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36 results for “Eisenia”
Santa Barbara Coastal site, station Santa Cruz Island, Diablo, Santa Barbara Channel, study of plant cover of Eisenia arborea in units of percent on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Santa Barbara Coastal (SBC) contains plant cover of Eisenia arborea measurements in percent units and were aggregated to a yearly timescale.
FIGURE 3. E in Review of the Eisenia muganiensis (Michaelsen, 1910) species group with description of two new species (Oligochaeta: Lumbricidae)
FIGURE 3. E. malekae sp. nov. A. Setal arrangement. B. Anterior body with clitellar region, lateral view. Mp = male pore, Tb = tubercle. Scale bar = 1 mm.
FIGURE 2 in Review of the Eisenia muganiensis (Michaelsen, 1910) species group with description of two new species (Oligochaeta: Lumbricidae)
FIGURE 2. Eisenia kontschani sp. nov. A. Setal arrangement. B. Anterior body with clitellar region, lateral view. Mp = male pore, Tb = tubercle. Scale bar = 1 mm.
Reproduction, growth and oxidative stress in the earthworm Eisenia andrei exposed to conventional and biodegradable mulching film microplastics
<p>Dataset on Earthworm (<em>Eisenia andrei</em>) exposed to <span>of low-density polyethylene microplastics (PE-MP) and polybutylene adipate terephthalate biodegradable microplastics (PBAT-BD-MP) originating from mulching films. The study utilized seven concentrations (0, 0.005, 0.05, 0.1, 0.5, 1, and 5% w/w) in five replicates. Survival, growth, and oxidative stress responses of the earthworms were analysed after four weeks of exposure. Measured biomarker responses were superoxide dismutase, catalase, glutathione reductase, glutathione S-transferase, glutathione, and lipid peroxidation. Additionally, the Integrated Biomarker Response Index (IBR) was conducted to assess the overall oxidative stress status of the earthworms. The number of biomass of the juveniles were recorded after four additional weeks. The total length of the experiment was eight weeks. Soil water holding capacity (WHC) was analysed in the beginning of the experiment and soil pH in the beginning and end of the experiment. The study was conducted at the Finnish Environment Institute (Syke) Under project PAPILLONS (EU Horizon). </span></p>
FIGURE 3. Correlation between the genetic p in Complete Mitochondrial genome of Eisenia nordenskioldi pallida Malevich, 1956 from Korea, with remarks on the phylogeny of the E. nordenskiodi complex (Megadrili; Lumbricidae)
FIGURE 3. Correlation between the genetic p-distances of the barcoding region (cox1) and the 13PCGs of the E. nordenskioldi s.l. taxa.
FIGURE 2 in Complete Mitochondrial genome of Eisenia nordenskioldi pallida Malevich, 1956 from Korea, with remarks on the phylogeny of the E. nordenskiodi complex (Megadrili; Lumbricidae)
FIGURE 2. Phylogenetic relationships of 14 Lumbricidae species, based on the nucleotide sequences of the 13 PCGs. Drawida japonica was included as an outgroup. Numbers at the branches represent Bayesian probabilities and bootstrap support (%). The blue clades represent unpigmented, the red ones pigmented specimens. The two unpigmented Korean specimens are marked in malachite-green.
FIGURE 1 in Complete Mitochondrial genome of Eisenia nordenskioldi pallida Malevich, 1956 from Korea, with remarks on the phylogeny of the E. nordenskiodi complex (Megadrili; Lumbricidae)
FIGURE 1. Phylogenetic relationships of 33 Crassiclitellata species, including E. nordenskioldi cf. pallida No. 1 and No. 3, based on the 13 PCG nucleotide sequences. Drawida japonica was included as an outgroup. Numbers at the branches represent ML bootstrap support.
FIGURE 1 in Review of the Eisenia muganiensis (Michaelsen, 1910) species group with description of two new species (Oligochaeta: Lumbricidae)
FIGURE 1. Distribution of the Eisenia muganiensis species group.
Statistics "Effect of hydrolyzed red worm (Eisenia foétida) on production parameters in red tilapia (Oreochromis sp.)".XLSX
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Figure 2 from: Blakemore R (2013) Earthworms newly from Mongolia (Oligochaeta, Lumbricidae, Eisenia). ZooKeys 285: 1-21. https://doi.org/10.3897/zookeys.285.4502
Figure 2 - A Eisenia nordenskioldi mongol ssp. n. Holotype anterio-ventral view, dorsal prostomium [plus enlargements with that of P1 boxed], posterior, plus actual setal ratios on 13; spermathecae and calciferous glands in situ, nephridia in 12 & 17 B Eisenia nordenskioldi polypapillata after Perel' (1969: text-fig) for fair use comparison.
Figure 1 from: Blakemore R (2013) Earthworms newly from Mongolia (Oligochaeta, Lumbricidae, Eisenia). ZooKeys 285: 1-21. https://doi.org/10.3897/zookeys.285.4502
Figure 1 - A Eisenia fetida specimen S1 from Jeju Isl., Korea; anterio-ventral and lateral views, dorsal prostomium; spermathecae and calciferous glands in situ, nephridium from 20lhs B Eisenia fetida S3 ditto with nephridium in 13lhs C Athecal Allolobophora hataii Kobayashi, 1940: fig. 5 (incertae sedis) for comparison.
Figure 4 from: Blakemore R (2013) Earthworms newly from Mongolia (Oligochaeta, Lumbricidae, Eisenia). ZooKeys 285: 1-21. https://doi.org/10.3897/zookeys.285.4502
Figure 4 - MEGA 5.1 default NJ-ML phylotree of COI barcodes (with sequences aligned using the Clustal X option defaults and S1 (WO12), S5 (WO18) and Eisenia gaga complements reversed) showing unreliability of GenBank (blast.ncbi.nlm.nih.gov/genbank) and/or Bold Systems (boldsystems.org) voucher names compared to eloquent power of barcoding definitive ICZN 1° types. Cf. data in Appendix 1.
Figure 3 from: Blakemore R (2013) Earthworms newly from Mongolia (Oligochaeta, Lumbricidae, Eisenia). ZooKeys 285: 1-21. https://doi.org/10.3897/zookeys.285.4502
Figure 3 - A Eisenia nordenskioldi onon ssp. n. Holotype sketched as for Figs 1–2 B Allolobophora harbinensis Kobayashi, 1940: fig. 6 (incertae sedis) for comparison.
Microarray analysis of CL-20 reversible neurotoxicity in the earthworm Eisenia fetida
GEO Series GSE18536. Eisenia fetida. 48 samples. Type: Expression profiling by array.
Gene expression dynamics during regeneration of Eisenia fetida
GEO Series GSE101310. Eisenia fetida. 26 samples. Type: Expression profiling by high throughput sequencing.
Eisenia andrei exposed to different 2-phenylethyl isothiocyanate concentrations in soil
GEO Series GSE43600. Eisenia fetida; Eisenia andrei. 12 samples. Type: Expression profiling by array.
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