Robustness (computer science)In computer science, robustness is the ability of a computer system to cope with errors during execution and cope with erroneous input. Robustness can encompass many areas of computer science, such as robust programming, robust machine learning, and Robust Security Network. Formal techniques, such as fuzz testing, are essential to showing robustness since this type of testing involves invalid or unexpected inputs. Alternatively, fault injection can be used to test robustness.
Multiple sequence alignmentMultiple sequence alignment (MSA) may refer to the process or the result of sequence alignment of three or more biological sequences, generally protein, DNA, or RNA. In many cases, the input set of query sequences are assumed to have an evolutionary relationship by which they share a linkage and are descended from a common ancestor. From the resulting MSA, sequence homology can be inferred and phylogenetic analysis can be conducted to assess the sequences' shared evolutionary origins.
Anatomie comparéeL'anatomie comparée est une branche de l'anatomie. Elle a été fondée par Edward Tyson (1650 ou 1651-1708) mais a été rendue populaire par le célèbre anatomiste Georges Cuvier (1769-1832). Elle a pour objectif de comparer l'anatomie de différentes espèces (animales, végétales, fongiques) pour en déterminer la phylogénie et les processus adaptatifs de chacune d'entre elles à leur environnement. L'anatomie comparée est une source importante de données servant principalement à l'étude de l'évolution du vivant.
Inferring horizontal gene transferHorizontal or lateral gene transfer (HGT or LGT) is the transmission of portions of genomic DNA between organisms through a process decoupled from vertical inheritance. In the presence of HGT events, different fragments of the genome are the result of different evolutionary histories. This can therefore complicate investigations of the evolutionary relatedness of lineages and species. Also, as HGT can bring into genomes radically different genotypes from distant lineages, or even new genes bearing new functions, it is a major source of phenotypic innovation and a mechanism of niche adaptation.