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class19
class19

OrthoMaM: a database of orthologous genomic markers for
OrthoMaM: a database of orthologous genomic markers for

Bayesian Network and Influence Diagram
Bayesian Network and Influence Diagram

... uncertainty was developed in the 1970s • Certainty Factor CF [-1,+1] indicates the strength of the conclusion of the rule whenever it’s condition is satisfied ...
Poster - Department of Information Technology
Poster - Department of Information Technology

Populus - University of Washington
Populus - University of Washington

... genomics • Relatively small genome of 550Mbp (5X Arabidopsis, similar to rice, 40X smaller than pine) • 100K ESTs to be released http://www.biochem.kth.se/PopulusDB/ • Genetic linkage maps based on large progeny sets (0.05cM resolution in some cases) • 10X BAC library of a single P. balsamifera ...
2007GenomeInformaticsGMODPoster
2007GenomeInformaticsGMODPoster

... genome-scale biological databases. You can use it to create a small laboratory database of genome annotations, or a large webaccessible community database. GMOD includes a modular database schema called Chado that supports many common needs. ...
Cytochrome C Comparison Lab Purpose: To compare the
Cytochrome C Comparison Lab Purpose: To compare the

... number to represent the radius. The outside of the tree or circle represents time. d. The radius represents the largest separation so the center of the circle is a past time when the common ancestor of all 8 organisms was living. This means that organism 8 is the same number of years removed from or ...
Statistical Analysis of Stream Data
Statistical Analysis of Stream Data

... Species traits  Traits are morphological, behavioral, ecological, or ...
High Dimensional Inference - uf statistics
High Dimensional Inference - uf statistics

... University of Minnesota This talk focuses on classification with microarray gene expression data which is one of the leading examples behind the recent surge of interests in high dimensional data analysis. It is now known that feature selection is crucial and often necessary in high dimensional clas ...
Diospyros virginiana (Common Persimmon) Ebony Family
Diospyros virginiana (Common Persimmon) Ebony Family

... fields. The tree suckers profusely and often forms naturalized stands. Before ripening, persimmon’s fruit is not edible. The fruit is not ripe until the skin is wrinkled. Fruit presents a litter problem, and attracts flies and opossums as well as raccoons, skunks, foxes, deer and songbirds. The plan ...
Efficient Range Minimum Queries using Binary Indexed Trees
Efficient Range Minimum Queries using Binary Indexed Trees

... as long as the node index is less than or equal to  j. We do the same thing in the second tree starting from node  j and climbing the tree through the parent. In both cases we reach the same node and it splits  A [ i ... j ] in subarrays that are found either in BIT1, BIT2 or the value of the common ...
Abstract - CSEPACK
Abstract - CSEPACK

... we propose an online over-sampling principal component analysis (osPCA) algorithm to address this problem, and we aim at detecting the presence of outliers from a large amount of data via an online updating technique. Unlike prior PCA based approaches, we do not store the entire data matrix or covar ...
Molecualr Biology and Evolution
Molecualr Biology and Evolution

New candidate species most closely related to penguins
New candidate species most closely related to penguins

... trees that would be subsequently analyzed with a more sophisticated approach. Still, the number of candidate trees might be too large to allow exhaustive analysis with a computationally intensive method. In such cases, we performed an approximate likelihood analysis with the ProtML program to reduce ...
Week 3 lectures
Week 3 lectures

... Construct a weighted graph whose nodes are the diagonal runs, and there a directed edge from node v to node u if the row and column indices of u and v do not intersect. The weights of the nodes are their respective scores from the previous step. An edge gets a negative score depending on number of s ...
DI4R-NBIS-Nanjiang
DI4R-NBIS-Nanjiang

... • All servers were running on the same EGI site (RECAS-BARI) • Randomly select 100 SWISSPORT sequences as test set. ...
DBMS-based EST Clustering and Profiling for Gene Expression
DBMS-based EST Clustering and Profiling for Gene Expression

... transformation of data from text files (e.g. FASTA) according to the data model loading: persistent storage in the relational database ...
Biology and computers
Biology and computers

Tsunami: Maintaining High Bandwidth Under Dynamic Network
Tsunami: Maintaining High Bandwidth Under Dynamic Network

... members to joining node to use as initial peers ...
Massachusetts Institute of Technology
Massachusetts Institute of Technology

Using Blast To Ask Questions About Evolutionary Relationships
Using Blast To Ask Questions About Evolutionary Relationships

Species
Species

Lab 2 - Illustrating Evolutionary Relationships Between Organisms
Lab 2 - Illustrating Evolutionary Relationships Between Organisms

... “Sequence Label” (highlighted in the screen shot above). 26. At this point, you are probably wondering what all the different animals are. By selecting “BLAST Name (if available)” in the same drop-down menu, you can find out what general class of organism each entry is. To which class of organisms d ...
Lab 9: Web Applications for Gene Family Evolution
Lab 9: Web Applications for Gene Family Evolution

... Logo” button. This plots the protein sequence; larger letters represent residues more commonly found at those sites. You could try checking out some of the other options, if you want. When you're done, shut down this window and go back to the ABC-transporter page for PhyloFacts. Click on the tree ic ...
lecture12-motif-finding
lecture12-motif-finding

... *k-mer refers to a specific n-tuple of nucleic acid that can be used to identify certain regions within DNA or proteins. ...
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Computational phylogenetics

Computational phylogenetics is the application of computational algorithms, methods, and programs to phylogenetic analyses. The goal is to assemble a phylogenetic tree representing a hypothesis about the evolutionary ancestry of a set of genes, species, or other taxa. For example, these techniques have been used to explore the family tree of hominid species and the relationships between specific genes shared by many types of organisms. Traditional phylogenetics relies on morphological data obtained by measuring and quantifying the phenotypic properties of representative organisms, while the more recent field of molecular phylogenetics uses nucleotide sequences encoding genes or amino acid sequences encoding proteins as the basis for classification. Many forms of molecular phylogenetics are closely related to and make extensive use of sequence alignment in constructing and refining phylogenetic trees, which are used to classify the evolutionary relationships between homologous genes represented in the genomes of divergent species. The phylogenetic trees constructed by computational methods are unlikely to perfectly reproduce the evolutionary tree that represents the historical relationships between the species being analyzed. The historical species tree may also differ from the historical tree of an individual homologous gene shared by those species.Producing a phylogenetic tree requires a measure of homology among the characteristics shared by the taxa being compared. In morphological studies, this requires explicit decisions about which physical characteristics to measure and how to use them to encode distinct states corresponding to the input taxa. In molecular studies, a primary problem is in producing a multiple sequence alignment (MSA) between the genes or amino acid sequences of interest. Progressive sequence alignment methods produce a phylogenetic tree by necessity because they incorporate new sequences into the calculated alignment in order of genetic distance.
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