Peptide-tag proximity ligation enables sequencing-based identification of multiple proteins without amplification limits of oligonucleotide methods.
Strategic adapter mismatches and UMIs improve library preparation from limited DNA or RNA while supporting high-throughput sample identification.
RNA sequencing replaces mechanical plate readers to reduce system complexity while maintaining measurement precision.
Polymeric beads with unique analog code identifiers enable precise analyte binding analysis in multiplex assays.
Sequential carrier movement across distributed processing stations reduces biochip-to-biochip delays while maintaining simple manifold designs.
A pulsed laser extracts solid supports from sequencing substrates using precise pixel-to-location mapping for high-purity oligonucleotides.
Synthesizing identifier regions on polynucleotide molecules enables parallel sequencing and precise bead retrieval from flow cells.
Molecular markers identify Zea mays variants to increase biomass while reducing nitrogen fertilizer requirements for crop production.