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28 results for “hemolymph”

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zenodo48/100

DATASET: De novo assembly and functional annotation of the heart + hemolymph transcriptome in the Caribbean spiny lobster Panulirus argus

<p>The spiny lobster <em>Panulirus argus</em> is an ecologically relevant species in shallow water coral reefs and target of the most lucrative fishery in the greater Caribbean region. This study reports, for the first time, the heart + hemolymph transcriptome of the Caribbean spiny lobster<em> Panulirus argus</em> assembled from short Illumina 150&thinsp;bp PE raw reads. A total 80,152,094 raw reads were assembled using the Oyster River Protocol pipeline that aspires to become the standard protocol for <em>de novo</em> transcriptome assembly. The assembly resulted in a total of 254,773 transcripts. Functional gene annotation was conducted using the software package &#39;dammit&#39; that also aspires to become the standard protocol for <em>de novo</em> transcriptome annotation. Lastly, gene enrichment analyses were conducted using the Gene Ontology (GO), KEGG pathway analyses (Kaas), and KOG (WebMGA) databases. This resource will be of utmost importance in future research aiming at exploring the effect of local and regional anthropogenic disturbances as well as global climate change on the molecular physiology of this overexploited species.</p>

opencc-by-4.0Dec 2019View details →
zenodo40/100

Рис. 2. Продольный (А–Д) и поперечный (Е–З) среЗы череЗ наружный покров ноги моллюска с раЗными типами складок: А, Б – Широкие складки в виде плато, В, Г – длинные иЗвилистые складки, Д, Е – складки с округлыми и бокаловидными клетками в субЭпителиальном слое, Ж, З – слабовыраженные складки с больШими полостЯми (синусами) длЯ гемолимфы под субЭпителиальным слоем. МасШтабные линейки 200 мкм (А, В, Ж, З) и 100 мкм (Б, Г–Е). вК – клетки с вакуолЯми, сэ – субЭпителиальный слой, БК – бокаловиднаЯ клетка, сг – синусы длЯ гемолимфы, ф – фолликулы, а – ацинусы. Fig. 2. Saggital (А–Д) and transverse (Е–З) sections of pedal integument with different types of plicae: А, Б – broad plateau-shaped plicae, В, Г – long, tortuous plicae, Д, Е – plicae with round and goblet cells in the subepithelial layer, Ж, З – mild plicae with large cavities (sinuses) for hemolymph under subepithelial layer. Scale bars 200 µm (А, В, Ж, З) and 100 µm (Б, Г–Е). вК – cells with vacuoles, сэ – subepithelial layer, БК – goblet cell, сг – sinuses for hemolymph, ф – follicles, а – acini. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 2. Продольный (А–Д) и поперечный (Е–З) среЗы череЗ наружный покров ноги моллюска с раЗными типами складок: А, Б – Широкие складки в виде плато, В, Г – длинные иЗвилистые складки, Д, Е – складки с округлыми и бокаловидными клетками в субЭпителиальном слое, Ж, З – слабовыраженные складки с больШими полостЯми (синусами) длЯ гемолимфы под субЭпителиальным слоем. МасШтабные линейки 200 мкм (А, В, Ж, З) и 100 мкм (Б, Г–Е). вК – клетки с вакуолЯми, сэ – субЭпителиальный слой, БК – бокаловиднаЯ клетка, сг – синусы длЯ гемолимфы, ф – фолликулы, а – ацинусы. Fig. 2. Saggital (А–Д) and transverse (Е–З) sections of pedal integument with different types of plicae: А, Б – broad plateau-shaped plicae, В, Г – long, tortuous plicae, Д, Е – plicae with round and goblet cells in the subepithelial layer, Ж, З – mild plicae with large cavities (sinuses) for hemolymph under subepithelial layer. Scale bars 200 µm (А, В, Ж, З) and 100 µm (Б, Г–Е). вК – cells with vacuoles, сэ – subepithelial layer, БК – goblet cell, сг – sinuses for hemolymph, ф – follicles, а – acini.

opencc-by-4.0Dec 2018View details →
zenodo40/100

Рис. 6. Поперечные (А–Е, З, И) и продольный (Ж) среЗы череЗ органы пиЩеварительной системы моллюска: А – меШок кристаллического стебелька, Б, В – петли киШки, Г, Д – часть желудка с длинными складками на дорсальной части стенки, Е, З – петли киШки с тифлоЗолем, И – боковаЯ часть тифлоЗолЯ. МасШтабные линейки 300 мкм (Е, З, И), 200 мкм (А, В, Г, Д), 40 мкм (Б). мс – меШок кристаллического стебелька, Кс – кристаллический стебелек, Р – реснички, т – тифлоЗоль, lp – lamina propria, г – гемолимфа. Fig. 6. Transverse (А–Е, З, И) and saggital (Ж) sections of the digestive organs: А – crystalline style sac, Б, В – intestinal limbs, Г, Д – part of the stomach with long plicae on the dorsal wall, Е, З – intestinal limbs with typhlosole, И – lateral part of the typhlosole. Scale bars 300 µm (Е, З, И), 200 µm (А, В, Г, Д), 40 µm (B). мс – style sac, Кс – crystalline style, Р – cilia, т – typhlosole, lp – lamina propria, г – hemolymph. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 6. Поперечные (А–Е, З, И) и продольный (Ж) среЗы череЗ органы пиЩеварительной системы моллюска: А – меШок кристаллического стебелька, Б, В – петли киШки, Г, Д – часть желудка с длинными складками на дорсальной части стенки, Е, З – петли киШки с тифлоЗолем, И – боковаЯ часть тифлоЗолЯ. МасШтабные линейки 300 мкм (Е, З, И), 200 мкм (А, В, Г, Д), 40 мкм (Б). мс – меШок кристаллического стебелька, Кс – кристаллический стебелек, Р – реснички, т – тифлоЗоль, lp – lamina propria, г – гемолимфа. Fig. 6. Transverse (А–Е, З, И) and saggital (Ж) sections of the digestive organs: А – crystalline style sac, Б, В – intestinal limbs, Г, Д – part of the stomach with long plicae on the dorsal wall, Е, З – intestinal limbs with typhlosole, И – lateral part of the typhlosole. Scale bars 300 µm (Е, З, И), 200 µm (А, В, Г, Д), 40 µm (B). мс – style sac, Кс – crystalline style, Р – cilia, т – typhlosole, lp – lamina propria, г – hemolymph.

opencc-by-4.0Dec 2018View details →
zenodo40/100

Figure 7 in Biochemical composition of the hemolymph, hepatopancreas, ovary, and muscle during ovarian maturation in the penaeid shrimps Fenneropenaeus merguiensis and F. penicillatus (Crustacea: Decapoda)

Figure 7. Comparison of protein, carbohydrate, and lipid in hepatopancreas, hemolymph, and ovary of immature, maturing, and fully mature females of two species.

opencc-by-4.0Apr 2013View details →
zenodo40/100

Figure 6 in Biochemical composition of the hemolymph, hepatopancreas, ovary, and muscle during ovarian maturation in the penaeid shrimps Fenneropenaeus merguiensis and F. penicillatus (Crustacea: Decapoda)

Figure 6. Mean ± standard deviation of proteins, lipids, and carbohydrates in the hepatopancreas of F. penicillatus in different stages of maturation. Logarithmic hepatopancreas protein, lipid, and carbohydrate regressed against logarithmic GSI. Means with different letters are significantly different at P &lt;0.05.

opencc-by-4.0Apr 2013View details →
zenodo40/100

Figure 3 in Biochemical composition of the hemolymph, hepatopancreas, ovary, and muscle during ovarian maturation in the penaeid shrimps Fenneropenaeus merguiensis and F. penicillatus (Crustacea: Decapoda)

Figure 3. Mean ± standard deviation of proteins, lipids, and carbohydrates in the ovaries of F. merguiensis in different stages of maturation. Logarithmic ovary protein, lipid, and carbohydrate regressed against logarithmic GSI. Means with different letters are significantly different at P &lt;0.05.

opencc-by-4.0Apr 2013View details →
zenodo40/100

Figure 1. Prostaglandin E 2 in The role of a novel Wolbachia (Rickettsiales: Anaplasmataceae) synthetic peptide, WolFar, in regulating prostaglandin levels in the hemolymph of Acheta domesticus (Orthoptera: Gryllidae)

Figure 1. Prostaglandin E 2 activity of Acheta domesticus at different postinjection times relative to the concentrations of WolFar applied. Each point represents the mean ± SE.

opencc-by-4.0Jun 2018View details →
zenodo40/100

Figure 2 in The role of a novel Wolbachia (Rickettsiales: Anaplasmataceae) synthetic peptide, WolFar, in regulating prostaglandin levels in the hemolymph of Acheta domesticus (Orthoptera: Gryllidae)

Figure 2. Formation of nodules in the internal system and fat body of Acheta domesticus following injections of 100% concentration of WolFar. The red triangles indicate the positions of the nodules. A: Negative control; B: at 24 h; C: at 48 h; D: at 72 h.

opencc-by-4.0Jun 2018View details →
zenodo36/100

Leeches Baicalobdella torquata feed on hemolymph but have a low effect on the cellular immune response of amphipod Eulimnogammarus verrucosus from Lake Baikal

Open the record for dataset details and reuse information.

opencc-by-4.0Mar 2024View details →
zenodo36/100

Figs 1–3 in Effects of diet and feed composition on antibacterial activity of hemolymph of saproxylic beetles: A case study of Zophobas atratus (Coleoptera: Tenebrionidae)

Figs 1–3. Results of disk-diffusive test. Effects of artificial fungi-based and standard

opencc-by-4.0Jul 2022View details →
zenodo36/100

Figs 6, 7 in Effects of diet and feed composition on antibacterial activity of hemolymph of saproxylic beetles: A case study of Zophobas atratus (Coleoptera: Tenebrionidae)

Figs 6, 7. Results of photometric bacterial test. Viability of gram-negative E. сoli ATCC

opencc-by-4.0Jul 2022View details →
zenodo36/100

Figs 4, 5 in Effects of diet and feed composition on antibacterial activity of hemolymph of saproxylic beetles: A case study of Zophobas atratus (Coleoptera: Tenebrionidae)

Figs 4, 5. Results of photometric bacterial test. Dynamics of effects of artificial and

opencc-by-4.0Jul 2022View details →
dryad32/100

Madagascar Hissing Cockroach hemolymph PO2, PCO2, and gas exchange parameters

<p>This data set contains <em>in vivo </em>measurements of<em> </em>hemolymph PO<sub>2</sub> and PCO<sub>2</sub> made on Madagascar hissing cockroaches (<em>Gromphadorhina portentosa</em>) using implanted micro fiber optic sensors (optodes). In addition, rate of CO<sub>2</sub> release, ventilation frequency, and durations of the tri-phasic discontinuous gas exchange cycle associated with these measurements are also recorded. All measurements were performed while the cockroaches were breathing either normoxic and normocapnic air, hypoxic air (10 kPa PO<sub>2</sub>), or hypercapnic air (2 kPa PCO<sub>2</sub>) at 22 ºC.</p>

opencc-zeroDec 2021View details →
dryad32/100

Madagascar Hissing Cockroach hemolymph PO2, PCO2, and gas exchange parameters

Open the record for dataset details and reuse information.

publicJan 2022View details →
dryad32/100

The effects of levamisole in Greater Wax Moth larvae hemolymph

Open the record for dataset details and reuse information.

publicJun 2025View details →
zenodo28/100

Antimicrobial activity of G. mellonella hemolymph after infection with P. entomophila

<p>This file contains raw data for Fig. 4 DCI (2023) 147, 104749, data are available on request. The work was financed by National Science Centre, project number 2020/37/B/NZ6/00167</p>

restrictedcc-by-4.0Dec 2023View details →
zenodo28/100

Figure 4 in Biochemical composition of the hemolymph, hepatopancreas, ovary, and muscle during ovarian maturation in the penaeid shrimps Fenneropenaeus merguiensis and F. penicillatus (Crustacea: Decapoda)

Figure 4. Mean ± standard deviation of proteins, lipids, and carbohydrates in the ovaries of F. penicillatus in different stages of maturation. Logarithmic ovary protein, lipid, and carbohydrate regressed against logarithmic GSI. Means with different letters are significantly different at P &lt;0.05.

opencc-by-4.0Apr 2013View details →
zenodo28/100

Figure 5 in Biochemical composition of the hemolymph, hepatopancreas, ovary, and muscle during ovarian maturation in the penaeid shrimps Fenneropenaeus merguiensis and F. penicillatus (Crustacea: Decapoda)

Figure 5. Mean ± standard deviation of proteins, lipids, and carbohydrates in the hepatopancreas of F. merguiensis in different stages of maturation. Logarithmic hepatopancreas protein, lipid, and carbohydrate regressed against logarithmic GSI. Means with different letters are significantly different at P &lt;0.05.

opencc-by-4.0Apr 2013View details →
geo24/100

Differential transcriptional expression by Babesia bovis during parasite development within bovine erythrocytes and tick hemolymph

GEO Series GSE144066. Babesia bovis. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenOct 2020View details →
geo24/100

MicroRNAs circulate in the hemolymph of Drosophila and accumulate relative to tissue microRNAs in an age-dependent manner [miRNA]

GEO Series GSE77038. Drosophila melanogaster. 24 samples. Type: Non-coding RNA profiling by high throughput sequencing.

openGEO-OpenFeb 2017View details →

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