A major challenge in biotechnology and biomanufacturing is the identification of a set of biomarkers for perturbations and metabolites of interest. Here, we develop a data-driven, transcriptome-wide approach to rank perturbation-inducible genes from time-series RNA sequencing data for the discovery...
Filter results
Content type
Tags
- (-) Health (8)
- (-) Synthetic Biology (3)
- (-) Solubility (2)
- Viruses (12)
- Soil Microbiology (10)
- Virology (8)
- Virus (8)
- PerCon SFA (5)
- Ions (4)
- Microbiome (4)
- Nanoparticles (4)
- Omics (4)
- sequencing (4)
- Electrical energy (3)
- Energy (3)
- Fungi (3)
- Genomics (3)
- Metagenomics (3)
- RNA Sequence Analysis (3)
- Sodium (3)
- Aggregation (2)
- Anions (2)
- Cations (2)
- Crystallization (2)
- Crystal Structure (2)
- Mass Spectrometry (2)
- microbiome stability (2)
- Polymer Materials (2)
- Scattering (2)
- Spectroscopy (2)
Agriculture is the largest source of greenhouse gases (GHG) production. Conversion of nitrogen fertilizers into more reduced forms by microbes through a process known as biological nitrification drives GHG production, enhances proliferation of toxic algal blooms, and increases cost of crop...
The rhizosphere represents a dynamic and complex interface between plant hosts and the microbial community found in the surrounding soil. While it is recognized that manipulating the rhizosphere has the potential to improve plant fitness and health, engineering the rhizosphere microbiome through...
The quantum mechanical treatment of both electrons and nuclei is crucial in nonadiabatic dynamical processes such as proton-coupled electron transfer. The nuclear−electronic orbital (NEO) method provides an elegant framework for including nuclear quantum effects beyond the Born–Oppenheimer...
Real-time electronic structure methods provide an unprecedented view of electron dynamics and ultrafast spectroscopy on the atto- and femtosecond time scale with vast potential to yield new insights into the electronic behavior of molecules and materials. In this Review, we discuss the fundamental...
Electrolyte solutions in alkaline nuclear waste contain aluminate, hydroxide, nitrate and nitrite with sodium as the predominant counterion. The salts of these ions are highly soluble, so the liquids are highly concentrated. This study found that there is a substantial incompatibility between the...
Understanding molecular-scale factors governing the precipitation of aluminum hydroxides, such as gibbsite, under alkaline conditions is important for the formation of laterite deposits, as well as aluminum processing. However, mechanisms enabling tetrahedral aluminate ions to assemble into...