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Database searches were carried out by Mascot peptide map fingerprint search program version 2.2 (http://www.matrixscience.com/) using the following parameters: enzymatic cleavage with trypsin; one potential missed cleavage; peptide mass tolerances of ±50 ppm; modifications due to carbamidomethylation of Cys (fixed) and oxidation of Met (variable) were allowed.
Database searches were carried out by either Mascot peptide map fingerprint or Mascot MS/MS ions search (http://www.matrixscience.com/).com/
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Genomic DNA of the diploid potato genotype RH89-039-16 [ 9] was used to construct two BAC libraries for physical map fingerprinting.
It is shown that MSLL clones longer than 100 kb may be generated, and that MSLL clones of size 35 kb and higher can be accurately placed on a BAC-based FPC map (fingerprinted contigs, [ 26, 27]).
In the third approach, we randomly selected five contigs from the chickpea physical map, fingerprinted their BACs and BIBACs with a different enzyme combination, BamHI/ HindIII/ XhoI/ HaeIII, and then reassembled them into the contigs.
At these two locations, the physical map fingerprints [ 20] of both haplotypes occurred within the same contig, and BES alignments were needed to separate allelic BAC clones for sequencing.
Perhaps it refers to shots of beautiful documents – maps, fingerprint sheets and the like – but we'd like to substitute it for the arguably stronger crash-zoom trope.
Simple sequence repeat (SSR) or microsatellite marker is a valuable tool for several purposes, such as mapping, fingerprinting, and breeding.
Microsatellites are frequently polymorphic within populations or species, and therefore have been widely used as markers in genetic mapping, fingerprinting, and population genetics.
Microsatellites, or simple sequence repeats (SSRs), are the marker of choice in many molecular genetic applications including mapping, fingerprinting, genetic diversity, population structure analysis, gene flow and germplasm conservation studies.
We can map the fingerprint bits to given atoms and bonds by generating the fingerprint for the fragment.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com