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1 acterioplankton, suggested it is an obligate methylotroph.
2 on: a methanotroph and two nonmethanotrophic methylotrophs.
3 enase, is found in all known proteobacterial methylotrophs.
4  and obligately or facultatively autotrophic methylotrophs.
5 ium extorquens AM1, the best-studied aerobic methylotroph, a periplasmic methylamine dehydrogenase th
6 m extorquens AM1, a serine cycle facultative methylotroph, accumulates poly-beta-hydroxybutyrate (PHB
7 he metabolic versatility of this facultative methylotroph and is a model for other metabolic networks
8 ial community and that type I methanotrophs, methylotrophs and actinomycetes are important organisms
9           The MEDS domain is present in both methylotrophs and complex methanogens, and both the MEDS
10 ied as being related to a wide range of both methylotrophs and non-methylotrophs from Alphaproteobact
11 -glutamyl-methylamide pathway, found in both methylotrophs and non-methylotrophs, to metabolize methy
12    Recent studies of acetate assimilation in methylotrophs and purple phototrophs have revealed remar
13 ay that converts acetyl-CoA to glyoxylate in methylotrophs and Streptomyces spp.
14 netic similarities recently reported between methylotrophs, and methanogens with respect to their pat
15 ylobacterium extorquens AM1 is a facultative methylotroph capable of growth on both single-carbon and
16          Methylibium petroleiphilum PM1 is a methylotroph distinguished by its ability to completely
17 distribution is highly complex in this model methylotroph during growth on acetate and is fundamental
18             We also review new directions in methylotroph ecology that improve our understanding of t
19 o a wide range of both methylotrophs and non-methylotrophs from Alphaproteobacteria, Betaproteobacter
20                                              Methylotrophs grow on reduced single-carbon compounds li
21 re we show that yeasts in a third clade, the methylotrophs, have a simpler two-locus switching system
22                              In serine cycle methylotrophs, methylene tetrahydrofolate (H4F) is the e
23  has been characterized from the facultative methylotroph Methylobacterium extorquens AM1 and shown t
24                             The serine cycle methylotroph Methylobacterium extorquens AM1 contains tw
25                                          The methylotroph Methylobacterium extorquens AM1 oxidizes me
26                              The facultative methylotroph Methylobacterium extorquens AM1 possesses t
27 novel methylotrophy genes of the facultative methylotroph Methylobacterium extorquens AM1 were identi
28 ate dehydrogenase systems in the facultative methylotroph Methylobacterium extorquens AM1 whose expre
29 e analyzed the metabolism of the facultative methylotroph Methylobacterium extorquens AM1, which lack
30 h parameters was assessed in the facultative methylotroph Methylobacterium extorquens AM1.
31 haracterized in the serine cycle facultative methylotroph Methylobacterium extorquens AM1.
32 n a chromosomal fragment of the serine cycle methylotroph Methylobacterium extorquens AM1.
33 to the previously sequenced genomes of three methylotrophs, Methylobacterium extorquens (an alphaprot
34 se (DL-FalDH) was isolated from the obligate methylotroph Methylococcus capsulatus Bath.
35 Cytochrome c' was isolated from the obligate methylotroph Methylococcus capsulatus Bath.
36 tracting a nearly complete genome of a novel methylotroph, Methylotenera mobilis, reconstructing its
37                            Various groups of methylotrophs, microorganisms that can grow on one-carbo
38                                         Many methylotrophs-microorganisms that grow on reduced single
39 tion in terms of discovery of novel types of methylotrophs, novel modes of methylotrophy, and novel m
40 nly methanotrophs but also nonmethanotrophic methylotrophs play a significant role in global carbon c
41 ical fractionation with whole cells of three methylotrophs (strain IMB-1, strain CC495, and strain MB
42 omics to characterize an uncultivated marine methylotroph that actively incorporated carbon from (13)
43 egeneracy as it is beneficial to facultative methylotrophs that have to switch between using methylam
44 eration cycle (GRC) operates in serine cycle methylotrophs to effect the net conversion of acetyl coe
45 pathway, found in both methylotrophs and non-methylotrophs, to metabolize methylamine.
46                  In several newly discovered methylotrophs, XoxF is the active methanol dehydrogenase

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