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1 new model system, Papaver somniferum (opium poppy).
2 (PapsPDS) gene in Papaver somniferum (opium poppy).
3 logy with the major latex protein from opium-poppy.
4 the roots and germinating seedlings of opium poppy.
5 screening, and quality control in food-grade poppy.
6 ved in opiate alkaloid biosynthesis in opium poppy.
7 of opioids naturally derived from the opium poppy.
8 a longstanding mystery of the regaled golden poppy.
9 cally and uniquely in the latex of the opium poppy.
10 step in the formation of noscapine in opium poppy.
11 B class-related MADS box genes in California poppy.
12 calization of morphine biosynthesis in opium poppy.
13 ine and certain rhoeadine alkaloids in opium poppy.
14 pply this tool to metabolites from Icelandic poppy.
15 the biosynthesis of both alkaloids in opium poppy.
16 e in patterning the highly lobed leaf of the poppy.
17 ate MADS-box genes in petal specification in poppy.
18 s were found in cDNA sequences of California poppy.
20 ng complexity and exhibiting pharmaceutical (poppy alkaloids), nutritional (rosemary extracts) or cos
21 f floral organ identity genes in buttercups, poppies and their relatives has shed light on the evolut
23 not compromise the growth or reproduction of poppy and the plants did not display viral symptoms.
24 basal eudicot, Papaver somniferum (the opium poppy), and demonstrate a role for the gene in patternin
25 angiosperms (water lily, avocado, California poppy, and Arabidopsis) and a nonflowering seed plant (a
27 benzylisoquinoline alkaloids (BIAs) in opium poppy as the resulting bi-modular protein performs the i
29 cript and metabolite profiles of eight opium poppy chemotypes revealed four cytochrome P-450s, three
30 libraries and latex extracts of eight opium poppy cultivars displaying different alkaloid profiles w
32 cDNA libraries from each of the eight opium poppy cultivars were subjected to 454 pyrosequencing and
33 ral Genome Project (FGP) selected California poppy (Eschscholzia californica Cham. ssp. Californica)
34 um poppy (Papaver somniferum) and California poppy (Eschscholzia californica) function in axillary me
36 , a mutant from the basal eudicot California poppy (Eschscholzia californica) that shows homeotic cha
44 A biosynthetic and regulatory genes in opium poppy has been established based on the differential met
45 c hierarchy controlling petal development in poppy has diverged as compared with that of Arabidopsis.
48 lf-incompatibility gene from Papaver rhoeas (poppy) in Arabidopsis thaliana renders the latter sensit
49 ethod used to deliver TRV-based vectors into poppy is a promising approach for expanding VIGS to dive
53 eudicot species, were detected in California poppy; loci encoding these miRNAs were also found in Ara
56 ied 17-nt conserved sequence.IMPORTANCEOpium poppy mosaic virus (OPMV) is an umbravirus in the family
58 crease) at higher concentrations in hemp and poppy oils, but its lower amounts were more relevant for
59 ted is implicated in the mass cultivation of poppies or the collection and handling of their latex.
60 SOMT transcripts were detected in all opium poppy organs but were most abundant in aerial organs, wh
61 nce the isolation of morphine from the opium poppy over 200 years ago, the molecular basis of opioid
62 tial anticancer drug isolated from the opium poppy Papaver somniferum, and genes encoding enzymes res
63 phine, first characterized in opium from the poppy Papaver somniferum, is one of the strongest known
67 xylase DNA fragment was generated from opium poppy (Papaver somniferum L.) genomic DNA by the PCR usi
69 d-joining genome repair, the 4'OMT2 in opium poppy (Papaver somniferum L.), a gene which regulates th
70 encing, we show that FUL-like genes in opium poppy (Papaver somniferum) and California poppy (Eschsch
71 enzylisoquinoline alkaloid produced in opium poppy (Papaver somniferum) and other members of the Papa
72 and functional characterization of an opium poppy (Papaver somniferum) cDNA encoding DBOX, a flavopr
74 istinct N-methyltransferase (NMT) from opium poppy (Papaver somniferum) that primarily accepts 1-benz
79 eudicot Eschscholzia californica (California poppy: Papaveraceae) and the basal monocot Acorus americ
83 ntified an 80-kDa, Ca(2+)-regulated ABP from poppy pollen (PrABP80) and characterized its biochemical
85 self-incompatibility (SI) response in field poppy pollen triggers a Ca(2+)-dependent signaling casca
87 d binding constants for native profilin from poppy pollen, we show that profilin has Ca(2+)-dependent
93 using virus-induced gene silencing in opium poppy resulted in a significant decrease in magnoflorine
94 narine, and papaverine accumulation in opium poppy roots in support of DBOX as a multifunctional oxid
97 edible seeds, namely sesame, sunflower seed, poppy seed, pumpkin seed, flaxseed, and mustard seed.
98 fore, exposure to thebaine by consumption of poppy seed-containing food could pose a health risk.
100 ,000 times against an enamel antagonist in a poppy seed/PMMA slurry in the oral wear simulator to pro
101 aine, noscapine, papaverine and narceine) in poppy seeds and bakery products was developed and valida
105 isk assessments regarding opium alkaloids in poppy seeds were mainly based on the morphine level, whe
107 r to assess the durability of the commercial poppy seeds, the lengths of induction periods have been
110 d, CYP82Y1 was abundantly expressed in opium poppy stems where noscapine accumulation is highest amon
111 ed with functional ingredients (milk powder, poppy, sunflower and pumpkin seeds, egg yolk, carum, haz
112 oscapine is an antitumor alkaloid from opium poppy that binds tubulin, arrests metaphase, and induces
115 lated that encodes a new member of the opium poppy tyrosine/3,4-dihydroxyphenylalanine decarboxylase
116 e shares extensive identity with other opium poppy tyrosine/3,4-dihydroxyphenylalanine decarboxylases
118 species Eschscholzia californica (California poppy) using cloning and capillary sequencing, as well a
121 gene duplication and subfunctionalization in poppy, with one gene copy required for petal development