Yield, Mineral Composition, Water Relations, and Water Use Efficiency of Grafted Mini-watermelon Plants Under Deficit Irrigation

Урожайность, минеральный состав, водный режим и эффективность использования воды привитых растений мини-арбуза при дефицитном орошении
Youssef Rouphael, Mariateresa Cardarelli, Giuseppe Colla, E. Rea
2008-06-01

deficit irrigationgrafted mini-watermelonleaf gas exchangemineral compositionwater use efficiency
Limited water supply in the Mediterranean region is a major problem in irrigated agriculture. Grafting may enhance drought resistance, plant water use efficiency, and plant growth. An experiment was conducted in two consecutive growing seasons to determine yield, plant growth, fruit quality, leaf gas exchange, water relations, macroelements content in fruits and leaves, and water use efficiency of mini-watermelon plants [ Citrullus lanatus (Thunb.) Matsum. and Nakai cv. Ingrid], either ungrafted or grafted onto the commercial rootstock ‘PS 1313’ ( Cucurbita maxima Duchesne × Cucurbita moschata Duchesne), under open field conditions. Irrigation treatments were 1.0, 0.75, and 0.5 evapotranspiration rates. In both years (2006 and 2007), marketable yield decreased linearly in response to an increase in water stress. When averaged over year and irrigation rate, the total and marketable yields were higher by 115% and 61% in grafted than in ungrafted plants, respectively. The fruit quality parameters of grafted mini-watermelons such as fruit dry matter and total soluble solids content were similar in comparison with those of ungrafted plants, whereas titratable acidity, K, and Mg concentrations improved significantly. In both grafting combinations, yield water use efficiency (WUE y ) increased under water stress conditions with higher WUE values recorded in grafted than ungrafted plants. The concentration of N, K, and Mg in leaves was higher by 7.4%, 25.6%, and 38.8%, respectively, in grafted than in ungrafted plants. The net assimilation of CO 2 , stomatal conductance, relative water content, leaf, and osmotic potential decreased under water stress conditions. The sensitivity to water stress was similar between grafted and ungrafted plants, and the higher marketable yield from grafted plants was mainly the result of an improvement in nutritional status and higher CO 2 assimilation and water uptake from the soil.
1
Across years and irrigation treatments, grafting increased total yield by 115% and marketable yield by 61% compared with ungrafted plants.
2
Grafted plants had higher leaf nitrogen, potassium, and magnesium concentrations and greater carbon assimilation and soil water uptake, explaining their yield advantage; however, grafting did not alter overall sensitivity to water stress.
3
Grafting maintained similar fruit dry matter and soluble solids, while significantly improving fruit titratable acidity and potassium and magnesium concentrations.
4
Marketable and total yields declined linearly as irrigation decreased from 1.0 to 0.5 evapotranspiration rates in both growing seasons.
5
Yield water-use efficiency increased under water stress, with higher values in grafted than ungrafted plants.

Grafted and ungrafted mini-watermelon plants (Citrullus lanatus cv. Ingrid), including plants grafted onto the ‘PS 1313’ rootstock, grown under deficit irrigation in open-field conditions

Yield, fruit quality, mineral composition, physiological water relations, CO2 assimilation, and water use efficiency under different irrigation levels and grafting treatments

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2008-06-01
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Youssef Rouphael
Mariateresa Cardarelli
Giuseppe Colla
E. Rea
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