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The basic topology of the tree of highest likelihood coincides roughly with the parsimony (see Figures 1, 2); the two major differences correspond to nodes with low support in the parsimony tree.
The basic topology of the tree derived from parsimony analysis of the combined data set shows a monophyletic Edwardsiidae basal to the rest of the nynanthean actiniarians; this relationship is well supported with 100% jackknife frequency (see Figure 1).
Indeed, the basic topology of the central β-sheets differs in all the families apart from those represented by the caspases, paracaspases and legumain (see Figure 4).
Compared to just a decade ago, there is now a broad level of agreement on the basic topology of the extant mammalian radiation [e.g., [ 8- 14]].
The basic topology of the phylogenetic tree does not contain dichotomous branching to two groups of functionally diverged orthologs at the tree base, but it reflects basic phylogeny of land plant families.
The basic topology of the caspases (C14A), paracaspases (C14B) and legumain (C13) have been shown to be identical, whereas the topology of the metacaspases (C14B) is quite different, suggesting that metacaspases have been placed in the wrong structural family and adding to the opinion that metacaspases are not caspases [ 47, 89] after all.
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The Sigma-1 receptor (S1R) largely localized to the endoplasmic reticulum (ER) serves as a pluripotent intracellular signaling molecule with diverse roles in the cell including ion channel modulation, stress signaling, and transcriptional regulation (reviewed in Su et al., 2016), however, the basic topology of this protein within a cell remains controversial.
Oxocentered units determine basic topologies of the structures of 1 and 2 and influence their stability and properties.
Specifically, we observed that among the three model architectures that permit viable oscillations, the basic topology of circadian oscillators in nature coincides with the most robust one formed by an essential negative feedback loop and a non essential positive feedback loop.
The analysis of the DP tendencies according to Axiomatic Design principles depicts the technological limits of solar aviation, focusing on how the aforementioned dependencies constraint the basic topology of solar aircraft to a large range of potential missions in terms of endurance and excess of specific mechanical power.
Then, the basic topology of complex power system will be acquired.
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