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133 results for “Soil sampling”
Figure 4 from: Kaydan MB, Konczné Benedicty Z, Kiss B, Szita É (2016) A survey of scale insects in soil samples from Europe (Hemiptera, Coccomorpha). ZooKeys 565: 1-28. https://doi.org/10.3897/zookeys.565.6877
Figure 4 - Brevennia larvalis Kaydan, sp. n., first instar nymph.
Comparison of the microbial diversity of an uncontaminated and a 2,4,6-trinitrotoluene contaminated soil sample
GEO Series GSE3499. unidentified. 6 samples. Type: Other.
Detection of Bacillus anthracis DNA in complex soil and air samples using next-generation sequencing [NimbleGen Array data]
GEO Series GSE48316. synthetic construct; Bacillus anthracis str. Ames. 24 samples. Type: Other.
SARST analysis of arctic soil samples
GEO Series GSE949. Bacteria. 7 samples. Type: Other.
Determination of natural radioactivity levels in soil samples from irrigated vegetable farming land in and around Addis Ababa, Ethiopia
<p>This dataset contains 11 data files obtained from a high purity Germanium gamma spectrometry while analysing surface soil samples gathered from vegetable producing area in and around Addis Ababa. The measurement was done in the Ethiopian radiation protection authority laboratory, Addis Ababa, Ethiopia, from August 11 to September 7, 2022. The purpose of the measurement was to evaluate activity concentrations and associated radiological dangers in surface soil from vegetable agricultural area. </p>
Functional gene abundance of tundra soil microbial communities sampled at the EML Thaw Gradient site, AK in May 2004
GEO Series GSE97107. Eukaryota; Viruses; synthetic construct; Bacteria; Archaea. 107 samples. Type: Genome variation profiling by array.
Lewa Conservancy LDSF standard soil sample data
<p>LDSF soil data for Lewa.</p> <ul> <li>SSN: Sample Serial Number (in the lab)</li> <li>SOC: Soil organic carbon</li> <li>TN: Total nitrogen</li> <li>ExBas: Sum of exchangeable bases (Ca+Mg+K+Na; cmol<sub>c</sub> kg<sup>-1</sup>)</li> <li>ExCa: Exchangeable Ca (cmol<sub>c</sub> kg<sup>-1</sup>)</li> <li>ExMg: Exchangeable Mg (cmol<sub>c</sub> kg<sup>-1</sup>)</li> <li>ExK: Exchangeable K (cmol<sub>c</sub> kg<sup>-1</sup>)</li> <li>ExNa: Exchangeable Na (cmol<sub>c</sub> kg<sup>-1</sup>)</li> <li>Sand content (%)</li> <li>Clay content (%)</li> </ul>
Metataxonomics 16S rDNA of maize bulk and rhizospheric soil samples with seed bacterization with Azospirillum brasilense Ab-V5 in a dilution-to-extinction of native microbial diversity
<p><strong>The beneficial plant-microbes association has been widely explored with the purpose of understanding the mechanisms involved in this interaction, in order to develop bioinoculants for agriculture aiming at sustainability and reduction of chemical inputs use. Plant growth promoting bacteria (PGPBs) have been reported as an interesting alternative to mineral fertilizers for a range of crops. The genus Azospirillum has shown potential in plant growth promotion for maize. However, the lack of holistic comprehension about PGPBs-plant-native soil microbiota can lead to inconsistency of results in field conditions. Recent ecological theories revealed that plant microbiomes are organized as microbial hubs with keystone species and helpers. The objective of this work is to characterize the microbial community associated with a commercial maize genotype (30A37PW) under influence of the potential keystone PGPB A. brasilense Ab-v5 to support the original development of a synthetic minimum microbiome including this strain as keystone for plant growth promotion. Aiming to understand the PGPB-plant-microbiome system, we conducted a greenhouse experiment in which the synergistic effect of Ab-V5 and soil native microbial community were evaluated through soil and rhizosphere metataxonomics, metagenomics and plant phenomics. Our results revealed that maize seed bacterization with the PGPB Ab-V5 promotes plant growth. This effect is boosted by the interaction with specific microbial groups present in the soil native community. The strain Ab-V5 persists in the maize rhizosphere until 25 days after sowing. In order to understand which microbial groups are important during the interaction Ab-V5-plant-native soil microbial community, 16S rDNA metataxonomics and metagenomics analysis will be conducted in maize soil and rhizosphere samples. This unprecedented omics approach for the holistic view of the complex system composed by inoculant-plant-microbiota and data integration will allow the development of new strategies for optimization of plant biostimulants recommendation with enhanced efficiency for establishment in the field. </strong></p>
Microbial diversity of an uncontaminated and a 2,4,6-TNT contaminated soil sample with CodeLink microarrays
GEO Series GSE3525. Pseudomonas putida; unidentified. 12 samples. Type: Other.
Soil and Plant Sampling Dataset from a Nebraska Research Farm, Jan-Dec 2021
<p>Soil and plant sampling dataset for an irrigated field at the University of Nebraska-Lincoln Eastern Nebraska Research and Extension Center near Mead, Nebraska. Dataset includes deep soil core samples, surface soil samples, plant samples for an irrigated corn crop, and corn fiber analysis for the 2021 growing season.</p>
Soil and Plant Sampling Dataset from an Iowa Research Farm, Jan-Dec 2021
<p>Soil and plant sampling dataset for a rainfed field at an Iowa State University research station near Williams, Iowa. Dataset includes deep soil core samples, surface soil samples, plant samples for an irrigated corn crop, and corn fiber analysis for the 2021 growing season.</p>
Soil and Plant Sampling Dataset from a Minnesota Farm, Jan-Dec 2021
<p>Soil and plant sampling dataset for a rainfed field near Morris, Minnesota. Dataset includes deep soil core samples, surface soil samples, plant samples for an irrigated corn crop, and corn fiber analysis for the 2021 growing season.</p>
Soil Carbon Stock Change Due to Afforestation in Japan by Paired-Sampling Method in an Equivalent Mass Basis
<p>The data set for the paper submitted to Global Biogeochemical Cycles.</p>
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International Brain Laboratory public data
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OpenNeuro
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