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Please cite as : McClure R.S., Y. Farris, R.E. Danczak, W.C. Nelson, H. Song, A. Kessler, and J. Lee, et al. 2022. Model Soil Consortium 2 (MSC-2) Bacterial Isolate Genomes. [Data Set] PNNL DataHub. https://doi.org/10.25584/PNNLDH/1986536 Model Soil Consortium 2 (MSC-2) Bacterial Isolate Genomes...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment ICL105 Metadata The purpose of this experiment was to evaluate the host epigenetic response to Influenza A virus (subtype H5N1) infection. Sample data was obtained from human lung adenocarcinoma cells (Calu-3) and...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment ICL106 Metadata The purpose of this experiment was to evaluate the human host epigenetic response to Influenza A virus (subtype H5N1) infection. Samples were obtained from human lung adenocarcinoma cell line (Calu...

Omics Lethal Human Virus, SARS-CoV Experiment SM001 New uploads pending The purpose of this experiment was to evaluate the human host response to Severe Acute Respiratory Syndrome coronavirus (SARS-CoV) wild-type virus. Sample data was obtained for 20 week-old C57BL/6J mouse lung tissue infected...

Influenza A Experiment IM104 Processed Omics Data Unavailable This Influenza experiment evaluated mouse lung expression after etoposide treatment and infection with a pandemic H1N1 influenza strain. Related Experimental Data BioProject: PRJNA382278 GEO: GSE97555 (mRNA transcriptome response)...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM103 The purpose of this experiment was to evaluate the host response to Influenza A virus (subtype H5N1) wild-type strain Influenza A/Vietnam/1203/2004 (VN1203) virus, mutant VN1203-NS1trunc124, and mock...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM102 The purpose of this experiment was to evaluate the mouse host response to Influenza A virus (subtype H7N9) wild-type strain Influenza A/Anhui/1/2013 (AH1-WT) virus and mutants NS1-103F/106M (AH1-F/M) and...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM101 The purpose of this experiment was to evaluate the host mouse response to Influenza A virus (subtype H5N1) wild-type strain Influenza A/Vietnam/1203/2004, Influenza A/Vietnam/1203/2004 mutant strains PB2-627E...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment ICL104 The purpose of this experiment was to evaluate the host response to pandemic Influenza A virus (subtype H1N1) , natural isolate Influenza A/California/04/2009 virus. Sample data was obtained from human lung...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment ICL103 The purpose of this experiment was to evaluate the human host response to Influenza A virus (subtype H5N1) and mutant viruses. Sample data was obtained for human lung adenocarcinoma cell line (Calu-3)...

Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment ICL102 The purpose of this experiment was to evaluate the human host cellular response to Influenza A virus (subtype H7N9) , wild-type strain Influenza A/Anhui/1/2013 (AH1-WT), and mutant viruses NS1-L103F/I106M...

The Sequel II System Sequencer is a high-throughput DNA sequencer machine developed and manufactured by PacBio , and is designed for high throughput, production-scale sequencing laboratories. Originally released in 2015, the Sequel system provides Single Molecule, Real-Time (SMRT) sequencing core...

The Sequel II System Sequencer is a high-throughput DNA sequencer machine developed and manufactured by PacBio , and is designed for high throughput, production-scale sequencing laboratories. Originally released in 2015, the Sequel system provides Single Molecule, Real-Time (SMRT) sequencing core...

The Illumina HiSeq 4000 System Sequencer is a high-throughput DNA sequencer machine developed and manufactured by Illumina , and is designed for high throughput, production-scale sequencing laboratories. Built off the HiSeq 2500 System and harnessing the patterned flow cell technology originally...

The innovative Elstar™ electron column forms the basis of the Helios NanoLab’s outstanding high resolution imaging performance. The Elstar features unique technologies, such as constant power lenses for higher thermal stability, electrostatic scanning for faster, higher accurate imaging, and unique...