Arid
DOI10.1016/j.agwat.2019.105886
Functional response of garlic to optimized regulated deficit irrigation (ORDI) across crop stages and years: Is physiological performance impaired at the most sensitive stages to water deficit?
Sanchez-Virosta, A.1; Lellis, B. C.2; Pardo, J. J.2; Martinez-Romero, A.2; Sanchez-Gomez, D.1; Dominguez, A.2
通讯作者Dominguez, A.
来源期刊AGRICULTURAL WATER MANAGEMENT
ISSN0378-3774
EISSN1873-2283
出版年2020
卷号228
英文摘要Garlic is widely cultivated around the globe. Particularly in semi-arid regions, where limited water reservoirs are getting more valuable due to climate change and increasing demand. In this context, implementation of irrigation management techniques such as the optimized regulated deficit irrigation (ORDI) are beginning to be explored. ORDI distributes the total available water, based on the needs at each growing stage (in the case of garlic: establishment = Ky(i'), crop development = Ky(i''), bulbification = Ky(ii) and ripening = Ky(iii)). To evaluate and improve deficit irrigation strategies, leaf functional traits such as stomatal conductance (g(s)); net CO2 assimilation rate (A(n)) and the ratio of A(n) and g(s), known as the intrinsic water use efficiency (WUEi) can be reliable indicators of the functional response of the plant and its acclimation to deficit irrigation. In this study, five irrigation treatments were analyzed during 2016 and 2017: one without water limitation (Full(IG)), and the other four with different irrigation water supplies, corresponding to 100 %, 90%, 80% and 70% of net irrigation needs of purple garlic for intermediate weather conditions of a typical meteorological year (TMY). In 2015, the same treatments except T100 were analyzed. Thus, FullIG and T100 were the same treatment up to the amount of water assigned to T100 was depleted. In the case of T90, T80 and T70, the allocation of the amount of available irrigation water was optimized by using ORDI. Garlic displayed acclimation to water deficits imposed by ORDI. ORDI allowed the recovery of optimal physiological performance of garlic after water stressed and increased irrigation supply at the most drought sensitive stages. However, other environmental factors besides water deficit, affected biomass increment and finally bulb yield throughout the studied years. Overall, this study confirmed that ORDI optimized irrigation water supply throughout the crop cycle, minimizing yield losses in the most water limited treatments and supported the use of selected functional traits as early proxies of crop yield to assist and improve irrigation management of garlic in areas with restricted water availability.
英文关键词Semiarid climate Stomatal conductance Net assimilation rate Intrinsic water use efficiency Irrigation management
类型Article
语种英语
国家Ecuador ; Spain
收录类别SCI-E
WOS记录号WOS:000525279000022
WOS关键词ALLIUM-SATIVUM L. ; STOMATAL CONDUCTANCE ; LEAF-AREA ; USE EFFICIENCY ; LIGHT INTERCEPTION ; PLANT-RESPONSES ; CLIMATE-CHANGE ; GROWTH-STAGES ; HEAT-STRESS ; PHOTOSYNTHESIS
WOS类目Agronomy ; Water Resources
WOS研究方向Agriculture ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/313938
作者单位1.CIAF Albaladejito, Inst Reg Invest & Desarrollo Agroalimentario & Fo, Ctra Cuenca Toledo,Km 174, Cuenca 16194, Ecuador;
2.UCLM, CREA, Ctra Las Penas,Km 3-2, Albacete 02071, Spain
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GB/T 7714
Sanchez-Virosta, A.,Lellis, B. C.,Pardo, J. J.,et al. Functional response of garlic to optimized regulated deficit irrigation (ORDI) across crop stages and years: Is physiological performance impaired at the most sensitive stages to water deficit?[J],2020,228.
APA Sanchez-Virosta, A.,Lellis, B. C.,Pardo, J. J.,Martinez-Romero, A.,Sanchez-Gomez, D.,&Dominguez, A..(2020).Functional response of garlic to optimized regulated deficit irrigation (ORDI) across crop stages and years: Is physiological performance impaired at the most sensitive stages to water deficit?.AGRICULTURAL WATER MANAGEMENT,228.
MLA Sanchez-Virosta, A.,et al."Functional response of garlic to optimized regulated deficit irrigation (ORDI) across crop stages and years: Is physiological performance impaired at the most sensitive stages to water deficit?".AGRICULTURAL WATER MANAGEMENT 228(2020).
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