Flow cytometry data were acquired on a LSR-II flow cytometer (Beckton Dickinson) and analyzed using FlowJo v10 software (Tree Start)34. Statistical analysis All samples sizes are large enough to ensure proper statistical analysis. Data are represented as the means ± DS of at least three...
Wood characteristics that occur as part of a tree's natural growth are covered in this chapter. These characteristics are either genetically fixed or physi... DC Richter - Springer Berlin Heidelberg 被引量: 1发表: 2016年 AOE Fast Combat Support Ship USS Sacramento AOE-1. Kit No 05785. Scal...
This study analyzes the structure and the floristic composition of the tree and shrub community naturally regenerating in a forest gap of anthropogenic origin. This gap embraces about 3.2 hectares, and is located at the Quedas do Rio Bon... RM Rondon Neto,SA Botelho,MAL Fontes,... 被引量:...
Crab-on-a-tree: all biorenewable, optical and radio frequency transparent barrier nanocoating for food packaging ACS Nano, 13 (2019), pp. 3796-3805, 10.1021/acsnano.8b08522 View in ScopusGoogle Scholar [17] H.-L. Nguyen, Z. Hanif, S.-A. Park, B.G. Choi, T.H. Tran, D.S. Hw...
The PARP gene family forms six clades. A. Graphical representation of the maximum-likelihood (ML) phylogenetic tree of all identified eukaryotic PARPs indicating the relationships between the six clades as defined in the text. The full tree can be found in Additional file4. The tree was based ...
Table 3 Tree topology testing based on the data set of 154taxa_PCGDegenRNA. Full size table Conclusion In summary, the results obtained in the phylogenetic analyses of the mitogenome data are largely consistent with recently dominant hypotheses of Polyneoptera phylogeny, such as a monophyletic Or...
The MP analysis was run using 5000 random addition replicates and tree bisection-reconnection branch swapping. Nonparametric bootstrap values were calculated for MP and ML analyses (10.000/100 bootstrap replicates, 100/1 heuristic random addition replicates) to assess confidence in the resulting relation...
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tree = Tree(newickString,format=1); tree.resolve_polytomy(recursive=True)try: tree.set_outgroup( tree.get_midpoint_outgroup() )except:pass#print clusterID, ' can not conduct midpoint rooting'tree.ladderize()## adding the missing node.name#for ind, node in enumerate(tree.traverse("postorde...