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1,006 results for “Oligochaeta”

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Fig. 2. Haplotype network calculated from the E in Molecular assessment of commercial and laboratory stocks of Eisenia spp. (Oligochaeta: Lumbricidae) from South Africa

Fig. 2. Haplotype network calculated from the E. andrei COI haplotypes found in the South African earthworm groups investigated. The size of the circles is proportional to the number of earthworms sharing the same haplotype. The numbers on the branches indicate the positions of mutations on the COI sequences, mv1 represents a median vector (intermediate haplotypes, not found in this study).

opencc-by-4.0Dec 2013View details →
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Fig. 1 in Molecular assessment of commercial and laboratory stocks of Eisenia spp. (Oligochaeta: Lumbricidae) from South Africa

Fig. 1. Neighbour-joining tree based on the K2P method. Bootstrap support obtained for specific nodes are reported. Genbank accession numbers or BOLD process IDs are provided in brackets for the sequences downloaded from either Genbank or BOLD. Allolobophoridella eiseni and Microscolex phosphoreus were included as outgroups. Asterisk indicates dubious E. andrei sequences from BOLD.

opencc-by-4.0Dec 2013View details →
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Figs 2–5. 2–3 in New Earthworm Species And Records From Albania (Oligochaeta, Lumbricidae)

Figs 2–5. 2–3. Dendrobaena luraensis sp. n.: 2 = setal ratio, 3 = ventrolateral view of the anterior part of the body. 4–5. Octodrilus albanicus sp. n.: 4 = setal ratio, 5 = ventrolateral view of the anterior part

opencc-by-4.0Aug 2012View details →
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Fig. 5 in The Alternative Distribution Of Related Earthworms Aporrectodea Caliginosa And A. Trapezoides (Oligochaeta, Lumbricidae) In Ukraine As A Case Of Geographical Parthenogenesis

Fig. 5. Changes in the proportion of A. trapezoides in A. caliginosa s. l. sample sets depending on geographical longitude.

opencc-by-4.0Dec 2021View details →
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Fig. 3. A. caliginosa–A in The Alternative Distribution Of Related Earthworms Aporrectodea Caliginosa And A. Trapezoides (Oligochaeta, Lumbricidae) In Ukraine As A Case Of Geographical Parthenogenesis

Fig. 3. A. caliginosa–A. trapezoides specimens ratio in A. caliginosa s. l. sample sets. Black filling — A. caliginosa, cross-hatching — A. trapezoids.

opencc-by-4.0Dec 2021View details →
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FIG. 4 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France

FIG. 4. — Some examples of endemic earthworm species sampled in Corsica and their habitats (to their right): A, Scherotheca portonana L4 Qiu & Bouché, 1998; B, alpine pasture at Col de Vergio (Bouché#466); C, Scherotheca albomaculata Qiu & Bouché, 1998; D, open Mediterranean chaparral at Sainte-Lucie de PortoVecchio (Bouché#414); E, Eumenescolex emiliae L1 Qiu & Bouché, 1998; F, Pinus laricio L. forest at Zonza (Bouché#2932); G, Hormogaster insularis Bouché, 1970; H, Quercus suber L. open wood at Volpajola (Bouché#480). Scale bars: 5 cm.

opencc-zeroSep 2022View details →
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FIG. 2 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France

FIG. 2. — Bayesian inference of the phylogenetic relationships of earthworms from Corsica based on their COI sequences. Species-level genetic lineages (as delimited by ASAP, barcode gap analysis and morphological data) are shown as black triangles in order to facilitate visualization and to display the amount of intra-lineage genetic divergence (indicated by the height of the triangle). Green circles: posterior probability values over 90; all the species-level clades showed values close to 100.

opencc-zeroSep 2022View details →
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FIG. 1 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France

FIG. 1. — Distribution map of the sampling localities in Corsica Island. Locality codes refer to Table 1. Map base: Qgis.

opencc-zeroSep 2022View details →
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FIG. 5 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France

FIG. 5. — Observed and estimated species diversity of earthworms in the island of Corsica: A, incidence-based rarefaction and extrapolation curves of species numbers;B, Chao asymptotic estimator of species numbers. The figure compares the results obtained when considering all species-level lineages obtained with DNA barcodes (All), when considering non-cryptic lineages only (NC) and when considering all endemic lineages (End). Solid lines represent rarefaction curves, whereas dashed lines represent extrapolation curves; shaded areas are 95% and error bars confidence intervals based on a bootstrap with 200 replications.

opencc-zeroSep 2022View details →
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FIG. 3 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France

FIG. 3. — Graphical representation of the number of earthworm species known from Corsica. Rectangle surfaces are proportional to species numbers.

opencc-zeroSep 2022View details →
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Fig. 3 in Pristina multiseta sp. nov. (Annelida: Clitellata: Oligochaeta: Naididae: Pristininae) from Paddy Fields in Japan

Fig. 3. Parasagittal section of genital segments of Pristina multiseta sp. nov. from Shizukuishi Town, Iwate Prefecture, Japan.

opencc-by-4.0Apr 2022View details →
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Fig. 2 in Pristina multiseta sp. nov. (Annelida: Clitellata: Oligochaeta: Naididae: Pristininae) from Paddy Fields in Japan

Fig. 2. Chaetae of Pristina multiseta sp. nov. from Shizukuishi Town, Iwate Prefecture, Japan. A, Proximal part of a dorsal chaetal bundle in an alimentary segment; B, dorsal chaeta in an anterior segment; C and D, distal ends of dorsal chaetae; E, ventral chaeta in II; F, the same in III; G, the same in IV; H, the same in V; I, the same in VI; J, the same in VII; K, the same in XX. All are based on mature specimens.

opencc-by-4.0Apr 2022View details →
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Fig. 4 in Pristina multiseta sp. nov. (Annelida: Clitellata: Oligochaeta: Naididae: Pristininae) from Paddy Fields in Japan

Fig. 4. Pristina multiseta sp. nov. from Shizukuishi Town, Iwate Prefecture, Japan. A, Horizontal section in VI–VIII, showing stomach in VIII; B, sagittal section of male duct; C, sagittal section of atrium, showing spiral vessels (arrows) surrounding the ectal part of atrium.

opencc-by-4.0Apr 2022View details →
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Fig. 1 in Pristina multiseta sp. nov. (Annelida: Clitellata: Oligochaeta: Naididae: Pristininae) from Paddy Fields in Japan

Fig. 1. Pristina multiseta sp. nov. from Shizukuishi Town, Iwate Prefecture, Japan. A, Lateral view of anterior segments (holotype); B–D, variation of prostomiums; E, sagittal section of anterior segments; F, longitudinal section of gut in VIII, left side anterior.

opencc-by-4.0Apr 2022View details →
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Figure 4. Right IX in A New Genus and Species of Earthworm (Oligochaeta: Megascolecidae) from Semi-Arid Australia

Figure 4. Right IX spermatheca, diverticulum dissected from bodY wall of Aridulodrilus molesworthae gen. et sp. nov.

opencc-by-4.0Nov 2021View details →
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Fig. 1. Type RNHL 1809 in Extinction of Japan's first formally described earthworm (Horst, 1883) (Annelida, Oligochaeta, Megadrilacea, Megascolecidae).

Fig. 1. Type RNHL 1809 of Amynthas japonicus in Leiden (courtesy of J. Bleeker Sept., 2016). This is the only known specimen and image of this Japanese species (cf. M. sieboldi – http://www. geocities.jp/at_mocha/mimizu/sieboldi-3.html).

opencc-by-4.0Feb 2019View details →
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Fig. 3 in Extinction of Japan's first formally described earthworm (Horst, 1883) (Annelida, Oligochaeta, Megadrilacea, Megascolecidae).

Fig. 3. Historical Nagasaki (with Dejima island) around the time of collection (from Siebold's Nippon, 1897; archive.org/ details/nipponarchivzur00siebgoog Wikipedia CC-BY).

opencc-by-4.0Feb 2019View details →
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Fig. 2 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia

Fig. 2. Amynthas triatmowidii, new species, holotype, MZB. Oli 0067. A, spermathecal pores (sp) B, spermathecae, right side in vii–ix (amp = ampulla; dv = diverticulum) C, prostate gland D, male pore region (mp = male pore) E, intestinal caecum. Scale bars = 1 mm.

opencc-by-4.0Apr 2024View details →
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Fig. 1 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia

Fig. 1. The map of Lake Kalimpa'a in Lore Lindu National Park, Sulawesi (a solid circle indicates the sampling locality).

opencc-by-4.0Apr 2024View details →
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Fig. 3 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia

Fig. 3. Amynthas castaneus from Lore Lindu National Park, Central Sulawesi (UNTAD. Oli 0014). A, spermathecal pores (sp) B, spermathecae, right side in vii–ix (amp = ampulla; dv = diverticulum) C, prostate gland D, male pore region (mp = male pore, gm = genital markings) E, intestinal caecum. Scale bars = 1 mm.

opencc-by-4.0Apr 2024View details →

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