschia sp. 11. Fig. 164. Psammodictyon sp. 1. Fig. 165. Psammodictyon constrictum. Fig. 166. Psammodictyon sp. 2. Fig. 167. P. panduriforme. Scale bar = 10 μm.
FIGURES 124–144. Seventeen amphoroid diatoms species. Figs 124 and 125 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 124–144. Seventeen amphoroid diatoms species. Figs 124 and 125. Halamphora sp.1. Figs 126 and 127. Halamphora sp. 2. Fig. 128. Halamphora sp. 3. Fig. 129. Amphora sp. 1. Fig. 130. Amphora sp. 2. Figs 131. Amphora sp. 3. Fig. 132. A. proteus. Figs 133 and 134. Halamphora costata. Fig. 135. A. spriggerica. Figs 136 and 137. Amphora sp. 4. Fig. 138. Amphora sp. 5. Fig. 139. Amphora sp. 6. Fig. 140. Amphora sp. 7. Fig. 141. A. beaufortianus. Fig. 142. A. arenaria. Fig. 143. A. obtusa. Fig. 144. Climaconeis inflexa. Scale bar = 10 μm.
FIGURES 102–113 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 102–113. Eleven diatom species of Naviculales. Fig. 102. Pinnunavis yarrenis. Figs 103 and 104. Trachyneis aspera. Fig. 105. Trachyneis velata. Fig. 106. Gyrosigma sp. Fig. 107. Caloneis liber var. linearis. Fig. 108. Caloneis sp. 1. Fig. 109. Caloneis sp. 2. Fig. 110. Caloneis sp. 3. Fig. 111. Chamaepinnularia clamans. Fig. 112. Fallacia sp. Fig. 113. Sellaphora sp. Scale bar = 10 μm.
FIGURES 114–119 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 114–119. Five diatom species of Plagiotropidaceae and Pleurosigmataceae. Fig. 114. Donkinia baltica. Figs 115 and 116. Donkinia sp. Fig. 117. Stauroneis sp. Fig. 118. Plagiotropis sp. Fig. 119. P. lepidoptera. Scale bar = 10 μm.
FIGURES 53–62 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 53–62. Nine diatom species of Mastogloia. Figs 53 and 54. M. fimbriata. Fig. 55. M. horvathiana. Fig. 56. M. pseudolatecostata. Fig. 57. M. cf. labuensis. Fig. 58. M. ovulum. Fig. 59. M. cf. pumila. Fig. 60. M. manokwariensis. Fig. 61. M. cuneata. Fig. 62. M. inaequalis. Scale bar = 10 μm.
FIGURES 48–52 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 48–52. Five diatom species of Mastogloia. Fig. 48. M. binotata. Fig. 49. M. crucicula. Fig. 50. M. cribrosa. Fig. 51. M. punctatissima. Fig. 52. M. ovum-paschale. Scale bar = 10 μm.
FIGURES 63–79 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 63–79. Fourteen diatom species of Diploneis. Fig. 63. D. chersonensis. Fig. 64. D. crabro. Figs 65 and 66. Diploneis sp. 1. Fig. 67. Diploneis sp. 2. Figs 68 and 69. D. weissflogii. Fig. 70. Diploneis sp. 3. Fig. 71. D. smithii. Fig. 72. Diploneis sp. 4. Fig. 73. D. littoralis. Figs 74 and 75. D. suborbicularis. Fig. 76. Diploneis sp. 5. Fig. 77. Diploneis sp. 6. Fig. 78. D. nitescens. Fig. 79. Diploneis sp. 7. Scale bar = 10 μm.
FIGURES 35–47 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 35–47. Twelve diatom species of Mastolgoia. Fig. 35. M. acutiuscula. Fig. 36. M. citrus. Figs 37–39. M. cyclops. Fig. 40. M. subacuta. Fig. 41. M. seychellensis. Fig. 42. M. erythraea. Fig. 43. M. erythraea forma 3. Fig. 44. M. cf. grunowii. Fig. 45. M. decussata. Fig. 46. M. pulchella. Fig. 47. M. graciloides. Scale bar = 10 μm.
FIGURES 80–101. Sixteen naviculoid diatom species. Fig. 80 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 80–101. Sixteen naviculoid diatom species. Fig. 80. Seminavis cf. bacilica. Fig. 81. S. delicatula. Fig. 82. S. latior. Fig. 83. S. robusta. Fig. 84. Seminavis sp.1. Fig. 85. Seminavis sp.2. Fig. 86. Navicula consors. Figs 87 and 88. Navicula sp. 1. Fig 89. Navicula sp. 2. Figs 90 and 91. Navicula sp. 3 Figs 92 and 93. Navicula sp. 4. Figs 94–97. Navicula longa var. irregularis. Fig. 98. Navicula sp. 6. Fig. 99. Navicula sp. 7. Fig. 100. Navicula sp. 8. Fig. 101. Navicula sp. 9. Scale bar = 10 μm.
FIGURES 9–22 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 9–22. Eleven diatom species of Urneidophycidae and Fragilariophycidae. Figs 9 and 10. Talaroneis sp. Fig. 11. Plagiogramma cf. pulchellum. Fig. 12. Psammodiscus nitidus. Fig. 13. Cyclophora tenuis. Fig. 14. Bleakeleya notata. Figs 15 and 16. Tabularia parva. Figs 17 and 18. Hyalosynedra laevigata. Fig. 19. Podocystis spathulata. Fig. 20. Neofragilaria anomala. Fig. 21. Opephora sp. Fig. 22. Grammatophora marina. Scale bar = 10 μm.
FIGURE 1. A in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURE 1. A map showing the sampling sites in Moen Island within Chuuk Lagoon, Micronesia. A. Location of Micronesia in the world (Black square), B. Chuuk Lagoon within Micronesia and Moen Island surrounded by box. C. Five sampling sites in the Moen Island.
FIGURES 23–34 in Diatoms associated with seaweeds from Moen Island in Chuuk Lagoon, Micronesia
FIGURES 23–34. Ten diatom species of Lyrellaes, Cymbellales and Cocconeidales. Fig. 23. Lyrella clavata var. caribaea. Fig. 24. L. lyra. Fig. 25. L. hennedyi var. furcata. Fig. 26. Moreneis hexagona. Fig. 27. Petroneis granulata. Figs 28 and 29. Cocconeis scutellum. Figs 30 and 31. C. heteroidea. Fig. 32. C. convexa. Fig. 33. Gomphonemopsis littoralis. Fig. 34. Achnanthes brevipes. Scale bar = 10 μm.
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International Brain Laboratory public data
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OpenNeuro
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