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45 results for “mesovoid shallow substratum”
FIG. 8 in Distinctive Collembola Communities in the Mesovoid Shallow Substratum: Entomobryomorpha of the Sierra de Guadarrama National Park (Central Spain)
FIG. 8. — Habitus and color patterns of some species: A, Entomobrya guadarramensis Jordana & Baquero n. sp.; B, Entomobrya ledesmai Jordana & Baquero n. sp.; C, D, Lepidocyrtus labyrinthi Baquero & Jordana n. sp.; E, Lepidocyrtus purgatori Baquero & Jordana n. sp.; F, Lepidocyrtus paralignorum Baquero & Jordana n. sp.; G, Pseudosinella valverdei Baquero & Jordana n. sp.; H, Pseudosinella gonzaloi Baquero & Jordana n. sp. Scale bar: 0.25 mm.
FIG. 10 in Distinctive Collembola Communities in the Mesovoid Shallow Substratum: Entomobryomorpha of the Sierra de Guadarrama National Park (Central Spain)
FIG. 10. — Entomobrya ledesmai Jordana & Baquero n. sp.: A, head chaetotaxy; B, sensory organ of antennal segment III; C, labral papillae; D, Th II dorsal macrochaetotaxy; E, Abd I-III dorsal macrochaetotaxy; F, Abd IV dorsal macrochaetotaxy; G, chaetae from central area of Abd II; H, tibiotarsus of leg 3; I, trochanteral organ. Abbreviations: see Material and methods. Symbols: ●, Mc; ○, mes; ▲, sensilla. Scale bars: A, D-F, 0.05 mm; H-I, 0.02 mm; B, C, G, 0.01 mm.
FIG. 5 in Distinctive Collembola Communities in the Mesovoid Shallow Substratum: Entomobryomorpha of the Sierra de Guadarrama National Park (Central Spain)
FIG. 5. — Folsomia trisetata Jordana & Ardanaz, 1981: A, antenna with detail of two sensilla; B, head chaetotaxy; C, body chaetotaxy (the arrow on segment IV-VI points to a sensillum on posterior side); D, furcula: manubrium and dens, anterior view; E, ♂ genital plate; F, body sensillar pattern. Abbreviations: see Material and methods. Scale bars: A, B, D, E, 0.02 mm; C, 0.05 mm.
FIG. 2 in Distinctive Collembola Communities in the Mesovoid Shallow Substratum: Entomobryomorpha of the Sierra de Guadarrama National Park (Central Spain)
FIG. 2. — Diversity, abundance and percentage of Collembola (42 745 specimens) collected in the MSS of the Sierra de Guadarrama National Park: A, values by orders and families; B, Entomobryidae Schäffer, 1896 species values (excluding Orchesella Templeton, 1835); C, Isotomidae Schäffer, 1896 species values. Species authorships: see Index of species.
FIGURE 4 in The hypogean Iberian genus Typhlopsychrosoma Mauriès, 1982 (Diplopoda, Chordeumatida, Vandeleumatidae): distribution map, key to species, first record in a Mesovoid Shallow Substratum (MSS) and detailed iconography of T. baeticaense (Mauriès, 2013)
FIGURE 4. Gonopods of all Typhlopsychrosoma species in lateral view: A) T. baeticaense from type locality; adapted from Mauriès (2013). B) T. baeticaense from Aitana Mountains. C) T. breuili; adapted from Mauriès (1971). D) T. tarraconense; adapted from Mauriès (1971). E) T. fadriquei from the type locality; adapted from Mauriès & Vicente (1978). F) T. fadriquei from Hoya La Madre cave (possibly an anomalous specimen according to Mauriés (1982); adapted from Mauriès (1982).
FIGURE 3 in The hypogean Iberian genus Typhlopsychrosoma Mauriès, 1982 (Diplopoda, Chordeumatida, Vandeleumatidae): distribution map, key to species, first record in a Mesovoid Shallow Substratum (MSS) and detailed iconography of T. baeticaense (Mauriès, 2013)
FIGURE 3. Gonopods of P. baeticaense from Aitana Mountains. A) Posterior view. B) Left lateral view. C) Inferior (apical) view. D) Anterior view. The syntelopodite T is coloured in blue, part K of the colpocoxite, including its final tip and the bundle of bristles ('lanières') in red, and part C of the colpocoxite in yellow. The labels indicate: C, c, K: parts of colpocoxite; f: bundle of bristles ('lanières'); T: basal part of syntelopodite; t: lateral process of syntelopodite. All scale bars 0.1 mm.
FIGURE 2 in The hypogean Iberian genus Typhlopsychrosoma Mauriès, 1982 (Diplopoda, Chordeumatida, Vandeleumatidae): distribution map, key to species, first record in a Mesovoid Shallow Substratum (MSS) and detailed iconography of T. baeticaense (Mauriès, 2013)
FIGURE 2. Habitus and body details of T. baeticaense from Aitana Mountains. A) Female in lateral view. Most dorsal setae were not preserved. Scale bar 0.5 mm. B) Body rings of male in lateral view. Scale bar 0.5 mm. C-E) Head and first rings of male in different views. Scale bars: C, E, 0.5 mm; D, 0.1 mm. F) Telson and last rings of male in lateroposterior view. Scale bar 0.5 mm.
FIGURE 1 in The hypogean Iberian genus Typhlopsychrosoma Mauriès, 1982 (Diplopoda, Chordeumatida, Vandeleumatidae): distribution map, key to species, first record in a Mesovoid Shallow Substratum (MSS) and detailed iconography of T. baeticaense (Mauriès, 2013)
FIGURE 1. Distribution map of the genus Typhlopsychrosoma and pictures from the site where T. baeticaense appeared in the MSS. A) Map of the Iberian Peninsula; scale bar 200 km and B) Map of Alicante region; Scale bar 20 km. The white stars correspond to the new localities of T. baeticaense: 1) MSS, Sierra de Aitana, Confrides, Alicante province; 2) MSS, Bernia Mountains, Xaló, Alicante province. White diamonds correspond to previous records of T. baeticaense: 3) Cueva de los Murciélagos, Zuheros, Córdoba province; 4) Cueva de las Golondrinas, Carcabuey, Córdoba province; 5) Cueva del Nacimiento de San Blás, Siles, Jaén province; 6) Complejo del Arroyo de la Rambla, PB-4, Peal de Becerro, Jaén province. White squares correspond to the localities of T. tarraconense: 7) Cova Cambra, Tortosa, Tarragona province; 8) Cova de Yerret, Alfara, Tortosa, Tarragona province; 9) Cova de Rabosa, Perelló, Tarragona province. Black circle with white margin corresponds to T. breuili: 10) Cueva Mayor, Atapuerca cave system, Ibeas de Juarros, Burgos. White circles correspond to the localities of T. fadriquei: 11) Cueva del Oro, Cornión, Asturias province; 12) Pozu Palomeru, Cornión, Asturias province; 13) Hoya la Madre Cave, ravine of Casaro River, 5 km from Lago Ercina, Picos del Cornión, Belbin, Asturias province; 14) Cueva de la Marniosa, Sobra Valley, Tresviso, Asturias province. C) Bare scree in Aitana Mountains where the MSS was sampled. D) Process of installation of the PVC cylinder. E) Aspect of the PVC cylinder once buried, and pitfall trap with the propylene glycol and the bait.
FIGURE 7 in On the genus Aphaobius Abeille de Perrin, 1878, with description of a new species from the mesovoid shallow substratum (MSS) of Austria (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURE 7. Calibrated phylogeny of the studied species obtained with BEAST, with the combined mitochondrial and nuclear data. Numbers in nodes, Bayesian posterior probabilities / ML bootstrap support.
FIGURE 6 in On the genus Aphaobius Abeille de Perrin, 1878, with description of a new species from the mesovoid shallow substratum (MSS) of Austria (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURE 6. Distribution map of the genus Aphaobius in Austria and Slovenia. 1. A. kraussi; 2. A. brevicornis; 3. A. mixanigi; 4. A. haraldi sp. n.
FIGURE 5 in On the genus Aphaobius Abeille de Perrin, 1878, with description of a new species from the mesovoid shallow substratum (MSS) of Austria (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURE 5. Aphaobius spp., aedeagus in dorsal and lateral views. A: Aphaobius haraldi sp. n.; B: A. mixanigi; C: A. brevicornis; D: A. kraussi; E: A. knirschi; F: A. angusticollis.
FIGURE 4 in On the genus Aphaobius Abeille de Perrin, 1878, with description of a new species from the mesovoid shallow substratum (MSS) of Austria (Coleoptera: Leiodidae: Cholevinae: Leptodirini)
FIGURE 4. Aphaobius spp., antennae (males). A: Aphaobius haraldi sp. n.; B: A. mixanigi; C: A. brevicornis; D: A. kraussi; E: A. knirschi; F: A. angusticollis.
Supplementary material 4 from: Eusébio RP, Fonseca PE, Rebelo R, Mathias ML, Reboleira ASPS (2023) How to map potential mesovoid shallow substratum (MSS) habitats? A case study in colluvial MSS. Subterranean Biology 45: 141-156. https://doi.org/10.3897/subtbiol.45.96332
Abundance of invertebrates collected in colluvial Mesovoid Shallow Substratum (MSS) at the Arrábida National Park
Supplementary material 3 from: Eusébio RP, Fonseca PE, Rebelo R, Mathias ML, Reboleira ASPS (2023) How to map potential mesovoid shallow substratum (MSS) habitats? A case study in colluvial MSS. Subterranean Biology 45: 141-156. https://doi.org/10.3897/subtbiol.45.96332
Results of criteria met for each location pinpointed as potential colluvial Mesovoid Shallow Substratum (MSS)
Supplementary material 1 from: Eusébio RP, Fonseca PE, Rebelo R, Mathias ML, Reboleira ASPS (2023) How to map potential mesovoid shallow substratum (MSS) habitats? A case study in colluvial MSS. Subterranean Biology 45: 141-156. https://doi.org/10.3897/subtbiol.45.96332
Characterization of each of the locations found in situ as colluvial Mesovoid Shallow Substratum (MSS): latitude, longitude and estimated area (m2)
Supplementary material 5 from: Eusébio RP, Fonseca PE, Rebelo R, Mathias ML, Reboleira ASPS (2023) How to map potential mesovoid shallow substratum (MSS) habitats? A case study in colluvial MSS. Subterranean Biology 45: 141-156. https://doi.org/10.3897/subtbiol.45.96332
Total invertebrate abundance, collected in colluvial Mesovoid Shallow Substratum (MSS) at the Arrábida National Park
FIG. 12 in Distinctive Collembola Communities in the Mesovoid Shallow Substratum: Entomobryomorpha of the Sierra de Guadarrama National Park (Central Spain)
FIG. 12. — Lepidocyrtus labyrinthi Baquero & Jordana n. sp., Th II to AbdIII dorsal chaetotaxy. Abbreviations: see Material and methods. Symbols: ●, ciliated Mc; ○, mes; ⦰, pseudopores; ▣, bothriotricha. Scale bar: 0.05 mm.
Figure 1 from: Ledesma E, Jiménez-Valverde A, de Castro A, Aguado-Aranda P, Ortuño VM (2019) The study of hidden habitats sheds light on poorly known taxa: spiders of the Mesovoid Shallow Substratum. ZooKeys 841: 39-59. https://doi.org/10.3897/zookeys.841.33271
Figure 1 Location of the 33 scree slopes that were sampled in the Sierra de Guadarrama National Park. Each point corresponds to one subterranean sampling device (SSD). The innermost area of the map delimited by the thick black line delimits the National Park and the surrounding light gray area corresponds to the buffering zone (peripheral protection area).
Figure 4 from: Ledesma E, Jiménez-Valverde A, de Castro A, Aguado-Aranda P, Ortuño VM (2019) The study of hidden habitats sheds light on poorly known taxa: spiders of the Mesovoid Shallow Substratum. ZooKeys 841: 39-59. https://doi.org/10.3897/zookeys.841.33271
Figure 4 Species distribution maps. (A) Centromerusdilutus and (B) Improphantesimprobulus. Black circles represent records from the literature; triangles represent records from the present study. In cases where the symbol includes several 10 × 10 km UTM cells, and to improve legibility, their number is indicated (note that one 10 × 10 km UTM cell usually contains several sampling locations, see Suppl. material 1: Table S1).
Supplementary material 2 from: Ledesma E, Jiménez-Valverde A, de Castro A, Aguado-Aranda P, Ortuño VM (2019) The study of hidden habitats sheds light on poorly known taxa: spiders of the Mesovoid Shallow Substratum. ZooKeys 841: 39-59. https://doi.org/10.3897/zookeys.841.33271
: Data type: statistical data
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