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78 results for “Porcellio”
Fig. 29. Porcellio cavernicolus Vandel, 1946 in The cavernicolous Oniscidea (Crustacea: Isopoda) of Portugal
Fig. 29. Porcellio cavernicolus Vandel, 1946. — ♂ from Gruta da Cerâmica, Sicó. A. Pereopod 1. B. Pereopod 7. C. Pleopod 1. D. Pleopod 2. — ♂ from Gruta d'el Rey, Cantanhede-Outil Massif. E. Pereopod 1. F. Pereopod 7.
Fig. 28. Porcellio cavernicolus Vandel, 1946 in The cavernicolous Oniscidea (Crustacea: Isopoda) of Portugal
Fig. 28. Porcellio cavernicolus Vandel, 1946. — ♂ from Gruta da Cerâmica, Sicó. A. Adult specimen in dorsal view. B. Cephalon in dorsal view. C. Epimeron of pereonite 1. D. Pleonites 3–5, telson and uropods. E. Antennula. F. Antenna. — ♂ from Gruta d'el Rey. G. Pleonite 4, 5, telson and uropods.
Figure 3 in Effects of combined treatment of cadmium and oxytetracycline on the terrestrial isopod Porcellio leavis
Figure 3. Concentration of biochemical parameters: Total protein, Lipid peroxidation (LPO), Catalase activity (CAT) and Total free amino acids (TFAA) in P. leavis in different treated groups control, Cd, T1, T2, and T3. Values are the mean of three replicates (n=3) ± SE. The significant difference between the groups were analysed by one-way analysis of variance. Mean values of different subscript letters (a,b,c,d) were significantly different (p<0.001).
FIG. 3. — Porcellio djahizi n in Une nouvelle espèce de Porcellio (Crustacea, Isopoda, Oniscidea) en Tunisie
FIG. 3. — Porcellio djahizi n. sp.; A, antenne; B, péréiopode VII mâle; C, pléopode I mâle; D, pléopode II mâle; E, extrémité de l'endopodite du premier pléopode mâle; F, champ glandulaire du 4e péréionite; G, soie-écaille. Échelles: A-D, 1 mm; E, 0,1 mm; F, G, 0,2 mm.
RNA-Seq data of common woodlice Porcellio scaber
<p>This dataset contains raw transcriptome sequences of common woodlice <em>Porcellio scaber</em> (Crustacea: Isopoda), an important model species in ecotoxicology, developmental biology, immunology and physiology studies. In this context, dataset (transcriptome) provides a cornerstone for all future gene-based research of <em>P. scaber</em>. </p> <p>For transcriptome construction, total RNA was extracted from the whole organism of <em>P. scaber</em>. The extracted RNA was checked for quantity, purity, and integrity and sent to Novogene (United Kingdom) for sequencing. The transcriptome was generated by high-throughput sequencing using an Illumina NovaSeq 6000 platform with 150 bp paired-end option. The dataset contains raw reads recorded in FASTQ format; Ps2_1.fq and Ps2_2.fq, containing Read 1 and Read 2 for paired-end sequencing, respectively.</p>
FIG. 1. — Porcellio djahizi n in Une nouvelle espèce de Porcellio (Crustacea, Isopoda, Oniscidea) en Tunisie
FIG. 1. — Porcellio djahizi n. sp. Habitus mâle en face dorsale. Échelle: 1 mm.
FIGURE 2 in Redescription of Porcellio brevicaudatus Brandt, 1833 (Isopoda: Oniscidea); with some notes on other synonyms of Hemilepistus reaumurii (Milne-Edwards, 1840)
FIGURE 2. Porcellio brevicaudatus, syntypes of Hemilepistus sottii. A–D, male from Libya, Guarscia. E–G, male from Libya, Zavia Mechili. A, pleopod 1 exopodite; B, pleopod 1 endopodite; C, pleopod 2 exopodite; D, pleopod 2 endopodite; E, pleopod 3 exopodite; F, pleopod 4 exopodite; G, pleopod 5 exopodite. Scale = 0.25 mm for A–D; 0.5 mm for E–G..
FIGURE 1 in Redescription of Porcellio brevicaudatus Brandt, 1833 (Isopoda: Oniscidea); with some notes on other synonyms of Hemilepistus reaumurii (Milne-Edwards, 1840)
FIGURE 1. Porcellio brevicaudatus, syntypes of Hemilepistus sottii, male from Libya, Zavia Mechili. A, cephalothorax and pereion-tergites 1–4; B, dorsal view; C, antenna; D, pereiopod 1; E, pereiopod 2; F, pereiopod 3; G, pereiopod 7. Scale = 2 mm for A and B; 0.5 mm for C–G.
FIGURE 4 in Terrestrial isopods of the genus Porcellio Latreille, 1804 (Isopoda; Oniscidea) in Iran, with a description of a new species
FIGURE 4. Porcellio mehrdadi sp. nov., male, paratype. A, pleopod endopodite I; B, pleopod exopodite I; C, pleopod II; D, pleopod exopodite III; E, pleopod exopodite IV; F, pleopod exopodite V. Scales = 0.5 mm.
FIGURE 3 in Terrestrial isopods of the genus Porcellio Latreille, 1804 (Isopoda; Oniscidea) in Iran, with a description of a new species
FIGURE 3. Porcellio mehrdadi sp. nov., male, paratype. A, head and first pereonite; B, antenna; C, telson and uropods; D, pereopod I; E, pereopod VII; F, pereopod VII ischium, frontal view; G, pereopod VII ischium, caudal view. Scales = 1 mm.
FIGURE 1 in Terrestrial isopods of the genus Porcellio Latreille, 1804 (Isopoda; Oniscidea) in Iran, with a description of a new species
FIGURE 1. Map of Iran indicating the sampling localities of Porcellio obsoletus (D previous records, ■ new records) and P. evansi (O previous records) with the provinces of Chehar–Mahal va Bakhtiari and Kohgiluyeh va Boyer–Ahmad enlarged (above right) to show the sampling localities of Porcellio mehrdadi sp. nov. (●);* indicates the type locality. Figures refer to the sampling localities indicated in brackets in the material examined section for each species. Bu: Bushehr; CB: Chehar– Mahal va Bakhtiari; EA: Eastern Azarbaijan; Fa: Fars; Hm: Hamedan; Hr: Hormozgan; Im: Ilam; KB: Kohgiluyeh va Boyer– Ahmad; Kh: Khuzestan; Km: Kerman; Ko: Kordestan; Kr: Kermanshah; Lo: Lorestan; Mk: Markazi; Mn: Mazandaran; Qo: Qom; SB: Sistan va Balouchistan; WA: Western Azarbaijan; Yz: Yazd; Zn: Zanjan.
FIGURE 2. A in Terrestrial isopods of the genus Porcellio Latreille, 1804 (Isopoda; Oniscidea) in Iran, with a description of a new species
FIGURE 2. A, living specimens of Porcellio mehrdadi sp. nov. from the type locality; B, holotype; C, a female paratype.
Supplementary material 7 from: Bogataj U, Praznik M, Mrak P, Štrus J, Tušek-Žnidarič M, Žnidaršič N (2018) Comparative ultrastructure of cells and cuticle in the anterior chamber and papillate region of Porcellio scaber (Crustacea, Isopoda) hindgut. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 427-458. https://doi.org/10.3897/zookeys.801.22395
SI Figure 7. Stripcharts depicting individual measurements of the spatial density of basal membrane infoldings :
Supplementary material 6 from: Bogataj U, Praznik M, Mrak P, Štrus J, Tušek-Žnidarič M, Žnidaršič N (2018) Comparative ultrastructure of cells and cuticle in the anterior chamber and papillate region of Porcellio scaber (Crustacea, Isopoda) hindgut. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 427-458. https://doi.org/10.3897/zookeys.801.22395
SI Figure 6. Stripcharts depicting individual measurements of the spatial density of apical membrane infoldings :
Raw data for the submitted manuscript: Response of the terrestrial crustacean Porcellio scaber and the mealworm Tenebrio molitor to agricultural microplastics exposure: comparison of nondegradable and biodegradable fossil-based mulching films
<p>We uploaded two datasets on the response of terrestrial crustacean Porcellio scaber and the mealworm Tenebrio molitor to agricultural microplastics exposed in soil for 3 weeks and 4 weeks, respectively. </p> <p>a) <strong>Dataset</strong> "Response of the terrestrial crustacean Porcellio scaber to agricultural microplastics in soil" contains data on: electron transfer system activity, haemocyte viability, and share of hyalinocytes, semigranulocytes and granulocytes in haemolymph. </p> <p>b) <strong>Dataset</strong> "Response of the mealworm Tenebrio molitor to agricultural microplastics in soil" contains data on: larval moult and growth and animal survival </p> <p>These datasets are linked to publication entitled: Response of the terrestrial crustacean Porcellio scaber and the mealworm Tenebrio molitor to agricultural microplastics exposure: comparison of nondegradable and biodegradable fossil-based mulching films. Methods are described in detail in publication. Manuscript under review. </p>
Supplementary material 1 from: Zidar P, Fišer Ž (2022) Avoidance behaviour toxicity tests should account for animal gregariousness: a case study on the terrestrial isopod Porcellio scaber. In: De Smedt P, Taiti S, Sfenthourakis S, Campos-Filho IS (Eds) Facets of terrestrial isopod biology. ZooKeys 1101: 87-108. https://doi.org/10.3897/zookeys.1101.76711
Table S1–S7
Figure 2 in Effects of combined treatment of cadmium and oxytetracycline on the terrestrial isopod Porcellio leavis
Figure 2. Histogram showing mean ± SD of Consumption Ratio (CR) (mg leaf/mg isopod. Day), AR (mg leaf/mg isopod. Day), AE % and ER (mg faeces/mg isopod. Day) of isopod Porcellio leavis in different weeks of study period.
Figure 6 from: Mrak P, Žnidaršič N, Tušek-Žnidarič M, Klepal W, Gruber D, Strus J (2012) Egg envelopes and cuticle renewal in Porcellio embryos and marsupial mancas. ZooKeys 176: 55-72. https://doi.org/10.3897/zookeys.176.2418
Figure 6 - Histochemical reaction for calcium – Alizarin red S. A No reaction in Porcellio scaber late marsupial manca B Positive control (red-pink) in adult Porcellio scaber cuticle. Bars: 10 µm.
Figure 4 from: Mrak P, Žnidaršič N, Tušek-Žnidarič M, Klepal W, Gruber D, Strus J (2012) Egg envelopes and cuticle renewal in Porcellio embryos and marsupial mancas. ZooKeys 176: 55-72. https://doi.org/10.3897/zookeys.176.2418
Figure 4 - Cuticle structure and renewal in Porcellio scaber prehatching late-stage embryo. A Swelled embryo inside the vitelline membrane (vm), prior to hatching. B Semithin section of the embryo peripheral region. The vitelline membrane is artificially removed. Clearly discernible exoskeletal cuticle (c), detached from the underlying hypodermis (hd). C, D, E TEM micrographs of exoskeletal cuticle in different regions of the same specimen, composed of three principal layers: the outermost thin electron dense epicuticle (ep), the middle exocuticle (ex) and the innermost endocuticle with several sublayers (en). The micrographs show features of cuticle renewal: cuticle detachment from the hypodermis, partial disintegration of proximal portion of endocuticle (*) and irregularly arranged electron dense particles on outer apical plasma membrane surface (white arrows). Pore canals (black arrow) in the endocuticle consist of electron lucent central part and electron dense margins C. Cuticular scales (sc) are fully elaborated and the exocuticle has the characteristic pattern of chitin-protein fibers arrangement D. Exocuticle is hardly discernible E. F TEM micrograph of completely structured sensillum transverse section in the hypodermis. Dendritic outer segments (*) and enveloping cells (white *). Bars: A 500 µm; B 10 µm; C, E 1 µm; D 0.5 µm; F 200 nm.
Figure 2 from: Mrak P, Žnidaršič N, Tušek-Žnidarič M, Klepal W, Gruber D, Strus J (2012) Egg envelopes and cuticle renewal in Porcellio embryos and marsupial mancas. ZooKeys 176: 55-72. https://doi.org/10.3897/zookeys.176.2418
Figure 2 - Structure of distal chorion (ch) and proximal vitelline membrane (vm), covering Porcellio scaber mid-stage embryo. A The mid-stage embryo with visible limb buds (lb) and midgut glands primordia (mg). B Semithin section of the embryo peripheral region. Chorion is separated from the embryo surface. The vitelline membrane is slightly detached from the embryo cells; * - a wider space between embryo surface and vitelline membrane. C, D TEM micrographs of one-layered chorion, including electron lucent "lacunae" (white arrow). E, F TEM micrographs of vitelline membrane, composed of three layers: main proximal homogenous layer (*), thin middle electron dense layer (white arrow) and superficial corrugated lucent layer (black arrow). Bars: A 200 µm; B 10 µm; C, E 0.5 µm; D, F 200 nm.
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