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    Alkaloid profiles of the Indian land races of the opium poppy Papaver somniferum L
    (Kluwer Academic Publishers, 2002) Prajapati, Seema; Bajpai, Suphla; Singh, Digvijay; Luthra, Rajesh; Gupta, Madan M.; Kumar, Sushil
    The capsule husks of a set of 115 Indian land races of opium poppy Papaver somniferum L. obtained over two cropping seasons were screened for the percent contents of papaverine, reticuline, narcotine, thebaine, codeinone, codeine, morphine and oripavine. Among the accessions screened 36, 7 and 1 did not accumulate papaverine, papaverine and narcotine and codeine and morphine, respectively. The alkaloid profiles and correlations between alkaloids in all the four classes of accessions showed that in the Indian genetic resources of P. somniferum (a) morphine is synthesized from codeine rather than oripavine, (b) net alkaloid contents are low under narcotine deficiency, and (c) accumulation of morphine and codeine was limited upstream of codeinone and morphinone. The accessions identified to be harboring genetic blocks in the phenenthrine and benzylisoquinoline biosynthetic pathways will be useful for understanding the genetic control of secondary metabolism in opium poppy.
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    The floral androcarpel organ (ACO) mutation permits high alkaloid yields in opium poppy Papaver somniferum
    (Indian Academy of Sciences, 2001) Prajapati, Seema; Bajpai, Suphla; Gupta, MM; Kumar, Sushil
    Isolation of a recessive aco (androcarpel organ) mutation in opium poppy Papaver somniferum, is described. The aco (aco aco) mutant plants form androcarpels in place of inner whorl stamens in their flowers. The abnormal flowers are self-fertile, as stamens in the outer whorl are normal. In aco mutant the calyx, corolla and syncarpous gynoecium are formed like in the wild type ACO plants. The androcarpel walls of aco plants synthesize and accumulate alkaloids like the main carpel walls. The aco mutation provides a means for improving carpel wall husk mass and thereby the yield of alkaloids