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The greater width of the upper and lower portions represents the greater morphological diversity that is representative of vertebrates during these developmental periods.
The high taxonomic and morphological diversity that exists within and among species of Tragoportax and Miotragocerus means it is difficult to interpret with any confidence the similarities mentioned above between certain African and Eurasian tragoportacins.
By relating these data with morphological and developmental data in a phylogenetic context, we can begin to understand how changes in ontogeny have led to the burst of morphological diversity that occurred in the early Cambrian.
The three species I. phaecomis, I. hirtella, and I. cookei are each divided into varietal taxa reflecting a marked morphological diversity that has only partly been accounted for in the present study.
The crustaceans pose a particularly difficult challenge in this regard, however, as there is so much morphological diversity that it is difficult to characterize crustaceans with any single set of features, and attempts at understanding their taxonomic groups and phylogenetic relationships based on morphology have been problematic for as long as they have been studied.
However, different dog breeds show such high morphological diversity, that their vocal fold size and fundamental frequency can also correlate with the physical parameters of the body [18].
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= 0) but have age-ordered levels of diversity (slope<1) (Figure 2B), implying the assemblages are convergent but that morphological diversity along that axis accumulates more gradually.
Wild tomato species are native to diverse habitats in South America and show great morphological and ecological diversity that has proven useful in breeding programs.
The MYB and bHLH families present examples of how gene duplication and divergence in a particular group of TFs correlate with the morphological and metabolic diversity that distinguish the higher plants [ 1, 89], which expanded dramatically in higher plants.
Studies utilizing morphologically-based phylogenetic inferences to quantify rates of evolution [ 8, 37- 42] assume a clear association between morphological and evolutionary diversity that is highly problematic in cases of mosaic evolution.
These organisms also cover a wide range of morphological diversity, including species that make dark pigments (Chromobacterium violaceum, Aureobasidium pullulans), those that make fluorescent pigments (Pseudomonas fluorescens), molds with compact colony structures (Aspergillus niger, Penicillium notatum), and molds with spreading growth patterns (Alternaria alternata, Trichoderma asperellum).
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