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36 results for “Eisenia”
Dataset of the manuscript "Assessing the influence of Eisenia andrei on the decomposition of Casuarina equisetifolia litter in vermicompost."
<p>Data generated during an experiment of decomposition of <em>Casuarina equisetifolia</em> litter by the application of vermicompost (VC) or the combination vermicompost + the earthworm <em>Eisenia andrei</em> (E).</p> <p>Six files are included:</p> <p>"<strong>readme.csv</strong>" is a file where we explain the meaning of each column (and in which units is expressed) in each of the other five files.</p> <p>"<strong>earthworm_N_biomass.csv</strong>" is a table with the number of <em>Eisenia andrei</em> individuals and the total earthworm fresh weight in each of the experimental units we sampled</p> <p><strong>"FTIR_spectra.csv" </strong>is a file with the raw spectral data we obtained from the litter by Fourier Transform Infrared spectroscopy combined with Attenuated Total Reflectance (FTIR-ATR). First column indicate the wavenumber (cm-1) and the other columns indicate the absorbance values of each litter sample for each wavenumber.</p> <p><strong>"litter_chemical_composition.csv"</strong> is a file with the raw data of the concentrations of different chemical elements measured in <em>C. equisetifolia</em> litter collected at different decomposition times.</p> <p><strong>"litter_mass_loss.csv"</strong> contains the dry weight data of the litter at time 0 and after each collection time, as well as the percentage of litter mass loss with time. .</p> <p>"<strong>mesofaunal_com.</strong><strong>csv</strong>" are the numbers of individuals of several groups of mesofaunal organisms (collembolans, mites, and others) we recovered in each of our experimental units.</p>
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).
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.
Fig. 14 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 14. Bayesian inference tree of the Asian Eisenia species using COI1 sequenes. Numbers above branches indicate Bayesian posterior probabilities.
Fig. 13 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 13. Maximum Likelihood tree of the Asian Eisenia species using COI1 sequenes. Numbers above branches indicate ML bootstrap support.
Fig. 12 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 12. Eisenia sp. setal arrangement. aa = distance between the ventral setal lines, ab = distance between the ventrolateral setal lines, cd = distance between the dorsolateral setal lines, dd = distance between the dorsal setal lines.
Fig. 11 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 11. Eisenia lagodechiensis (Michaelsen, 1910) setal arrangement. aa = distance between the ventral setal lines, ab = distance between the ventrolateral setal lines, cd = distance between the dorsolateral setal lines, dd = distance between the dorsal setal lines.
Fig. 10 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 10. Eisenia nordenskioldi nordenskioldi (Eisen, 1879) setal arrangement. aa = distance between the ventral setal lines, ab = distance between the ventrolateral setal lines, cd = distance between the dorsolateral setal lines, dd = distance between the dorsal setal lines.
Fig. 8 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 8. Eisenia nordenskioldi cf. pallida Malevic, 1956; setal arrangement of the Korean specimens. aa = distance between the ventral setal lines, ab = distance between the ventrolateral setal lines, cd = distance between the dorsolateral setal lines, dd = distance between the dorsal setal lines.
Fig. 3 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 3. Eisenia koreana (Zicsi, 1972) setal arrangement. aa = distance between the ventral setal lines, ab = distance between the ventrolateral setal lines, cd = distance between the dorsolateral setal lines, dd = distance between the dorsal setal lines.
Raw data for the manuscript: The influence of soil organic matter content and substance lipophilicity on the toxicity of pesticides to the earthworm Eisenia andrei
<p>Raw data obtained from toxicity tests with the earthworm <em>Eisenia andrei</em> exposed for 56 days to chlorpyrifos, lindane, cyproconazole, carbendazim and imidacloprid in artificial soils containing 10%, 5%, 2.5% sphagnum peat, and LUFA 2.2 soil. Tests were performed following OECD guideline 222. The file includes data on earthworm starting and ending weights, survival, and reproduction.</p>
Fig1 in Use of fresh or dried manure worm (Eisenia foetida) on the growth performance of juvenile of Clarias gariepinus high out in basin
Fig1: Evolution in weight of Clarias gariepinus fingerlings subjected to different treatments
Fig. 2. Eisenia vaga Blakemore, 2013b in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 2. Eisenia vaga Blakemore, 2013b; ventrolateral view of the clitellar region.
Fig. 5 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 5. Eisenia koreana (Zicsi, 1972) ventrolateral view of the clitellar region.
Fig. 7 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 7. Eisenia koreana (Zicsi, 1972) typhlosole. dv = dorsal vessel.
Fig. 4 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 4. Eisenia koreana (Zicsi, 1972) ventrolateral view of the fore-body.
Fig. 1 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 1. Aporrectodea trapezoides (Dugés, 1828); ventrolateral view of the clitellar region.
Fig. 6 in New data to the earthworm fauna of the Korean Peninsula with redescription of Eisenia koreana (Zicsi) and remarks on the Eisenia nordenskioldi species group (Oligochaeta, Lumbricidae)
Fig. 6. Eisenia koreana (Zicsi, 1972) nephridial bladder.
Raw data for the submitted manuscript: The Effect of Clay Type on the Toxicity of Carbendazim and Imidacloprid to the Earthworm Eisenia andrei in Artificial Soils
<p>Raw data obtained from toxicity tests with the earthworm <em>Eisenia </em><em>andrei </em>exposed for 56 days to carbendazim and imidacloprid in artificial soils created with kaolin and bentonite clay. Tests were performed following OECD guideline 222. The file includes data on earthworm starting and ending weights, survival, and reproduction.</p>
Biodegradable polymers boost reproduction in the earthworm Eisenia fetida
<p><strong>Background</strong>:</p> <p>The microbiome profiling analysis of the mentioned publication was conducted using the <a href="http://www.qiime2.org">QIIME2 </a>analysis plattform. In addition to the final results presented in the publication, this dataset provides access to selected QIIME2 data (artifacts and visualizations) in order to allow view/reuse of these data in other projects. Artifact (.qza) data can be used by the QIIME2 software, Visualizations (.qzv) data can be viewed by <a href="https://view.qiime2.org/">QIIME2view</a>. </p> <p>If you are interested in additional data, please contact Alfons R. Weig.</p> <p><strong>Description of the dataset:</strong></p> <ul> <li>Abundance table (not filtered): table.qza / table.qzv</li> <li>Representative sequences / ASVs (not filtered): representative_sequences.qza / representative_sequences.qzv</li> <li>Abundance table (filtered, see paper): table-filtered.qza / table-filtered.qzv</li> <li>Representative sequences / ASVs (filtered, see paper): representative_sequences-filtered.qza / representative_sequences-filtered.qzv</li> <li>Taxonomic classification: classification.qza / classification.qzv</li> <li>Taxonomic barplot (interactive): taxa-barplot.qzv</li> </ul>
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