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1                                              Pseudonocardia and Amycolatopsis isolates also show nons
2                                              Pseudonocardia and Amycolatopsis secretions kill or stro
3 Two different bacterial genera are featured, Pseudonocardia and Salinispora, and, although the small-
4 d previously identified this molecule from a Pseudonocardia associated with Apterostigma dentigerum,
5 , garden-infecting Escovopsis pathogens, and Pseudonocardia bacteria on the ant integument has been p
6 ts are thought to form such a mutualism with Pseudonocardia bacteria to derive antibiotics that speci
7                                              Pseudonocardia can occur on males, suggesting that Pseud
8  popularized as an example of ant-Escovopsis-Pseudonocardia co-evolution.
9 asionally Amycolatopsis (a close relative of Pseudonocardia) co-occur on workers from a single nest,
10 nocardia can occur on males, suggesting that Pseudonocardia could also be horizontally transmitted du
11                                              Pseudonocardia dioxanivorans CB1190 is the first bacteri
12                  In reactors bioaugmented by Pseudonocardia dioxanivorans CB1190 with 3.0 V applied,
13     In this study, we examined autotrophy in Pseudonocardia dioxanivorans CB1190, which can grow usin
14 res on aerobic 1,4-dioxane biodegradation by Pseudonocardia dioxanivorans CB1190.
15 phy in attine ant- and plant root-associated Pseudonocardia discussed.
16       Here we test 4 key assumptions of this Pseudonocardia-Escovopsis coevolution model.
17 nceptual framework to replace the prevailing Pseudonocardia-Escovopsis coevolution model.
18 ,4-dioxane and the first member of the genus Pseudonocardia for which there is an annotated genome se
19                          If association with Pseudonocardia is adaptive to attine ants, alternate rol
20                                              Pseudonocardia is an actinobacterial genus of interest d
21 ious finding of a growth-enhancing effect of Pseudonocardia on the cultivars.
22 -pyrosequencing) surveys reveal that several Pseudonocardia species and occasionally Amycolatopsis (a
23                                         Some Pseudonocardia spp. can grow autotrophically, but the ge
24 and were produced by two different symbiotic Pseudonocardia spp. from ants in the genus Apterostigma
25 ave benefited from horizontal gene transfer, Pseudonocardia spp. have relied on plasmid-based tactics
26 he potential for autotrophic growth of other Pseudonocardia spp. was explored, and the ecological imp
27 -term association with a single, co-evolving Pseudonocardia strain, attine ants accumulate complex, d
28 regarding antibiotic-secreting, integumental Pseudonocardia that co-evolve to specifically suppress E
29 ned the inhibition of the Co-type NHase from Pseudonocardia thermophila JCM 3095 (PtNHase) by boronic
30 cat) and K(m) for the cobalt-type NHase from Pseudonocardia thermophila JCM 3095 (PtNHase) were exami
31 olecules, the genomes of the three producing Pseudonocardia were sequenced and the biosynthetic gene

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