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T-RFLP was chosen for assessing bacterial community structure.
The pyrosequencing was applied to the bacterial community structure studies.
Also, both N and P additions altered the bacterial community structure.
Broadly speaking, environmental bacterial community structure is regulated by local conditions.
Results on rumen parameters showed no effects on rumen fermentation, FA composition, or bacterial community structure.
Cluster analysis revealed that the bacterial community structure was influenced by river runoff and sewerage discharge.
The bacterial community structure was correlated with vertical gradients of soil chemical properties.
The distance between the dots with two colors showed the similarity of their own bacterial community structure.
Based on ANOSIM analysis, significant differences were observed in bacterial community structure between group A and group B (P < 0.05).
ANOSIM analyses further showed significant differences in bacterial community structure both between sites and between sampling times (Table 3).
In this work, the influence of these factors on both the denitrifying bacterial community structure and the overall bacterial community structure was assessed through comparison of agricultural soils, denitrifying bioreactors, and natural and constructed wetlands.
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