首页> 外文期刊>International journal of applied mechanics >Alleviation of Salinity-Induced Oxidative Stress, Improvement in Growth, Physiology and Mineral Nutrition of Canola (Brassica napus L.) through Calcium-Fortified Composted Animal Manure
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Alleviation of Salinity-Induced Oxidative Stress, Improvement in Growth, Physiology and Mineral Nutrition of Canola (Brassica napus L.) through Calcium-Fortified Composted Animal Manure

机译:缓解盐度诱导的氧化应激,通过钙强化堆肥的动物粪肥改善油菜(Brassica Napus L.)的生长,生理学和矿物质营养

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摘要

Salinity stress is one of the serious restrictive issues for optimum crop production in arid to semi-arid areas. Application of organic amendments have shown positive effects on crop growth and yield under such scenario. The present study was conducted to estimate the potential of calcium-fortified composted animal manure (Ca-FCM) to enhance growth and yield of canola under saline soil conditions. Salt affected soils with various electrical conductivity (EC) levels (original 1.5, 5, and 10 dS m(-1)) were developed via spiking the soil with sodium chloride (NaCL) salt. The results reveal that soil salinity reduced the growth, physiological, yield, and nutritional parameters of canola. However, application of 3% calcium-fortified composted manure significantly enhanced the growth and yield parameters at all EC levels as compared to control. Plant physiological parameters such as photosynthetic rate, relative chlorophyll contents (SPAD value), and relative water content were also increased with the application of 3% Ca-FCM at all EC levels in comparison to control. Application of 3% Ca-FCM also mediated the antioxidant enzymes activities at all EC levels in comparison to control. Moreover, application of 3% Ca-FCM caused maximum increase in nitrogen, phosphorus, and potassium concentrations in shoot at all EC levels. Conversely, application of 3% Ca-FCM showed maximum decrease in Na+/K+ ratio in leaf up to 83.33%, 77.78%, and 71.43% at EC levels 1.5, 5, and 10 dS m(-1), respectively, as compared to control. It was concluded that application of calcium-fortified composted animal manure (Ca-FCM) could be an efficient method for improving growth, yield, physiological, and nutritional parameters of canola through mediation of antioxidant defense machinery under saline soil conditions.
机译:盐度压力是干旱地区最佳作物生产的严重限制性问题之一。有机修改的应用显示了这种情况下对作物生长和产量的积极影响。进行本研究以估算钙强化堆​​肥动物粪肥(CA-FCM)的潜力,以提高盐水土壤条件下油菜的生长和产量。通过用氯化钠(NaCl)盐掺入土壤,开发出具有各种电导率(EC)水平(原始1.5,5和10ds m(-1)的盐影响的土壤。结果表明,土壤盐度降低了油菜的生长,生理,产量和营养参数。然而,与对照相比,3%钙强化堆肥粪物的应用显着提高了所有EC水平的生长和产量参数。随着对照的所有EC水平施加3%CA-FCM,还增加了植物生理参数,如光合速率,相对叶绿素含量(Spad值)和相对含水量。 3%CA-FCM的应用还介导所有EC水平的抗氧化酶活性,与控制相比。此外,在所有EC水平上施加3%CA-FCM引起的氮,磷和钾浓度的最大增加。相反,3%CA-FCM的施用在比较的情况下,叶片中的Na + / k +比率最大降低至83.33%,71.43%,而在EC级别1.5,5和10ds M(-1)中分别为71.43%控制。得出结论,钙强化堆肥动物粪肥(CA-FCM)的应用可以是通过盐水土壤条件下的抗氧化防御机械的调解来改善油菜的生长,产量,生理学和营养参数的有效方法。

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