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14 results for “Loligo”
Figure 1 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 1. Location and sampling in Banyuasin Coastal Waters. The black circle indicated the sampling position in 2018 while the white circle indicated the sampling position in 2019. Sampling was conducted using a stationary lift net.
Figure 3 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 3. The length at first capture (LC50%), critical value (½L∞) and length at maturity (Lm) for L. chinensis from Banyuasin Coastal Waters of South Sumatra. The blue dot indicates the cumulative observation and the red line indicates the cumulative prediction.
Figure 5 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 5. Variation in relative condition factor (Kn) of L. chinensis in Banyuasin Coastal Waters of South Sumatra. The Kn value for each specimen is greater than the critical point value (Kn = 0.56) indicating good conditions of wellbeing.
Figure 4 in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 4. Length-weight relationship (LWR) for L. chinensis in Banyuasin Coastal Waters of South Sumatra. The LWR graphs can be expressed in terms of the power (A) and logarithmic (B) equations. Both of these equations produce the same values of R2 (model performance parameter) and b (growth pattern parameter).
Figure 2. Pareto diagram for L in Growth aspect of squid (Loligo chinensis) from the Banyuasin Coastal Waters, South Sumatra, Indonesia
Figure 2. Pareto diagram for L. chinensis from Banyuasin Coastal Waters of South Sumatra. This diagram indicated a graphical overview of frequency distribution in ranking order from the most frequent to the least frequent. The first length group at X-axis (101-110 mm) showed the most frequently that the specimen was found.
Figure 2 in New insights on the external features of egg capsules and embryo development in the squid Loligo vulgaris
Figure 2. Aspect of the five (I–V) egg capsule stages preserved in 70% ethanol.
Octopus vulgaris, Sepia officinalis, Loligo vulgaris and Illex coindetii early life phases Light Sheet Fluerescence Microscopy (LSFM) 3D scans.
<p>Acronyms: OV: <em>Octopus vulgaris</em>, SO: <em>Sepia officinalis</em>, LV: <em>Loligo vulgaris</em>, IC: <em>Illex coindetii</em>, DPH: Days Post-Hatching.</p> <p>Two detection objectives were used, depending on sample size, a 4x/0.28 NA Olympus XLFLUOR4x/340 objective (0, 5, 10, 19 DPH <em>Octopus vulgaris</em> individuals,<em> Loligo vulgaris</em> and<em> Illex coindetii</em>) and a Nikon 10x/0.5 NA CFI Plan Apochromat 10xC Glyc (Rest of the samples). For illumination, two 4x/0.95 NA Nikon CFI Plan Apo Lambda 4x were used when using the 10x detection objective and two 4x/0.13 NA Nikon Plan Fluor illumination objectives were used when using the 4x detection objective. </p> <p>Microscope: MuVi SPIM (Luxendo), LCS SPIM (Luxendo, only <em>Sepia officinalis</em> and 60 DPH <em>Octopus vulgaris</em> individuals).</p> <p>All the data has been scaled in order to reduce file sizes. Full size stacks can be requested to dgvilar@gmail.com.</p>
Stomach content DNA from Loligo vulgaris paralarvae in W Iberian Peninsula waters
<p>This dataset contains the DNA sequences obtained from 31 Loligo vulgaris paralarvae ranging from 1.61 to 6.01 mm that were between two and 28 days old. Digestive system of each paralarvae was dissected and DNA was extracted amplifying 300 bp fragment of the mitochondrial cytochrome c oxidase subunit I gene.</p> <p>The generated DNA fragments (DNA libraries) were sequenced with MiSeq Reagent Kit v3 in the lllumina MiSeq platform, using 300bp paired-end sequencing reads.</p> <p> </p>
FIGURE 7. Nectalia loligo Haeckel, 1888b in A review of the physonect siphonophore genera Halistemma (Family Agalmatidae) and Stephanomia (Family Stephanomiidae)
FIGURE 7. Nectalia loligo Haeckel, 1888b, Plate XIII. (See Haeckel, 1888b for legend and annotations).
Data from: Multiple mating, paternity and complex fertilisation patterns in the chokka squid Loligo reynaudi
Open the record for dataset details and reuse information.
Figure 4 in New insights on the external features of egg capsules and embryo development in the squid Loligo vulgaris
Figure 4. Comparison of the chronological appearance of selected organs in seven loliginid species from previous studies (Arnold 1965; Segawa et al. 1988; Baeg et al. 1992; Guerra et al. 2001; Barón 2002) and the present study. The embryonic stages of Arnold were used because these stages were employed in previous comparisons (Guerra et al. 2001). Abbreviations: EC, eye vesicle closed; EI, eye vesicle invagination begins; FF, funnel formation begins; HO, Hoyle's organ appears; IS, ink sack appears; PED, fully establish eyelid; PL, primary lip; PS, primordia of suckers appear; PSG, primordia of shell gland appear; RP, retinal pigmentation begins; SGC, shell gland closed; ST, statocyst first presence; and VCH, ventral mantle chromatophores appear.
Figure 3 in New insights on the external features of egg capsules and embryo development in the squid Loligo vulgaris
Figure 3. Embryonic development stages proposed in this study (Arabic numerals) compared with the stages of Naef (Roman numerals), 30× natural size for microphotographs 1–8. Scanning electron microphotography of an embryo at stage 8 (bottom right side). Details showing the closure of the eyelid fold with a small pore (top right side).
Figure 1 in New insights on the external features of egg capsules and embryo development in the squid Loligo vulgaris
Figure 1. Cephalopod egg capsule aggregator (CECA) for Loligo vulgaris. Structure of the CECA using a rope (diameter 1.2 cm), a buoy to extend the rope and a weight to fix the structure in place. The first 2 m of the rope from the bottom contained five knots and 16 plastic flanges placed among these knots (to increase the attachment surface). The figure also shows details of the egg capsules attached to the rope and flanges.
Molecular characterization of cell types in the squid Loligo vulgaris
GEO Series GSE200108. Loligo vulgaris. 2 samples. Type: Expression profiling by high throughput sequencing.
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