Agriculture Reference
In-Depth Information
Mınguez-Mosquera MI, Gandul-Rojas B, Gallardo-Guerrero
L, Roca M, Jaren-Galan M. 2008. Chlorophylls .In:Hurst
WJ, editor. Methods of Analysis for Functional Foods and
Nutraceuticals . 2nd ed. Boca Raton, FL: CRC Press. p
337-400.
Mınguez-Mosquera MI, Garrido-Fernandez J, Gandul-Rojas
B. 1989. Pigment changes in olives during fermentation and
brine storage. J Agric Food Chem 37: 8-11.
Mınguez-Mosquera MI, Garrido-Fernandez J, Gandul-Rojas
B. 1990. Quantification of pigments in fermented Man-
zanilla and Hojiblanca olives. J Agric Food Chem 38:
1662-66.
Montano A, de Castro A, Rejano L, Sanchez AH. 1992. Anal-
ysis of zapatera olives by gas and high-performance liquid
chromatography. J Chromatogr 594: 259-57.
Montano A, Casado FJ, de Castro A, Sanchez AH, Rejano L.
2005. Influence of processing, storage time, and pasteuriza-
tion upon the tocopherol and amino acid contents of treated
green table olives. Eur Food Res Technol 220: 255-60.
Montano A, Sanchez AH, L opez-L ´opezA,deCastroA,Re-
jano L. 2010. Chemical composition of fermented green
olives: Acidity, salt, moisture, fat, protein, ash, fiber, sugar,
and polyphenol. In: Preedy VR, Watson RR, editors. Olives
and Olive Oil in Health and Disease Prevention. Oxford:
Academic Press. p 291-7.
Moreno JJ. 2003. Effect of olive oil minor components on
oxidative stress and arachidonic acid mobilization and
metabolism by macrophages raw 264.7. Free Radic Biol
Med 35: 1073-81.
Nanos GD, Kiritsakis AK, Sfakiotakis EM. 2002. Preprocess-
ing storage conditions for green 'Conservolea' and 'Chon-
drolia' table olives. Postharv Biol Technol 25: 109-15.
Nosti-Vega M, de Castro-Ramos R, Vazquez-Ladr on R.
1984. Composicion y valor nutritivo de algunas variedades
espanolas de aceitunas de mesa. VI. Cambios debidos a los
procesos de elaboracion. Grasas y Aceites 35: 11-14.
Othman NB, Roblain D, Chammen N, Thonart P, Hamdi M.
2009. Antioxidant phenolic compounds loss during the fer-
mentation of Chetoui olives. Food Chem 116: 662-69.
Owen RW, Giacosa A, Hull WE, Haubner R, Spiegelhalder
B, Bartsch H. 2000. The antioxidant/anticancer potential of
phenolic compounds isolated from olive oil. Eur J Cancer
36: 1235-47.
Pereira JA, Pereira APG, Ferreira ICFR, Valentao P, Andrade
PB, Seabra R, Estevinho L, Bento A. 2006. Table olives
from Portugal: Phenolic compounds, antioxidant potential,
and antimicrobial activity. J Agric Food Chem 54: 8425-31.
Rallo L, Barranco D, De la Rosa R, Leon L. 2008. 'Chiquitita'
olive. Hort Sci 43: 529-31.
Rapoport HF. 2008. Botanica y morfologıa. In: Barranco D,
Fernandez-Escobar R, Rallo L, editors. El cultivo del Olivo .
6th ed. Madrid: Junta de Andalucıa and Ediciones Mundi-
Prensa. p 37-62.
Reimer T, Morlion B, F urst P, Le Brun A, Atlan P, Dutot G.
Puchstein C. 2000. Effects of short term parenteral nutrition
(TPN) with olive oil lipid emulsion (LE) on antioxidant
status of non-septic post operative patients: A comparative,
randomized double-blinded trial. Clin Nutr 19: 1.
Rejano L, Montano A, Casado FJ, Sanchez AH, de Castro A.
2010. Table olives: Varieties and variations. In: Preedy VR,
Watson RR, editors. Olives and Olive Oil in Health and
Disease Prevention . Oxford: Academic Press. p 5-15.
Rejano-Navarro L, Sanchez-Gomez AH, Vega Macıas V. 2008.
Nuevas tendencias en el tratamiento alcalino cocido de las
aceitunas verdes aderezadas al estilo espa nol o sevillano.
Grasas y Aceites 59: 197-204.
Reyes-Zurita FJ, Rufino-Palomares EE, Lupianez JA, Cascante
M. 2009. Maslinic acid, a natural triterpene from Olea eu-
ropaea L. induces apoptosis in HT29 human colon-cancer
cells via the mitochondrial apoptotic pathway. Cancer Lett
273: 44-54.
Roca M, Mınguez-Mosquera MI. 2001. Changes in chloroplast
pigments of olive varieties during fruit ripening. J Agric
Food Chem 49: 832-39.
Roca M, Mınguez-Mosquera MI. 2003. Involvement of chloro-
phyllase in chlorophyll metabolism in olive varieties with
high
and
low
chlorophyll
content.
Physiol
Plant
117:
459-66.
Roche H, Zampelas A, Knapper JME, Webb D, Brooks C,
Jakson KG, Wright J, Gould BJ, Kafatos A, Gibney MJ,
Williams CM. 1998. Effect of long-term olive oil dietary
intervention on postprandial triacylglycerol and factor VII
metabolism. Am J Clin Nutr 68: 552-60.
Rodrıguez-Gomez F, Arroyo-L opez FN, L opez-L opez A,
Bautista-Gallego J, Garrido-Fernandez A. 2010. Lipolytic
activity of the yeast species associated with the fermenta-
tion/storage phase of ripe olive processing. Food Microbiol
27: 604-12.
Romero C, Brenes M, Garcıa P, Garrido A. 2002. Hydroxy-
tyrosol 4- β -D-glucoside, an important phenolic compound
in olive fruits and derived products. J Agric Food Chem 50:
3835-39.
Romero C, Brenes M, Garcıa P, Garcıa A, Garrido A. 2004.
Polyphenol changes during fermentation of naturally black
olives. J Agric Food Chem 52: 1973-79.
Romero C, Garcıa A, Medina E, Ruız-Mendez MV, de Castro
A, Brenes M. 2010. Triterpenic acids in table olives. Food
Chem 118: 670-74.
Romeo FV, De Luca S, Piscopo A, Perri E, Poiana M. 2009.
Effects of post-fermentation processing on the stabilisation
of naturally fermented green table olives (cv. Nocellara et-
nea ). Food Chem 116: 873-78.
Sabatini N, Marsilio V. 2008. Volatile compounds in table
olives ( Olea Europaea L., Nocellara del Belice cultivar).
Food Chem 107: 1522-28.
Sakouhi F, Harrabi S, Absalon C, Sbei K, Boukhchina S, Kallel
H. 2008.
-Tocopherol and fatty acids contents of some
Tunisian table olives ( Olea europaea L.): Changes in their
composition during ripening and processing. Food Chem
108: 833-39.
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