The measure of fit produced by this pipeline should be corrected for factors that can introduce random scores.
It should be corrected for the chromosome size. Naturally a bigger chromosome will represent a larger portion of a superscaffold purely by chance.
This could be of significance in genomes where there is a big difference between the largest and smallest chromosomes.
Additionally this correction should be based on the length of the chromosome minus the amount of N nucleotides in the chromosome since these are not aligned.
The measure of fit produced by this pipeline should be corrected for factors that can introduce random scores.
It should be corrected for the chromosome size. Naturally a bigger chromosome will represent a larger portion of a superscaffold purely by chance.
This could be of significance in genomes where there is a big difference between the largest and smallest chromosomes.
Additionally this correction should be based on the length of the chromosome minus the amount of N nucleotides in the chromosome since these are not aligned.