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Given the depth of species coverage, it can be assumed that most, if not all, groups of N-transporters in angiosperms have been defined.
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In depth comparison of species within and across tetraconate taxa, however, rather demonstrates that many characters of the organization of tetraconate olfactory centers are shared even among distantly related clades, but have been modified in various taxon-specific ways.
As researchers have been planning projects to determine the effects of the oil spill on the biotic communities of the region, the volume has been in high demand as a reference for the correct taxonomy, distribution, and depth range of species.
The probability that a species is threatened increases by 1.2% for each 10 cm increase in maximum body length, and decreases by 10.3% for each 50 m deepening in the minimum depth limit of species.
The burial efficiency and depth of these species were, in contrast to N. diversicolor, dependent on animal abundance.
As a whole, these results were unexpected given that cob was reported to be more variable than COI but could be explained, in part, by the greater sampling depth of known species used here.
Each vertical line represents the depth range (surface-ward minimum to the maximum reported depth) of each species and is colored according to threat status: CR (red), EN (orange), VU (yellow), NT (pale green), LC (green), and DD (gray).
We validated this basic expectation of divergence with gene flow and then used the resultant heterogeneity in genomic divergence to characterize the shape and depth of the species boundary as a function of divergent selection, phylogenetic distance, and hybridization.
A) The correlation between the difference in habitat depth of fish species versus the dissimilarity in the phototroph compositions of algal farms defended by the herbivorous cichlids, and B) pairwise plots between the difference in habitat depth versus the dissimilarity in phototroph composition of stomach contents of the herbivorous cichlids.
This study compared the growth responses to water depth of three species (Phormium tenax, Carex secta and Typha orientalis) differing in depth preferences in wetlands, using non-linear and quantile regression analyses to establish how flooding tolerance can explain field zonation.
Silene was targeted for this in-depth sampling of species-level mitochondrial divergence because of a priori knowledge of the rate acceleration in S. noctiflora.
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