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2
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0002589502
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Arnason J. T., Mata, R., Romeo, J. T., Eds. Plenum Press: New York
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Pereda-Miranda, R. In Phytochemistry of Medicinal Plants; Arnason J. T., Mata, R., Romeo, J. T., Eds. Plenum Press: New York 1995; pp 83-112.
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Pereda-Miranda, R.1
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4
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0344351768
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note
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It is thought that all edible varieties of Ipomoea batatas were derived from I. tiliacea (Willd.) Choisy, as a result of selection by the native inhabitants of Mesoamerica.
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5
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0003204283
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Pandalai, S. G., Ed.; Research Signpost: Trivandrum, India
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Mata, R.; Pereda-Miranda, R.; Lotina-Hennsen, B. In Secondary Metabolites from Mexican Plants: Chemistry and Biological Properties; Pandalai, S. G., Ed.; Research Signpost: Trivandrum, India, 1996; pp 59-68.
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Mata, R.1
Pereda-Miranda, R.2
Lotina-Hennsen, B.3
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7
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0344351767
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note
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The narcotic power of the morning glory seeds, due to the high content of ergot-type indole alkaloids, remained hidden by the Chinantec and Mazatec Indians in the hinterlands of Oaxaca, in southern Mexico, until the present century.
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8
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0344783719
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note
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Ipomoea orizabensis is placed taxonomically in the Series Tyrianthinae (House) Austin of the Section Pharbitis (Choisy) Griseb. of the subgenus Ipomoea along with I. stans. This species includes among its synonyms I. tyrianthina Lindley, I. longepedunculata (Mart., & Gal.) Hemsley, and Convolvulus orizabensis Pelletan.
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9
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0344783718
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note
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This tuberous rooted, perennial morning glory vine grows in secondary vegetation in the dry tropical forests, grasslands, and conifer-oak forests of the mountains between 1000 and 2500 m above sea level from northeastern Mexico to northern Guatemala.
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10
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0344783717
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note
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The roots of the jalaps were introduced into Europe as early as 1565, and since then they have represented an important item of commerce between the New and the Old World. At the beginning of the 20th century, the jalap medicinal plant complex included "jalapa hembra" or "oficinal" (I. purga), "jalapa macho" (I. orizabensis) and "jalapa de Tampico" (I. simulans Hanbury). The substitution of I. purga with other jalaps has resulted in the confusing application of such terms as "jalapa falsa" or false jalap.
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13
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0023635737
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Noda, N.; Ono, M.; Miyahara, K.; Kawasaki, T.; Okabe, M. Tetrahedron 1987, 43, 3889-3902.
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Tetrahedron
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, pp. 3889-3902
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Ono, M.2
Miyahara, K.3
Kawasaki, T.4
Okabe, M.5
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15
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0345646353
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The sugars are frequently esterified by long chain fatty acids (n-decanoic and n-dodecanoic) or by lower molecular-weight acids (including tiglic, isobutyric, 2-methylbutyric, and nilic acids)
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The sugars are frequently esterified by long chain fatty acids (n-decanoic and n-dodecanoic) or by lower molecular-weight acids (including tiglic, isobutyric, 2-methylbutyric, and nilic acids).
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16
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0025669081
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Noda, N.; Kogetsu, H.; Kawasaki, T.; Miyahara, K. Phytochemistry 1990, 11, 3565-3569.
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0030953714
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MacLeod, J. K.; Ward, A.; Oelrichs, P. B. J. Nat. Prod. 1997, 60, 467-471.
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Oelrichs, P.B.3
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0032127369
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Du, X.-M.; Kohinata, K.; Kawasaki, T.; Guo, Y.-T.; Miyahara, K. Phytochemistry 1998, 48, 843-850.
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Du, X.-M.1
Kohinata, K.2
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Guo, Y.-T.4
Miyahara, K.5
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0001370107
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Kogetsu, H.; Noda, N.; Kawasaki, T.; Miyahara, K. Phytochemistry 1991, 30, 957-963.
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Enriquez, R. G.; Leon, I.; Perez, F.; Walls, F.; Carpenter, K. A.; Puzzuoli, F. V.; Reynolds, W. F. Can. J. Chem. 1992, 70, 1000-1008.
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Leon, I.2
Perez, F.3
Walls, F.4
Carpenter, K.A.5
Puzzuoli, F.V.6
Reynolds, W.F.7
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0029594507
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Reynolds, W. F.; Yu, M.; Enriquez, R. G.; Gonzalez, H.; Leon, I.; Magos, G.; Villareal, M. L. J. Nat. Prod. 1995, 58, 1730-1734.
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Yu, M.2
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Leon, I.5
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Villareal, M.L.7
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0026940760
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Massiot, G.; Chen, X.-F.; Lavaud, C.; Le Men-Olivier, L.; Delaude, C.; Viari, A.; Vigny, P.; Duval, J. Phytochemistry 1992, 31, 3571-3576.
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