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Carbohydrate fermentation was variable among strains tested of the same species for both genera.
All drivers analyzed with the exception of inorganic pollution (INP) explained a large and significant proportion of variation of the intercontinental submodel for both genera and families (54% and 53%, respectively).
We also rule out predatory attacks as the primary cause of the lesions, because similar large predators (tyrannosaurid theropods) were present in the habitats for both genera, and we would thus expect similar patterns of osteological abnormalities in both.
For Streptococcus and Staphylococcus species we have observed regional differences in isolates characteristics and we are currently establishing a local database for both genera, to define new SuperSpectra that should allow rapid and more reliable identification of local isolates belonging to this variable taxonomic group.
There were also some changes in patterns of significance, particularly at the continental scale, with AC and HUM becoming significant predictors for both genera and families and INP and NUTC becoming not significant in the analysis of families (Supplementary Table S3).
For both genera all the known East African species were included.
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Species from both genera have for a long time been grown as bioenergy crops worldwide and there are active breeding programs for developing new high performing varieties [ 16, 17].
Phenotypic characterisation of Lactococcus and Enterococcus species remains unreliable as strains of both genera have been isolated which do not conform to the traditional criteria for separation of these genera.
The Pearson correlation and associated probability between absolute size, PC1-3D and PC2-3D are show for a conjoint analysis (both genera) and for each of the two genera.
Of the 160 filter backwash samples collected, 13 (8.1%) were positive for 1 or both parasites; 10 (6.2%) were positive for G. intestinalis; 2 (1.2%) were positive for Cryptosporidium spp.; and 1 (0.6%) was positive for both pathogen genera.
The requirement common to both genera was for >70% amino acid identity in the P1 and 2C+3CD regions; this was not met by the HRV A2 genomes (Figure 1B).
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