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Strawberry Growth under Current and Future Rainfall Scenarios

doi: 10.3390/w14030313
Globally, the changing and interacting effects of temperature and precipitation are anticipated to influence the fitness of specialty crops. Strawberry (Fragaria x ananassa) is an important crop in the Northeastern United States. In this study, four plausible precipitation scenarios were developed to be representative of current and future growing season precipitation patterns. Using a precipitation simulator, we tested these scenarios on potted-day-neutral strawberries. This study generated four primary results. (1) Though some treatments received different amounts of precipitation, little difference was observed in soil volumetric water content or temperature. Treatments designed to simulate future conditions were more likely to have higher nitrate-in-leachate (N-leachate) concentrations than those designed to simulate current conditions. (2) Neither total precipitation nor seasonable distribution were associated with foliar or root disease pressure. (3) While there was a slightly higher chance that photosynthesis would be higher in drier conditions, little difference was observed in the effects on chlorophyll concentration and no water stress was detected in any treatment. (4) Leaf biomass was likely more affected by total rather than seasonal distribution of precipitation, but the interaction between changing rainfall distribution and seasonal totals is likely to be an important driver of root biomass development in the future.
- University of Maine United States
- University of Maine United States
agroecology, chlorophyll fluorescence, Water supply for domestic and industrial purposes, Hydraulic engineering, <i>Fragaria x ananassa</i>, climate change, chlorophyll concentration, precipitation simulation, TC1-978, TD201-500, climate change; agroecology; <i>Fragaria x ananassa</i>; precipitation simulation; chlorophyll fluorescence; chlorophyll concentration; water stress
agroecology, chlorophyll fluorescence, Water supply for domestic and industrial purposes, Hydraulic engineering, <i>Fragaria x ananassa</i>, climate change, chlorophyll concentration, precipitation simulation, TC1-978, TD201-500, climate change; agroecology; <i>Fragaria x ananassa</i>; precipitation simulation; chlorophyll fluorescence; chlorophyll concentration; water stress
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