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216 results for “Magna”

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zenodo44/100

Data for: Polystyrene nanoplastics differentially influence the outcome of infection by two microparasites of the host Daphnia magna

<p>This dataset supports the findings of the study 'Polystyrene nanoplastics differentially influence the outcome of infection by two microparasites of the host <em>Daphnia magna</em>', published in Philosophical Transactions of the Royal Society B (https://doi.org/10.1098/rstb.2022.0013).</p>

opencc-by-4.0Jun 2022View details →
zenodo44/100

Data for: Sequential infection of Daphnia magna by a gut microsporidium followed by a haemolymph yeast decreases transmission of both parasites

<p>This dataset supports the findings presented in:<br> <br> Manzi, F., Halle, S., Seemann, L., Ben-Ami, F., &amp; Wolinska, J. (2021). Sequential infection of <em>Daphnia magna</em> by a gut microsporidium followed by a haemolymph yeast decreases transmission of both parasites.&nbsp;<em>Parasitology,</em>&nbsp;1-42. doi:10.1017/S0031182021001384</p>

opencc-by-4.0Aug 2021View details →
zenodo40/100

Figs 162–169. Artema magna Roewer, 1960. 162–164 in Daddy-long-leg giants: revision of the spider genus Artema Walckenaer, 1837 (Araneae, Pholcidae)

Figs 162–169. Artema magna Roewer, 1960. 162–164. Male chelicerae (ZMMU, Pakistan, Baluchistan Province, Quetta), lateral and frontal views (arrow: distinctive median projection). 165–166, 168. Female abdomen (NHMG A 196, Afghanistan, Konar Valley): lateral, dorsal, and ventral views. 167, 169. Epigynum and anterior epigynal projections (AEP): lateral and ventral views. Scale lines: 162–164, 167, 169 = 0.5 mm; 165–166, 168 = 1 mm.

opencc-by-3.0Dec 2017View details →
zenodo40/100

Figs 155–161. Artema magna Roewer, 1960. 155 in Daddy-long-leg giants: revision of the spider genus Artema Walckenaer, 1837 (Araneae, Pholcidae)

Figs 155–161. Artema magna Roewer, 1960. 155. Female prosoma (NHMG A 196, Afghanistan, Konar Valley). 156–158. Male left pedipalp (ZMMU, Pakistan, Baluchistan Province, Quetta): prolateral, dorsal, and retrolateral views. 159–161. Male left bulb and procursus: prolateral, dorsal, and retrolateral views. Scale lines: 155–158 = 1 mm; 159–161 = 0.5 mm.

opencc-by-3.0Dec 2017View details →
zenodo40/100

Metagenome assemblies and metagenome-assembled genomes from the Daphnia magna microbiota

<p>Metagenome assemblies generated from raw reads not mapping to the Daphnia magna genome for six samples assembled individually (G4, G14, S1-S4) and a coassembly of all six samples (a_assembly)&nbsp;using metaSPAdes in SPAdes v3.14. Assemblies can be found in metagenome_assemblies.zip.</p> <p>Metagenome-assembled genomes generated using VAMB v3.0.2 (vamb_bins.zip) and ProxiMeta (proximeta_bins.zip). These MAGs were taxonomically identified using GTDB-Tk v1.3 and quality checked using CheckM v1.1. Outputs from GTDB-Tk and CheckM can be found in the .tsv and .tab files, respectively.</p>

opencc-by-4.0Jan 2021View details →
zenodo40/100

Spatially mapping the baseline and bisphenol-A exposed Daphnia magna lipidome using desorption electrospray ionisa-tion - mass spectrometry

<p>Data from desorption electrospray ionisation - mass spectrometry of&nbsp;<em>Daphnia magna</em>&nbsp;tissue section from control and daphnids exposed to 5&nbsp;ppm of bisphenol A over their 7<sup>th</sup> adult instar,&nbsp;specifically four sampling points; 8, 24, 48 and 72 h after the 6<sup>th</sup> brood, as well as data acquired from a blank DESI slide.</p> <p>Data is provided in the form of&nbsp;*imzML files with the associated *.ibd of the same name.</p>

opencc-by-4.0Nov 2021View details →
dryad40/100

Data for fitness analyses used in: Environmentally-induced DNA methylation is inherited across generations in water fleas (Daphnia magna)

<p><span>Data of</span> fitness effects of environmental stressors on <em>Daphnia magna</em> over multiple generations. Ages of first and second reproduction, and sizes of first and second brood were measured and used to calculate replacement rate. This data is part of a study on whole-genome bisulphate sequencing on individual <em>Daphnia magna</em> to assess whether environmentally-induced DNA methylation can persist for up to four generations.</p>

opencc-zeroMar 2022View details →
zenodo40/100

Glechoma hederacea L. var. magna (Mérat) Lej. (BR0000010199008)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Glechoma hederacea L. var. magna (Mérat) Lej. (BR0000010198971)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Glechoma hederacea L. var. magna (Mérat) Lej. (BR0000010199824)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Fig. 1 in Genetic Diversity In Peripheral And Central Populations Of Rusty-Necklaced Partridge (Alectoris Magna) Based On Mitochondrial And Microsatellite Dna

Fig. 1. Rusty-necklaced partridge sampling sites: 1 = Lanzhou, 2 = Jingyuan, 3 = Haiyuan, 4 = Dingxi, 5 = Huining, 6 = Wushan, 7 = Beidao, 8 = Lixian

opencc-by-4.0May 2009View details →
zenodo40/100

Figs. 343–350. Escaphiella magna, new species. 343 in The American Goblin Spiders Of The New Genus Escaphiella (Araneae, Oonopidae)

Figs. 343–350. Escaphiella magna, new species. 343. Male, habitus, dorsal view. 344. Male, carapace, dorsal view. 345. Male, carapace, posterior view. 346. Male, sternum, ventral view. 347. Male, abdomen, anterior view. 348. Male, epigastric region, ventral view. 349. Male, epigastric region, depression to side of sperm pore, ventral view. 350. Female, epigynum, ventral view.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Figs. 359–367. Escaphiella magna, new species. 359 in The American Goblin Spiders Of The New Genus Escaphiella (Araneae, Oonopidae)

Figs. 359–367. Escaphiella magna, new species. 359. Male, habitus, dorsal view. 360. Same, ventral view. 361. Male, abdomen, ventral view. 362. Left male palp, dorsal view. 363. Same, prolateral view. 364. Same, ventral view. 365. Same, retrolateral view. 366. Male, epigastric region, ventral view. 367. Female, epigynum, ventral view.

opencc-by-4.0Sep 2009View details →
zenodo40/100

Fig. 4. Apseudomorpha magna n in A new species of the genus Apseudomorpha Miller (Crustacea, Peracarida, Tanaidacea) from Korea

Fig. 4. Apseudomorpha magna n. sp. Female: A, pleopod 1; B, uropod. Male: C, habitus, dorsal; D, habitus, lateral; E, chelipd. Scale bars: A, 0.05 mm; B, 0.1 mm; C, D, 0.5 mm; E, 0.2 mm.

opencc-by-4.0Oct 2016View details →
zenodo40/100

Fig. 2. Apseudomorpha magna n in A new species of the genus Apseudomorpha Miller (Crustacea, Peracarida, Tanaidacea) from Korea

Fig. 2. Apseudomorpha magna n. sp., female. A, palp of left mandible; B, pars incisiva, lacinia mobilis and setiferous lobe of left mandible; C, pars molaris of left mandible; D, pars incisiva, lacinia mobilis and setiferous lobe of right mandible; E, pars molaris of right mandible; F, maxillule; G, maxilla; H, maxilliped; I, epignath. Scale bars: A­H, 0.05 mm; I, 0.1 mm.

opencc-by-4.0Oct 2016View details →
zenodo40/100

Fig. 1. Apseudomorpha magna n in A new species of the genus Apseudomorpha Miller (Crustacea, Peracarida, Tanaidacea) from Korea

Fig. 1. Apseudomorpha magna n. sp., female. A, habitus, dorsal; B, rostrum; C, last pereonite and pleon; D, antennule; E, antenna; F, labial palp. Scale bars: A, 0.5 mm; B, D, E, 0.1 mm; C, 0.2 mm; F, 0.05 mm.

opencc-by-4.0Oct 2016View details →
zenodo40/100

Fig. 3. Apseudomorpha magna n in A new species of the genus Apseudomorpha Miller (Crustacea, Peracarida, Tanaidacea) from Korea

Fig. 3. Apseudomorpha magna n. sp., female. A, cheliped; B, pereopod 1; C, pereopod 2; D, pereopod 3; E, pereopod 4; F, pereopod 5; G, pereopod 6. Scale bars: A, 0.02 mm; B­G, 0.2 mm.

opencc-by-4.0Oct 2016View details →
zenodo40/100

Figure 1 in Morphological examination of the resting egg structure of 3 cladoceran species [Ceriodaphnia quadrangula (O. F. Müller, 1785), Daphnia longispina (O. F. Müller, 1776), and D. magna Straus, 1820]

Figure 1. Resting egg photos of 3 species (Daphnia magna, D. longispina, Ceriodaphnia quadrangula). A) SEM photo of C. quadrangula, B) SEM photo of D. longispina, C) SEM photo of D. magna, D) light microscope photo of C. quadrangula, E) light microscope photo of D. longispina, F) light microscope photo of D. magna.

opencc-by-4.0Jan 2014View details →
zenodo40/100

Figure 5 in Ecotoxicological investigation of cyanobacterial crude extracts to Daphnia magna under subchronic test conditions

Figure 5. Filtration (A) and ingestion (B) rates of Daphnia magna after exposing to cyanobacterial crude extracts. Asterisks indicate significant differences by the Kruskal-Wallis test, followed by the Wilcoxon rank-sum test for multiple comparison (*P ≤.05).

opencc-by-4.0Sep 2020View details →
zenodo40/100

Figure 2 in Ecotoxicological investigation of cyanobacterial crude extracts to Daphnia magna under subchronic test conditions

Figure 2. The degradation of eggs and neonates (red arrows) of the Daphnia magna gravid females exposed to cyanobacterial crude extracts. A: dead eggs, B: dead neonate, C: malformation of the tail, and D: normal tail of control Daphnia magna.

opencc-by-4.0Sep 2020View details →

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