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Salinization/sodification of soil and physiological dynamics of sunflower irrigated with saline–sodic water amending by potassium and farm yard manure

机译:用钾和农厂粪便灌注盐水灌注水土流量土壤和生理动力学的盐渍化/酶

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摘要

Sunflower (Helianthus annuus L.) plants were grown with saline–sodic water (SSW) by treating with potassium (K @ 100 and 200 mg K2O kg−1 soil) and farm yard manure (FYM @ 5 and 10% of soil, w/w). Irrigation with untreated SSW caused soil salinization/sodification, leading to an increase in electrical conductivity (EC) of 165% and sodium adsorption ratio (SAR) 100% with the subsequent increase of 736% in shoot Na+, a decrease of 52% in shoot K+ and 94% in shoot K+:Na+ratio compared to canal water. SSW also decreased physiological activities: 31% relative water content (RWC), 34% membrane stability index (MSI), 51% protein, 33% chlorophyll and 58% photosynthetic rate compared to canal water. Integrated application of K and FYM, at higher level, decreased soil EC by 54% and SAR 43%, and shoot Na+ 57% with a corresponding improvement in soil organic matter 166%, shoot K+ 360%, shoot K+:Na+ratio 987%, RWC 34%, MSI 37%, protein 60%, photosynthetic rate 102%, superoxide dismutase 92%, peroxidase 78% and catalase 52% compared to SSW without K and/or FYM. In conclusion, exogenous application of K and FYM could be a promising approach to use brackish water in agriculture on a sustainable basis.
机译:通过用钾(K @ 100和200mg K 2 O KG-1土壤)和农场粪便粪便(FYM @ 5和土壤,WAL)通过用盐水 - 加入水(SSW)生长向日葵(Helianthus Annuus L.)植物(SSW)和农场粪便粪便/ w)。未经处理的SSW灌溉导致土壤盐渍化/加密,导致导电性(EC)的增加,165%和钠吸附比(SAR)100%随后在芽Na +中增加736%,拍摄减少52% k +和94%的芽K +:Na +比与运河水相比。 SSW还降低了生理活性:31%相对含水量(RWC),34%膜稳定性指数(MSI),51%蛋白,33%叶绿素和58%的光合速率与管水相比。 K和FYM的综合施用在较高水平,降低土壤EC和SAR 43%,拍摄Na + 57%,土壤有机物的相应改善166%,芽K + 360%,芽K +:Na +比例987 %,RWC 34%,MSI 37%,蛋白质60%,光合速率102%,超氧化物歧化酶92%,过氧化物酶78%和过氧化氢酶52%与SSW没有K和/或FYM相比。总之,K和FYM的外源应用可能是在可持续基础上使用农业咸水的有希望的方法。

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