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Dataset results
13 results for “Tenuibiotus”
FIGURES 13 – 18 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 13 – 18. Tenuibiotus voronkovi — egg process details, different shape of processes seen in PCM.
FIGURES 3 – 6 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 3 – 6. Tenuibiotus voronkovi — buccal apparatus: 3 — buccal apparatus, dorso-ventral projection (PCM); 4 — ventral view of the buccal armature, arrowhead indicate row of teeth (PCM); 5 — buccal apparatus, dorso-ventral projection (DIC); 4 — dorsal view of the buccal armature, arrowhead indicate single teeth (PCM).
FIGURES 9 – 12 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 9 – 12. Tenuibiotus voronkovi — eggs and juveniles: 9 — egg midsection (DIC); 10 — egg midsection with embryo (PCM); 11, 12 — juveniles and eggs.
FIGURES 1 – 2 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 1 – 2. Tenuibiotus voronkovi — habitus: 1 - dorso-ventral projection, exoskeleton after DNA extraction (PCM); 2 - dorso-ventral projection (DIC).
FIGURES 7 – 8 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 7 – 8. Tenuibiotus voronkovi — claws of leg IV seen in PCM: 7 — arrowhead indicate accessory points; 8 — dentate lunules and granulation.
FIGURES 7–8 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 7–8. Tenuibiotus voronkovi—claws of leg IV seen in PCM: 7—arrowhead indicate accessory points; 8—dentate lunules and granulation.
FIGURES 1–2 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 1–2. Tenuibiotus voronkovi—habitus: 1 - dorso-ventral projection, exoskeleton after DNA extraction (PCM); 2 - dorso-ventral projection (DIC).
FIGURES 3–6 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 3–6. Tenuibiotus voronkovi—buccal apparatus: 3—buccal apparatus, dorso-ventral projection (PCM); 4—ventral view of the buccal armature, arrowhead indicate row of teeth (PCM); 5—buccal apparatus, dorso-ventral projection (DIC); 4— dorsal view of the buccal armature, arrowhead indicate single teeth (PCM).
FIGURES 9–12 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 9–12. Tenuibiotus voronkovi—eggs and juveniles: 9—egg midsection (DIC); 10—egg midsection with embryo (PCM); 11, 12—juveniles and eggs.
FIGURE 3. A, B in Tenuibiotus, a new genus of Macrobiotidae (Eutardigrada)
FIGURE 3. A, B, claws of the first (A) and second (B) pair of legs of Tenuibiotus sp. It is clear that, due to the orientation of the claws, the angle between primary and secondary branches and the length of the common tracts may appear different in claws of the same pair of legs. C, D, claws of the fourth pair of legs of a paratype of Macrobiotus ariekammensis (C) and Macrobiotus kirghizicus (D). The arrows indicate that in both species the common tract of each claw is clearly shorter than that of the typical claws of tenuis-type. (Scale bar = 10 µm).
FIGURE 2. A in Tenuibiotus, a new genus of Macrobiotidae (Eutardigrada)
FIGURE 2. A, Typical claws of the tenuis-type (the claws of the third pair of legs of the holotype of M. tenuis are shown). The arrow indicates the characteristic long common tract. B, C: Claws of the third pair of legs of a paratype of M. tenuiformis. In B an anterior appendage seems to be present (arrow) in the basal portion of the claws, but this appearance is due to the marked difference in the sclerotisation between the distal and the proximal tracts of the margin of the basal portion of the claws; in C the less sclerotised portion of the margin is focused (arrow) and it is evident that no true appendage is present; D, bucco-pharyngeal apparatus of Macrobiotus tenuis (holotype). (Scale bar = 10 µm).
FIGURE 1. A in Tenuibiotus, a new genus of Macrobiotidae (Eutardigrada)
FIGURE 1. A, Stylised drawing of the tenuis-type claws. As the primary and secondary branches are joined over a long distance, the remaining free portion of the secondary branch is clearly shorter than the primary branch, and the branches nearly form an almost right angle. B, Stylised drawing of the Macrobiotus hufelandi-type claws. Primary and secondary branches are joined over a shorter distance than in the claws of tenuis-type; the remaining free portion of the secondary branch forms with the primary branch an acute angle. ap = accessory points; l = lunules; pb = primary branch; s = stalk; sb = secondary branch.
FIGURES 13–18 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 13–18. Tenuibiotus voronkovi—egg process details, different shape of processes seen in PCM.
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