Arid
DOI10.1016/j.agwat.2018.01.003
Yield production functions of irrigated sugarbeet in an arid climate
Tarkalson, David D.; King, Bradley A.; Bjorneberg, Dave L.
通讯作者Tarkalson, David D.
来源期刊AGRICULTURAL WATER MANAGEMENT
ISSN0378-3774
EISSN1873-2283
出版年2018
卷号200页码:1-9
英文摘要

Increased water demands and drought have resulted in the need to provide data to guide deficit water management decisions in irrigated sugarbeet (Beta vulgaris L.) production. The objective of this study was to quantify the yield response of sugarbeet to water input and actual crop evapotranspiration (ETa) on a soil type (silt loam) common to sugarbeet production in the Northwest U.S. These relationships are valuable to understanding sugarbeet response over a range of water availability and in developing tools to assess future production under water shortages. This paper consolidates data from three studies consisting of ten site-years from 2009 to 2016. The studies were at the USDA-Agricultural Research Service facility in Kimberly, ID on a Portneuf silt loam soil. Treatments consisted of varying levels of cumulative seasonal Kimberly-Penman ET model estimated crop evapotranspiration (ETc) rates ranging from rain-fed to 125% of ETc. Irrigation methods consisted of surface drip irrigation (3 site-years), linear/pivot overhead sprinkler (6 site-years), and solid-set sprinkler (1 site-year). Irrigation frequency was consistent for all studies with applications occurring 2-3 times per week depending on ETc demand. Estimated recoverable sucrose (ERS) yield and root yield were measured, and soil water contents were measured. Across all site-years, quantitative relationships between both actual crop ET (ETa) and water input, and sugarbeet yield and quality variables were developed. Significant (0.05 probability level) positive linear relationships were found between ETa and sugarbeet ERS and root yields (r(2) = 0.78). Estimated recoverable sucrose and root yields increased at rates of 19.4 kg ha(-1) mm(-1) ETa and 0.13 Mg ha(-1) mm(-1) ETa, respectively. When ETa depths of 719 and 729 mm were reached by the crop, root and ERS yields were maximized, respectively. When water input (irrigation + precipitation) depths of 598 and 605 mm were applied root and ERS yields were maximized, respectively. The quantitative relationships between both ETa and water input, and sugarbeet yields can be used to quantify sugarbeet production under deficit irrigation conditions (data derived from pivot/linear, drip, and solid set irrigation types), which may arise due to water shortage scenarios, or when drought occurs in non-irrigated areas. Published by Elsevier B.V.


英文关键词Evapotranspiration Crop water use Water use efficiency Irrigation
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000428828000001
WOS关键词DRY-MATTER PRODUCTION ; LIMITED IRRIGATION ; DEFICIT IRRIGATION ; SEMIARID CLIMATE ; DROUGHT ; STRESS ; MANAGEMENT ; TOLERANCE ; RESPONSES ; SPRINKLER
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/2XILL650/207356
作者单位USDA ARS, Northwest Soils & Irrigat Res Lab, Kimberly, ID USA
推荐引用方式
GB/T 7714
Tarkalson, David D.,King, Bradley A.,Bjorneberg, Dave L.. Yield production functions of irrigated sugarbeet in an arid climate[J],2018,200:1-9.
APA Tarkalson, David D.,King, Bradley A.,&Bjorneberg, Dave L..(2018).Yield production functions of irrigated sugarbeet in an arid climate.AGRICULTURAL WATER MANAGEMENT,200,1-9.
MLA Tarkalson, David D.,et al."Yield production functions of irrigated sugarbeet in an arid climate".AGRICULTURAL WATER MANAGEMENT 200(2018):1-9.
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