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1 hytoene synthase and PSY2, a putative second phytoene synthase.
2 s and Myxococcus xanthus crtB genes encoding phytoene synthase.
3 s of maize was sequenced and found to encode phytoene synthase.
4 anisms, acting predominantly at the level of phytoene synthase-1 (PSY1), and feed-forward mechanisms
5 fruit phenotype of the r,r mutant and Psy-1 (phytoene synthase-1) antisense tomatoes is due to a muta
6 hosphate (IPP) was used as the substrate for phytoene synthase a reduction (e.g. r,r mutant, 5-fold)
7 s, as well as with the enhanced abundance of phytoene synthase, a key enzyme in the carotenoid biosyn
8                       Contrastingly, reduced phytoene synthase activity was not detected when [3H]GGP
9 rotenoid content, on two maize genes, the Y1 phytoene synthase and PSY2, a putative second phytoene s
10 d the expression of HMG2, PSY1 (the gene for phytoene synthase), and lycopene accumulation before the
11                  Upon induction, recombinant phytoene synthase constituted 5-10% of total soluble pro
12  the following six enzymes to be identified: phytoene synthase (crtB/CT1386), phytoene desaturase (cr
13 ymes geranylgeranyl diphosphate synthase and phytoene synthase, from the soil bacterium Erwinia stewa
14                        DNA sequencing of the phytoene synthase gene from each of the mutants revealed
15 e resulting from the up-regulation of the Y1 phytoene synthase gene product in endosperm tissue.
16  Transformation with a wild-type copy of the phytoene synthase gene was able to complement the lts1-2
17 ts examined in this work are affected in the phytoene synthase gene.
18 as closely linked to a marker located in the phytoene synthase gene.
19 n bacteria and bifunctional lycopene cyclase-phytoene synthases in fungi.
20 hese data were supported by the detection of phytoene synthase protein on western blots.
21 matoes is due to a mutated or down-regulated phytoene synthase protein, respectively, resulting in th
22                                              Phytoene synthase (PSase) catalyzes the condensation of
23 ined, or sequence or abundance of mRNAs from phytoene synthase (PSY) and chromoplast-specific lycopen
24                                              Phytoene synthase (PSY) catalyzes the highly regulated,
25               Phytoene formation mediated by phytoene synthase (PSY) is rate limiting in the biosynth
26                                              Phytoene synthase (PSY) is the crucial plastidial enzyme
27                                              Phytoene synthase (PSY) mediates the first committed ste
28                                              Phytoene synthase (PSY), a major rate-controlling carote
29 limiting enzyme for carotenoid biosynthesis, phytoene synthase (PSY), as compared with white-rooted c
30 hypothesized that the daffodil gene encoding phytoene synthase (psy), one of the two genes used to de
31 ent, we began to characterize genes encoding phytoene synthase (PSY), since this nuclear-encoded enzy
32  control the expression of the gene encoding PHYTOENE SYNTHASE (PSY), the first and main rate-determi
33                                              Phytoene synthase (PSY), the rate-limiting enzyme in the
34 ceed through a poly-cis pathway catalyzed by phytoene synthase (PSY), two desaturases (phytoene desat
35 d levels by posttranscriptionally regulating phytoene synthase (PSY).
36 c pathway is mediated by the nuclear-encoded phytoene synthase (PSY).
37 isrupting the activity of the fruit-specific phytoene synthase (PSY1), the first committed step in th
38              The FN68 mutant is deficient in phytoene synthase, the first enzyme of the carotenoid bi
39                       The crtB gene encoding phytoene synthase was isolated from a plasmid containing
40 te synthase rather than squalene synthase or phytoene synthase, which catalyze c1'-2-3 cyclopropanati
41 es were concurrently upregulated, except for phytoene synthase, which was repressed.

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