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1 d gene, PrpS (Papaver rhoeas pollen S), from Papaver and provide evidence that this encodes the polle
3 responses to those observed in incompatible Papaver pollen: S-specific inhibition and hallmark featu
5 transgenic A. thaliana pollen to recombinant Papaver PrsS protein triggered remarkably similar respon
6 seeds of two forb species (Oxyria digyna and Papaver radicatum) originating from three to five popula
8 sing a pollen self-incompatibility gene from Papaver rhoeas (poppy) in Arabidopsis thaliana renders t
11 emical basis of self-incompatibility (SI) in Papaver rhoeas have revealed much about the signalling p
13 report identification of a legumain/VPE from Papaver rhoeas pollen (PrVPE1) that binds to the DEVD te
14 hly polymorphic pollen-expressed gene, PrpS (Papaver rhoeas pollen S), from Papaver and provide evide
18 dentified a pollen-expressed MAPK (p56) from Papaver rhoeas that was rapidly activated during SI; sev
23 is, Diplotaxis tenuifolia, Sinapis arvensis, Papaver rhoeas, Plantago lagopus and Portulaca oleracea)
34 of a FIL orthologue from the basal eudicot, Papaver somniferum (the opium poppy), and demonstrate a
35 phenylalanine in the Catharanthus roseus and Papaver somniferum aromatic amino acid decarboxylases ch
37 DNA fragment was generated from opium poppy (Papaver somniferum L.) genomic DNA by the PCR using prim
39 ng genome repair, the 4'OMT2 in opium poppy (Papaver somniferum L.), a gene which regulates the biosy
40 The alkaloid-rich latex of the opium poppy, Papaver somniferum L., is valued as a source of pharmace
42 we show that FUL-like genes in opium poppy (Papaver somniferum) and California poppy (Eschscholzia c
43 oquinoline alkaloid produced in opium poppy (Papaver somniferum) and other members of the Papaveracea
44 nctional characterization of an opium poppy (Papaver somniferum) cDNA encoding DBOX, a flavoprotein o
45 N-methyltransferase (NMT) from opium poppy (Papaver somniferum) that primarily accepts 1-benzylisoqu
48 nticancer drug isolated from the opium poppy Papaver somniferum, and genes encoding enzymes responsib
49 phthalideisoquinoline alkaloid derived from Papaver somniferum, has been used as a cough suppressant
50 first characterized in opium from the poppy Papaver somniferum, is one of the strongest known analge
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