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234 results for “Salt marshes”
FIGURES 22–31 in Two new species of Tryblionella W. SMITH (Bacillariaceae, Bacillariophyta) from a southern Brazil salt marsh
FIGURES 22–31. Tryblionella ornata sp. nov. in LM. Scale bar = 10 μm.
FIGURES 2–13 in Two new species of Tryblionella W. SMITH (Bacillariaceae, Bacillariophyta) from a southern Brazil salt marsh
FIGURES 2–13. Tryblionella confusa sp. nov. in LM. Scale bar = 10 μm.
Figure 2 from: Mossakowski D, Dormann W (2011) A plea for using qualitative aspects in the interpretation of ecological field data as revealed by carabid beetle assemblages of a pristine salt marsh. ZooKeys 100: 273-286. https://doi.org/10.3897/zookeys.100.1532
Figure 2 - IndVals at different levels in the UPGMA tree. Result for a single species, Dicheirotrichus gustavii, calculated by the original IndVal program. Eight values of the nine levels are significant. Data: abundance/frequency data. 7/4: a total of seven specimens were found in four of the five traps. Sites 102 and 103 are omitted.
Figure 1 from: Mossakowski D, Dormann W (2011) A plea for using qualitative aspects in the interpretation of ecological field data as revealed by carabid beetle assemblages of a pristine salt marsh. ZooKeys 100: 273-286. https://doi.org/10.3897/zookeys.100.1532
Figure 1 - Result of a cluster analysis using Relative Euclidean distances and Ward's method. Most traps of the site at the lowest elevation (-20 cm below MHW) cluster with those of 100 cm above MHW. Arrow: One trap of -20 behaves differently.
Figure 3 from: Mossakowski D, Dormann W (2011) A plea for using qualitative aspects in the interpretation of ecological field data as revealed by carabid beetle assemblages of a pristine salt marsh. ZooKeys 100: 273-286. https://doi.org/10.3897/zookeys.100.1532
Figure 3 - Results of the IndVal procedure depend on the tree used. Data: abundance/frequency of Cillenus lateralis along the elevation gradient. 3/3: a total of three specimens was found in three of the five traps. Sites 102 and 103 are omitted.
Figure 1 from: Pétillon J, Georges A, Fouillet P (2011) Changes in salt-marsh carabid assemblages after an invasion by the native grass Elymus athericus (Link) Kerguélen. ZooKeys 100: 407-419. https://doi.org/10.3897/zookeys.100.1537
Figure 1 - Location of the study sites (Mont St-Michel Bay, France). Codes: F 'Ferme Foucault' R 'la Rive'.
Figure 2 from: Pétillon J, Georges A, Fouillet P (2011) Changes in salt-marsh carabid assemblages after an invasion by the native grass Elymus athericus (Link) Kerguélen. ZooKeys 100: 407-419. https://doi.org/10.3897/zookeys.100.1537
Figure 2 - Changes in the percentage of halophilic species in the salt marsh after the invasion by Elymus athericus.
Figure 8 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 8 - Meloidoderita salina sp. n.SEM photographs of female and cystoid. A Female body (arrows = S-E pore, anus) B Female body (arrow = S-E pore surrounded by cuticular lobes) C Vulva and anus D Young cystoid with irregular shaped neck region and surface displaying a beaded pattern E Sub-cuticular beaded pattern F Detail of surface markings in cystoid.
Figure 4 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 4 - Meloidoderita salina sp. n. LM photographs of males. A Entire body B Male within the second-stage juvenile (J2) cuticle C Anterior body D Anterior body of male within the old cuticle of J2 (arrow = anterior portion of J2 stylet) E S-E duct F Posterior region G Testis H Spicule and cloacal tube (arrow) I Tail tip (arrow = mucron) J Posterior end of male within the old cuticle of J2. Scale bars: A, B = 50 µm C–J = 10 µm.
Figure 6 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 6 - Meloidoderita salina sp. n. SEM photographs of second-stage juveniles. A Lateral view of head region B Amphids C Lateral field at 30 µm from anterior end D Lateral field at 33% of body length E Posterior region (arrow = anus) F Lateral view of tail region.
Figure 5 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 5 - Meloidoderita salina sp. n. LM photographs of females. A, B Entire body (arrow = uterus) C Sub-terminal protruded vulva (arrow) D Head region (arrow = stylet) E Entire body (arrow = vulva) F Female surrounded by egg-mass G Cystoid H, I Hexagonal beaded pattern. Scale bars: F= 100 µm A–C, E = 50 µm D, G–I = 10 µm.
Figure 7 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 7 - Meloidoderita salina sp. n. SEM photographs ofmale. A, B Head region C Lateral field at S-E pore level (arrow = deirid) D Lateral view of tail region(arrow = phasmid) E Tail region (arrow = bursa-like structure) F Young male within the second-stage juvenile's old cuticle.
Figure 3 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 3 - Meloidoderita salina sp. n. LM photographs of second-stage juveniles. A Entire body B, C Anterior body (arrow =DGO) D S-E duct adjacent to hemizonid (arrow = S-E duct) E Basal bulb (arrow = hemizonid) F Mid-body portion (arrow = primordium) G-I Tail (arrow = anus). Scale bars: A =100 µm B–I = 10 µm.
Figure 9 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 9 - Phylogenetic relationships as inferred from nearly full length of SSU rDNA sequence using GTR + I + G model. Dataset obtained sequences were aligned with the ClustalW algorithm. Numbers near the nodes indicate posterior probabilities in the Bayesian tree (A) and ML tree (B) as implemented in the program BioEdit 7.0.1. Newly generated SSU rDNA sequences are labeled with a (#).
Figure 2 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 2 - Meloidoderita salina sp. n. A, B Female body (arrow = anus) C Female stylet D Female neck region E Cystoid F Female with egg-mass.
Figure 1 from: Karssen G, Mugniery D, van Heese E, van Aelst A, Helder H (2012) Description of Meloidoderita salina sp. n. (Nematoda, Sphaeronematidae) from a micro-tidal salt marsh at Mont-Saint-Michel Bay in France. ZooKeys 249: 1-26. https://doi.org/10.3897/zookeys.249.4138
Figure 1 - Meloidoderita salina sp. n. A Second-stage juvenile (J2) B Male C J2 anterior region D J2 stylet E Male within old J2 cuticle F J2 posterior region G–J J2 Tail tip K–N Male posterior region.
Data from: Reciprocal facilitation between annual plants and burrowing crabs: implications for the restoration of degraded salt marshes
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Data from: Incorporating thresholds into understanding salinity tolerance: a study using salt-tolerant plants in salt marshes
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Data from: Decoupled diversity dynamics in green and brown webs during primary succession in a salt marsh
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Long-term study reveals top-down effect of crabs on a California salt marsh
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