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441 results for “tardigrades”
FIGURES 15–17 in Tardigrades from Nahuel Huapi National Park (Argentina, South America) with descriptions of two new Macrobiotidae species
FIGURES 15–17. Minibiotus pseudostellarus sp. nov.: 15—claws II (holotype); 16—claws IV (holotype); 17—claws IV (holotype).
FIGURES 9–11 in Tardigrades from Nahuel Huapi National Park (Argentina, South America) with descriptions of two new Macrobiotidae species
FIGURES 9–11. Mesobiotus pseudoblocki sp. nov.:—egg: 9—chorion; 10—surface between processes (the arrow indicates the crown of dots at the base of the process with small finger-like structure); 11 —processes on egg circumference.
FIGURES 1–3 in Tardigrades from Nahuel Huapi National Park (Argentina, South America) with descriptions of two new Macrobiotidae species
FIGURES 1–3. Macrobiotus cf. anderssoni: egg: 1—chorion; 2—surface between processes; 3—processes on egg circumference.
FIGURES 18–21 in Tardigrades from Nahuel Huapi National Park (Argentina, South America) with descriptions of two new Macrobiotidae species
FIGURES 18–21. Minibiotus pseudostellarus sp. nov. 18–21—large star-shaped pores present on legs I–IV (holotype).
FIGURE 3. A in Echiniscus quitensis, a new species of tardigrade from Ecuador (Heterotardigrada: Echiniscidae)
FIGURE 3. A, anterior portion of the body of Echiniscus quitensis sp. n.; B, idem of E. charrua: the buccal cirri and the cephalic papilla are in focus. C, claws of the fourth pair of legs of E. quitensis sp. n.; D, claws of the third pair of legs of E. charrua. Scale bar = 10 μm.
FIGURE 2 in Echiniscus quitensis, a new species of tardigrade from Ecuador (Heterotardigrada: Echiniscidae)
FIGURE 2. Echiniscus charrua: A, B, anterior portion of the body. C, posterior portion of the body; the polygons and the light points are in focus. D, claws of the second and third pairs of legs. Scale bar = 10 μm.
FIGURE 1 in Echiniscus quitensis, a new species of tardigrade from Ecuador (Heterotardigrada: Echiniscidae)
FIGURE 1. Echiniscus quitensis sp. n.: A, habitus (scale bar 30 μm). B, anterior portion of the body. C, posterior portion of the body; the polygons and the light points are in focus. D, sculpture of the terminal plate. In B, C and D, scale bar = 10 μm.
FIGURE 2 in Notes on some tardigrades from southern Mexico with description of three new species
FIGURE 2. Pseudechiniscus gullii sp. n. A. Holotype on dorsal view; the dimple between the scapular plate and the median plate 1 is evident. B. Paratype on dorsal view. C. Anterior portion of the body of a paratype; the cephalic appendages are focused. D. Claws of the second and third pairs of legs (holotype). E. Posterior portion of the body of a paratype on lateral view. Scale bar = 10
FIGURE 4 in Notes on some tardigrades from southern Mexico with description of three new species
FIGURE 4. Minibiotus continuus sp. n. A. Habitus and buccopharyngeal apparatus of the holotype (scale bar = 20 m). B. Claws of the third pair of legs of a paratype. C. Claws of the fourth pair of legs of a paratype. D. egg. E–F. Detail of the eggs where the hyaline layer is evident. Scale bar = 10 m.
FIGURE 1. Pseudechiniscus juanitae. A. habitus. B in Notes on some tardigrades from southern Mexico with description of three new species
FIGURE 1. Pseudechiniscus juanitae. A. habitus. B. Anterior portion of the body; the cephalic appendages are focused. C. Anterior portion of the body; a spur is visible on the internal claws of the first pair of claws. Scale bar = 10 m.
FIGURE 3 in Notes on some tardigrades from southern Mexico with description of three new species
FIGURE 3. Macrobiotus contii sp. n. A. Buccopharyngeal apparatus of the holotype. B. Claws of third and fourth pairs of legs. C–D. Egg. Scale bar = 10 m.
FIGURE 1 in Tardigrade fauna of the South Sandwich Islands, maritime Antarctic
FIGURE 1. Map indicating the major islands in the South Sandwich archipelago, and the position of the archipelago relative to the Antarctic Peninsula and southern South America.
Figure 1. A in Osmotic stress tolerance in semi-terrestrial tardigrades
Figure 1. A, Light micrograph of Ramazzottius oberhaeuseri. Scale bar = 100 µm. B, Activity in percentage (mean ƚ SEM) of R. oberhaeuseri in experimental series (N = 3–6) with acute exposures to 192 ƚ 1, 463 ƚ 1, 560 ƚ 1 and 758 1 mOsm kg—1 NaCl solutions. The four graph lines (open symbols) the activity in ƚ top express percentage (mean ƚ SEM) of the corresponding control groups (N = 3–6) in purified water. C, Light micrograph of Echiniscus testudo. Scale bar = 100 µm. D, Activity in percentage (mean ƚ SEM) of Echiniscus testudo in experimental series (N = 3–6) with acute exposures to 93 0, 192 1, 281 0 and 463 1 mOsm kg—1 NaCl solutions. The top four graph lines (open ƚ ƚ ƚ ƚ symbols) express the activity in percentage (mean ƚ SEM) of the corresponding control groups (N = 3–6) in purified water. In B and D t = 0 h represents the activity in purified water immediately prior to osmolyte exposure, whereas t = 24 h indicates the activity after exposure to a given test solution for 24 h. The tardigrades were subsequently transferred to purified water and their activity was assessed at t = 26 h, t = 48 h and t = 72 h.
Figure 4 in Tardigrade diversity: an evaluation of natural and disturbed environments of the province of Salta (Argentina)
Figure 4. Partition of gamma diversity into its alpha and beta components and the relationship between observed and expected diversity at each partition level. *Statistically significant differences between two values.
Figure 2 in Tardigrade diversity: an evaluation of natural and disturbed environments of the province of Salta (Argentina)
Figure 2. Comparison of tardigrade community structure in selected habitats of Salta province (Argentina) by Whittaker curves, where the species are ordered from most to least abundant. The native community fits better to a broken-stick model showing evenness, meanwhile the log series model best describes the data of urban and rural tardigrade communities.
Figure 3 in Tardigrade diversity: an evaluation of natural and disturbed environments of the province of Salta (Argentina)
Figure 3. NMS showing the similitude of tardigrade assemblages from the sampled communities ordered by habitat on the first axis.
Figure 1 in Tardigrade diversity: an evaluation of natural and disturbed environments of the province of Salta (Argentina)
Figure 1. Sample site locations in urban, rural and native communities in relation to central Salta province. NR9, National Route No. 9.
FIGURE 7C in Description of a model tardigrade Paramacrobiotus metropolitanus sp. nov (Eutardigrada) from Japan with a summary of its life history, reproduction and genomics
FIGURE 7C. Phylogenetic position of the new species based on COI sequences. Values at nodes indicate Bayesian posterior probabilities. Scale bars = substitutions per position.
FIGURE 7B in Description of a model tardigrade Paramacrobiotus metropolitanus sp. nov (Eutardigrada) from Japan with a summary of its life history, reproduction and genomics
FIGURE 7B. Phylogenetic position of the new species based on ITS-2 sequences. Values at nodes indicate Bayesian posterior probabilities. Scale bars = substitutions per position.
FIGURE 7A in Description of a model tardigrade Paramacrobiotus metropolitanus sp. nov (Eutardigrada) from Japan with a summary of its life history, reproduction and genomics
FIGURE 7A. Phylogenetic position of the new species based on the concatenated 18S+28S+ITS-2+COI dataset. Values at nodes indicate Bayesian posterior probabilities. Scale bars = substitutions per position.
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