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Amelioration of soil properties, growth and leaf mineral elements of summer savory under salt stress and biochar application in alkaline soil

机译:盐胁迫下盐胁迫下夏季咸谷物的土壤性质,生长和叶片矿物质元素的改善

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Salinity is one of the environmental factors limiting plant growth and development. Biochar has various effects on the chemical properties of soil and through soil fertility enhancement, can enhance plant productivity. This study was aimed to study the effect of biochar on the growth, physiological traits and mineral nutrient contents of summer savory (Satureja hortensis L.) and some chemical and elemental properties of the soil under salinity condition. Thus, a pot factorial experiment based on a completely randomized design with four replications was performed. Experimental treatments included three levels of biochar (non-biochar, 1 and 2% of total pot mass) and four different NaCl levels (0, 3, 5 and 7 dS m(-1)). The results showed that the growth traits (fresh and dry weight of the shoots and roots, main root length and volume) and leaf nutrients of summer savory were improved by increasing soil biochar (especially 2% of total pot mass) under salinity stress. Using biochar as 2% of total pot mass, at 5 dS m(-1) increased proline content. In addition, this study indicated that soils containing biochar were rich in nutrients content and showed the highest pH (8.18), OC (1.63 %) and N content (0.14 %) at 2% biochar under no salinity. The highest EC (29.8 dS m/m), CEC (10.6 Cmol((+)) kg(-1)), Ca2+ (45.4 meq/L), Mg2+ (32.4 meq/L), Na+ (180 meq/L) and Cl- (318 meq/L) were observed at 7 dS m(-1) salinity by using 2% biochar. In general, biochar can modify the soil nutrient situation to overcome the detrimental effects of NaCl. The positive effect of biochar on the growth, nutrient uptake, and soil properties encourage the application of biochar to overcome nutrient deficiency and improve the plant growth.
机译:盐度是限制植物生长和发展的环境因素之一。生物炭对土壤的化学性质和土壤肥力提高有各种影响,可以提高植物生产率。本研究旨在研究生物炭对夏季咸味(SARICHJA HORTENSIS L.)的生长,生理性状性状和矿物质营养含量的影响,以及盐度条件下土壤的一些化学和元素特性。因此,基于完全随机化设计的罐因子实验进行了四种复制。实验处理包括三种水溶性BioChOr(非生物炭,1和总罐质量的2%)和四种不同的NaCl水平(0,3,5和7ds m(-1))。结果表明,通过增加土壤生物炭(特别是总罐质量)在盐度应力下的土壤生物炭(尤其是2%)的增长性状(芽和根部,主要根部长度和体积)和叶养分的生长性状(芽的重量,主要和干重。使用BioChar作为总罐质量的2%,5 ds m(-1)增加脯氨酸含量。此外,本研究表明,含有生物炭的土壤富含营养物质含量,并且在没有盐度下,在2%BioChar下显示出最高pH(8.18),OC(1.63%)和N含量(0.14%)。最高的EC(29.8ds m / m),CEC(10.6 CMOL((+))kg(-1)),Ca2 +(45.4 meq / L),Mg2 +(32.4 meq / L),Na +(180 meq / L)通过使用2%Biochar,在7ds m(-1)盐度下观察到Cl-(318meq / L)。一般来说,生物炭可以改变土壤养分情况以克服NaCl的不利影响。生物炭对生长,营养吸收和土壤性质的积极作用促进生物炭克服营养缺乏,改善植物生长。

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