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Tree branches and tree background are colored for queen morphology and founding behavior respectively, according to the parsimony ancestral reconstruction.
Subject investigated after mention a few weeks ago of the dividend checks of the Florida Power Corp. showing a man fishing from a cabin cruiser with a palm tree background.
This was confirmed by a series of two-ratio branch models, in which each foreground branch of interest was in turn allowed to have a different ratio from the rest of the tree (background).
We used branchXsites models implemented in codeml [24], [25], [26] to test the a priori hypothesis that the pattern of variation in constraint among sites was different on the branch leading to C. nitida (specified as the foreground branch) than the pattern of among-site variation across the rest of the tree (background branches).
A two-ratio model allows one ω value for 1) specified branch/es (called foreground branch/es) and 2) another ω value for the rest of the branches in the tree (background).
This approach allows the d N /dS values at each codon to vary between an a priori defined specific branch (foreground) where adaptive evolution is allowed (d N /d S >1) and the rest of the tree (background) where adaptive selection is not allowed d N /d S = 1.
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Within the Bartonella clades (L1 + L2, L4, and B. australis alone) that represent the evolutionary history of gpsA after acquisition, the ω values are significantly elevated compared with the tree backgrounds (supplementary table S3, Supplementary Material online), suggesting an accelerated rate of evolution after horizontal acquisition.
Since humans usually emit more heat than other objects like trees, background, or road artifacts, the thermal shape can be often successfully exploited for pedestrian detection.
The temporal median method has been most successful in identifying the foreground regions but was not as good as the NP in detecting the moving tree as background.
While recording foraging behaviors, more detailed information on fruit phenology (e.g. ripe/unripe ratio, size and density in a tree) and background substrates (e.g. sides of leaves) would also be helpful.
The branch-site model A1 in combination with the BEB procedure was specified by setting the branch of A. ilicifolius as the "foreground branch" and all other branches in the tree as "background" branches.
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