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Conversely, 24 species representing 10 families and 16 genera were recorded outside the ORI compound (Tables 1 and 2).
Also, 16 of the 20 genera (Sj = 80%) recorded were common to the inside and outside areas of the ORI compound (Tables 1 and 2).
The total mean densities of woody species were 14,215 individuals ha−1 inside and 1922 individuals ha−1 outside the ORI compound (Tables 1 and 2).
Of the total number of woody species recorded, 21 were encountered both inside and outside the ORI compound, representing a Sj of 60%, while 11 of the species were found only inside and three of the species were found only outside the ORI compound (Tables 1 and 2).
These models suggest that family I compounds have more favorable interaction energies on Ubc13 than family II compound (Tables S1 and S2).
This net preference is probably also true for L4, L16, L17, L18, L20, L25, L45, and L47 as AarA retained 71−86% of DMSO control activity at 100 μM compound (Tables 1 and S3).
Similar(53)
and V. tortilis outside the ORI compound (Table 2).
The frequencies of woody species ranged between 98.5 and 1.5% inside the ORI compound (Table 1) and 85.4 and 0.5% outside the ORI compound (Table 2).
The IVI of woody species ranged between 154 and 0.3% inside the ORI compound (Table 1), and 105 and 0.5% outside the ORI compound (Table 2).
We have 56,911,891 compounds in our PubChem Compound table as the time of writing.
inside the ORI compound (Table 1), and C. mopane, C. megalobotrys, P. violacea, Grewia flavescens Juss.
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