Related Experiment Video
Updated: Jan 21, 2026

Power Input Measurements in Stirred Bioreactors at Laboratory Scale
Published on: May 16, 2018
Large-Scale Genome Comparison Based on Cumulative Fourier Power and Phase Spectra: Central Moment and Covariance
Shaojun Pei1, Rui Dong1, Rong Lucy He2
1Department of Mathematical Sciences, Tsinghua University, Beijing, PR China.
Abstract:
Genome comparison is a vital research area of bioinformatics. For large-scale genome comparisons, the Multiple Sequence Alignment (MSA) methods have been impractical to use due to its algorithmic complexity. In this study, we propose a novel alignment-free method based on the one-to-one correspondence between a DNA sequence and its complete central moment vector of the cumulative Fourier power and phase spectra. In addition, the covariance between the four nucleotides in the power and phase spectra is included. We use the cumulative Fourier power and phase spectra to define a 28-dimensional vector for each DNA sequence. Euclidean distances between the vectors can measure the dissimilarity between DNA sequences. We perform testing with datasets of different sizes and types including simulated DNA sequences, exon-intron and complete genomes. The results show that our method is more accurate and efficient for performing hierarchical clustering than other alignment-free methods and MSA methods.
Related Concept Videos
Power in a Three-Phase Circuit
Moment of a Force: Vector Formulation
The vector formulation of the moment of force is the cross-product of the position and force vectors. The...
Evolutionary Relationships through Genome Comparisons
Resultant Moment: Vector Formulation
The resultant moment of a system of forces can be calculated through vector formulation. For example, if we consider...
Moment of a Force About an Axis: Vector
First, establish a coordinate system to understand how the moment of a force...
Power Distribution in Three-phase and Single Phase Circuits
Single-Phase Power Distribution:
Single-phase circuits are typical in household settings;...

