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FISIOLOGIA E METABOLISMO DA VIDEIRA CV. SYRAH NO ...

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135<br />

OLLAT, N. et al. Grape berry development: a review. Journal International des Sciences de<br />

la Vigne et du Vin, Bordeaux, v. 36, p. 109-131, 2002.<br />

OLMO, H. P. Grapes: Vitis, Muscadinia (Vitacea). In: SMART, J.; SIMMONDS, N. W.<br />

Evolution of crop plants. Singapore: Longman Publishers, 1995. p. 485-490.<br />

ONCINS, J. A. et al. Fitomonitorização: estratégias hídricas na vinha para um vinho de<br />

qualidade – o caso do Chardonnay. In. CONGRESO IBERICO DE CIENCIAS<br />

HORTÍCOLAS, 5.; CONGRESO IBEROAMERICA<strong>NO</strong> DE CIENCIAS HORTICOLAS, 4.,<br />

2005, Porto. Anais... Porto: Associação Portuguesa de Horticultura, 2005. p. 1-6.<br />

ORLANDO, T. G. S. et al. Comportamento das cultivares Carbenet Sauvignon e Syrah em<br />

diferentes porta-enxertos. Ciência Agrotecnológica, Lavras, v. 32, n. 3, p.749-755, 2008.<br />

OUGH, C. S.; AMERINE, M. A. Methods for analysis of musts and wines. 2. ed. New<br />

York: John Wiley & Sons, 1987. 341 p.<br />

PALLIOTTI, A.; CARTECHINI, A. Developmental changes in gas exchange activity in<br />

flowers, berries, and tendrils of field-grown Cabernet Sauvignon. American Journal of<br />

Enology and Viticulture, Davis, v. 52, p. 317-323, 2001.<br />

PARANYCHIANAKIS, N. V.; AGGELIDES, S.; ANGELAKIS, A. N. Influence of<br />

rootstock, irrigation level and recycled water on growth and yield of Sultanina grapevines.<br />

Agricultural Water Management, Amsterdam, v. 69, n. 1, p. 13-27, 2004.<br />

PATAKAS, A.; <strong>NO</strong>ITSAKIS, B. Mechanisms involved in diurnal changes of osmotic<br />

potential in grapevines under drought conditions. Journal of Plant Physiology, Stuttgart, v.<br />

154, p. 767-774, 1999.<br />

PATAKAS, A.; <strong>NO</strong>ITSAKIS, B. Leaf age effects on solute accumulation in water-stressed<br />

grapevines. Journal of Plant Physiology, Stuttgart, v. 158, n. 1, p. 63-69, 2001.<br />

PATAKAS, A.; KOFIDIS, G.; BOSABALIDIS, A. M. The relationships between CO 2<br />

transfer mesophyll resistance and photosynthetic efficiency in grapevine cultivars. Scientia<br />

Hoticulturae, Amsterdam, v. 97, p. 255-263, 2003.<br />

PATAKAS, A.; <strong>NO</strong>ITSAKIS, B.; CHOUZOURI, A. Optimization of irrigation water use in<br />

grapevines using the relationship between transpiration and plant water status. Agriculture,<br />

Ecosystems & Environment, Amsterdam, v. 106, p. 253-259, 2005.<br />

PATAKAS, A. et al. The role of organic solute and ion accumulation in osmotic adjustment in<br />

drought-stressed grapevines. Plant Science, Shannon, v. 163, p. 361-367, 2002.<br />

PATRICK, J. W.; OFFLER, C. E. Compartmentation of transport and transfer events in<br />

developing seeds. Journal of Experimental Botany, Oxford, v. 52, p. 551-564, 2001.<br />

PAUL, M. J.; FOYER, C. H. Sink regulation of photosynthesis: review article. Journal of<br />

Experimental Botany, Oxford, v. 52, n. 360, p. 1383-1400, 2001.

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