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dc.contributor.editorGarcia Tejero, Ivan Francisco
dc.contributor.editorDurán-Zuazo, Victor Hugo
dc.date.accessioned2022-09-16T13:47:49Z
dc.date.available2022-09-16T13:47:49Z
dc.date.issued2022
dc.identifierONIX_20220916_9783036551364_108
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/92122
dc.description.abstractThe rising shortage of water resources in crop-producing regions worldwide and the need for irrigation optimisation call for sustainable water savings. The allocation of irrigation water will be an ever-increasing source of pressure because of vast agricultural demands under changing climatic conditions. Consequently, irrigation has to be closely linked with water-use efficiency with the aim of boosting productivity and improving food quality, singularly in those regions where problems of water shortages or collection and delivery are widespread. The present Special Issue (SI) showcases 19 original contributions, addressing water-use efficiency in the context of sustainable irrigation management to meet water scarcity conditions. These papers cover a wide range of subjects including (i) interaction mineral nutrition and irrigation in horticultural crops, (ii) sustainable irrigation in woody fruit crops, (iii) medicinal plants, (iv) industrial crops, and (v) other topics devoted to remote sensing techniques and crop water requirements, genotypes for drought tolerance, and agricultural management. The studies were carried out in both field and laboratory surveys, with modelling studies also being conducted, and a wide range of geographic regions are also covered. The collection of these manuscripts presented in this SI updates on and provides a relevant contribution for efficient saving water resources.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.classificationthema EDItEUR::P Mathematics and Science::PS Biology, life sciencesen_US
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processesen_US
dc.subject.otherfruit size
dc.subject.otherManzanilla
dc.subject.otherolive
dc.subject.otherregulated deficit irrigation
dc.subject.otherwater potential
dc.subject.otherwater relation
dc.subject.otherleaf area
dc.subject.otherManihot esculenta
dc.subject.otherphotosynthesis
dc.subject.othertuber
dc.subject.otherwater status
dc.subject.otherantioxidant capacity
dc.subject.otherbioactive compounds
dc.subject.othergrowth
dc.subject.otherhydroxycinnamic acids
dc.subject.otherhydroponics
dc.subject.otherpreformed plastic mulch film
dc.subject.othercrop water productivity
dc.subject.otherbiodegradation
dc.subject.othercrop productivity
dc.subject.otherspray-on mulch
dc.subject.otherwater use efficiency
dc.subject.otheralmond cultivars
dc.subject.othercrop physiological response
dc.subject.otherirrigation water productivity
dc.subject.othernut yield
dc.subject.otherdrip irrigation
dc.subject.othersilicon
dc.subject.othermineral nutrients
dc.subject.otheroxidative stress
dc.subject.otherosmolytes
dc.subject.otheryield
dc.subject.otherZea mays
dc.subject.otherERP
dc.subject.otherGIS
dc.subject.otherinternet of things
dc.subject.otherprecision agriculture
dc.subject.otherquality
dc.subject.otherenvironment
dc.subject.otherwater
dc.subject.othersoftware
dc.subject.otherplatform
dc.subject.otherweb application
dc.subject.othercrop coefficient
dc.subject.otherdrought stress
dc.subject.otherevapotranspiration
dc.subject.othermaize
dc.subject.otherwater productivity
dc.subject.otherPrunus dulcis
dc.subject.otherVairo
dc.subject.otherwater stress
dc.subject.othersustained deficit irrigation
dc.subject.otherquality markers
dc.subject.otherleaf greenness index
dc.subject.otherroot morphology
dc.subject.otheralmond quality
dc.subject.othersustainability
dc.subject.othermarketability
dc.subject.othersemiarid Mediterranean environment
dc.subject.otherroot components
dc.subject.otheryield components
dc.subject.otherfruit quality
dc.subject.otherdeficit irrigation
dc.subject.otherleaf area index
dc.subject.otherharvest index
dc.subject.otherphotosynthetic rate
dc.subject.othertranspiration rate
dc.subject.othergreenhouse
dc.subject.otherin vitro culture
dc.subject.otherapple
dc.subject.othercherries
dc.subject.othermidday stem water potential
dc.subject.othersap flow
dc.subject.otherstomatal conductance
dc.subject.otherFDR probes and daily fraction of intercepted photosynthetically active radiation
dc.subject.otherabiotic stress
dc.subject.otherLinum album Ky. ex Boiss.
dc.subject.othermorphological properties
dc.subject.otherphenology
dc.subject.otherpigments
dc.subject.otherdiversity
dc.subject.otherroot length density
dc.subject.otherroot weight density
dc.subject.otherroot-shoot relationships
dc.subject.otherbenefit-cost ratio
dc.subject.othernitrogen
dc.subject.otherroot growth
dc.subject.othertomato
dc.subject.otherwater saving
dc.subject.otherJerusalem artichoke
dc.subject.othermineral fertilization
dc.subject.otherirrigation
dc.subject.otherdiseases
dc.subject.otherfungi
dc.subject.othercrop suitability
dc.subject.otherremote sensing
dc.subject.otherALES-Arid
dc.subject.otherSEBAL
dc.subject.otherlandsat
dc.subject.othercrop-water requirements
dc.subject.othersmart farming
dc.subject.othercrop-production functions
dc.subject.otherfood quality
dc.subject.othercrop physiological response to drought scenarios
dc.titleOptimizing Plant Water Use Efficiency for a Sustainable Environment
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-5135-7
oapen.relation.isPublishedByMDPI - Multidisciplinary Digital Publishing Institute
oapen.relation.isbn9783036551364
oapen.relation.isbn9783036551357
oapen.pages366
oapen.place.publicationBasel


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