Silicon application mitigated the adverse effects of salt stress and deficit irrigation on drip-irrigated greenhouse tomato
Author:
Funder
Chinese Universities Scientific Fund
Publisher
Elsevier BV
Subject
Earth-Surface Processes,Soil Science,Water Science and Technology,Agronomy and Crop Science
Reference78 articles.
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2. Economic profitability analysis of husk tomato (Physalis ixocarpa Brot. ex Hornem.) under different silicon dioxide concentrations;Alafita-Vásquez;Agro Prod.,2021
3. Comparison of individual and combined effects of salinity and deficit irrigation on physiological, nutritional and ornamental aspects of tolerance in Callistemon laevis plants;Álvarez;J. Plant Physiol.,2015
4. Regulation of root water uptake under abiotic stress conditions;Aroca;J. Exp. Bot.,2012
5. Effect of foliar application of silicon and salicylic acid on regulation of yield and nutritional responses of greenhouse cucumber under high temperature;Basirat;J. Plant Growth Regul.,2022
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1. Silicon drip fertigation improved sugar beet root and canopy growth and alleviated water deficit stress in arid areas;European Journal of Agronomy;2024-09
2. Silicon Improves the Plant Growth and Fruit Quality of Cherry Tomato (Solanum lycopersicum var. cerasiforme) under Nitrogen Imbalance by Modulating Nitrogen Assimilation and Photosynthesis;Journal of Soil Science and Plant Nutrition;2024-07-10
3. Endophytic Bacillus pumilus G5 Interacting with Silicon to Improve Drought Stress Resilience in Glycyrrhiza uralensis Fisch. by Modulating Nitrogen Absorption, Assimilation, and Metabolism Pathways;Journal of Agricultural and Food Chemistry;2024-04-25
4. Deficit Irrigation with Silicon Application as Strategy to Increase Yield, Photosynthesis and Water Productivity in Lettuce Crops;Plants;2024-04-05
5. Environmental Prediction Model of Solar Greenhouse Based on Improved Harris Hawks Optimization-CatBoost;Sustainability;2024-02-29
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