Assessment of the viability of using saline reclaimed water in grapefruit in medium to long term
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Romero Trigueros, Cristina; Nortes Tortosa, Pedro Antonio; Pedrero Salcedo, Francisco; Mounzer, Oussama; Alarcón Cabañero, Juan José; [et al.]Área de conocimiento
Producción VegetalPatrocinadores
This research has been supported by the projects SIRRIMED (KBBE-2009-1-2-3, Proposal No. 245159), SENECA (05665/PI/07 and 11872/PI/09), CONSOLIDER INGENIO 2010 (CSD2006-0067MEC) and CICYT (AGL2010-17553). C. Romero-Trigueros acknowledges the financial support received from CSIC program JAE.Fecha de publicación
2014Editorial
Instituto Nacional de Investigacion y Tecnologia Agraria y AlimentariaCita bibliográfica
ROMERO TRIGUEROS, Cristina et al. Assessment of the viability of using saline reclaimed water in grapefruit in medium to long term. Spanish Journal of Agricultural Research, 2014, 12(4), pp. 1137-1148. DOI: 10.5424/sjar/2014124-5495.Revisión por pares
SiPalabras clave
ChlorophyllGas exchange measurements
Irrigation
Phytotoxic elements
Plant water status
Saline reclaimed water
Yield
Resumen
Citrus trees are strongly affected by salinity, especially in countries where irrigation is required as a semi-arid
Mediterranean agronomic region. The aims of the study were i) to identify the best reliable plant-based water status
indicator for field grown grapefruit trees irrigated with saline reclaimed water during five years of cultivation by
measuring seasonal changes in physiological parameters (i.e. gas exchange and stem water potential measurements),
leaf structural traits (i.e. leaf chlorophyll content, area-based leaf nitrogen and area-based dry mass), phytotoxic
elements and yield; ii) to estimate phytotoxicity thresholds at leaf level. Our results showed that the chlorophyll content
was the parameter with the highest number of measures with significant differences (p ≤ 0.05, ANOVA) between trees
irrigated with reclaimed water and control trees throughout growing stages. Moreover, Chl a increased linearly with
area-based leaf nitrogen (R2 = 0.63; p < 0.001) and ...
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