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LITERATURA CITADA
Abhilash, P., Dubey, R., Tripathi, V., Gupta, V., and Singh, H. 2016. Plant growth-promoting
microorganisms for environmental sustainability. Trends in Biotechnology 34:847-850.
Acevedo-Opazo, C., Ortega-Farias, S., and Fuentes, S. 2010. Effects of grapevine ( Vitis vinifera L.) water
status on water consumption, vegetative growth and grape quality: An irrigation scheduling
application to achieve regulated deficit irrigation. Agricultural Water Management 97:956-964.
Ambrosini, V., Voges, J., Canton, L., Couto, R., Ferreira, P., Comin, J., De Melo, G., Brunetto, G., and
Soares, C. 2015. Effect of arbuscular mycorrhizal fungi on young vines in copper-contaminated
soil. Brazilian Journal of Microbiology 46:1045 – 1052.
Bavestrello, C., Cavieres, L., Gallardo, J., Ibacache, A., Franck, N., y Zurita, A. 2012. Evaluación de la
tolerancia al estrés por sequía en cuatro genotipos naturalizados de vid ( Vitis vinifera ) provenientes
del norte de Chile. Idesia (Arica) 30:83-92.
Berg, G. 2009. Plant – microbe interactions promoting plant growth and health: perspectives for controlled
use of microorganisms in agriculture. Applied Microbiology and Biotechnology 84:11 – 18.
Boyer, J.S. 1996. Advances in drought tolerance in plants. Advances in Agronomy 56:187-218.
Chaves, M. 1991. Effects of water deficits on carbon assimilation. Journal of Experimental Botany 42:1
16.
Chaves, M., Pereira, J., Maroco, J., Rodríguez, M., Ricardo, C., Osório, M., Carvalho, I., Faria, T., and
Pinheiro, C. 2002. How plants cope with water stress in the field? photosynthesis and growth.
Annals of Botany 89:907 – 916.
Chaves, M., and Oliveira, M. 2004. Mechanisms underlying plant resilience to water deficits: prospects
for water-saving agriculture. Journal of Experimental Botany 55:2365 – 2384.
Chaves, M., Flexas, J., and Pinheiro, C. 2009. Photosynthesis under drought and salt stress: regulation
mechanisms from whole plant to cell. Annals of Botany 103:551 – 560.
Choné, X., Leeuwen, C., Dubourdieu, D., and Gaudillère, J. 2001. Stem water potential is a sensitive
indicator of grapevine water status. Annals of Botany 87:477-483.
Cifre, J., Bota, J., Escalona, J.M., Medrano, H., and Flexas, J. 2005. Physiological tools for irrigation
scheduling in grapevine ( Vitis vinifera L.): An open gate to improve water-use efficiency?.
Agriculture, Ecosystems & Environment 106:159-170.
De la Hera, M., Romero, P., Gómez, E., and Martinez, A. 2007. Is partial root-zone drying an effective
irrigation technique to improve water use efficiency and fruit quality in field-grown wine grapes
under semiarid conditions?. Agricultural Water Management 87:261-274.
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