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首页> 外文期刊>Journal of Environmental Management >Potential impact of biochar types and microbial inoculants on growth of onion plant in differently textured and phosphorus limited soils
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Potential impact of biochar types and microbial inoculants on growth of onion plant in differently textured and phosphorus limited soils

机译:生物炭类型和微生物孕育剂对不同质地和含磷量有限的土壤中洋葱植物生长的潜在影响

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摘要

Non-renewable phosphorus (P) resources are intensively declining and recyclable P is high in demand for agricultural sector. Biochar as a renewable source of P and its physicochemical properties may improve the nutrients condition in the soil for plant availability. This study was designed to evaluate the interaction of biochar with soil microbes in differently textured and P-limited soils for P availability, root colonization and nutrient uptake by plants. Onion plants were grown in two differently textured soils with two types of biochar, with or without P application, three microbially inoculated treatments and uninoculated control. Plants were grown for 65 days and root-shoot biomass, nutrient concentration and mycorrhizal root colonization were analyzed. The WinRhizo was used to evaluate root attributes such as length, surface area and volume of roots. Biochar addition enhanced the nutrient uptake and plant biomass in the presence of P and microbial inoculants. Root colonization was notably increased in biochar + mycorrhizal inoculated plants. Biochar and soil type interactions may develop a unique behavior of nutrient uptake, root colonization, plant growth and root attributes. Biochar in combination with microbial inoculants could be considered a potentially renewable source of P fertilizer.
机译:不可再生磷(P)资源正在急剧减少,可再生磷对农业的需求很高。生物炭作为磷的可再生来源及其理化特性,可以改善土壤中的养分状况,以提高植物的利用率。这项研究旨在评估生物炭与土壤微生物在不同质地和磷限制的土壤中的相互作用,以获取磷的有效性,根部定植和植物吸收养分。洋葱植株生长在两种质地不同的土壤中,两种土壤中都有两种生物炭,有或无磷施用,三种微生物接种处理和未接种对照。使植物生长65天,并分析根茎生物量,养分浓度和菌根根定殖。 WinRhizo用于评估根的属性,例如长度,表面积和根的体积。在磷和微生物接种剂的存在下,添加生物炭可提高养分吸收和植物生物量。生物炭+菌根接种植物的根部定植显着增加。生物炭和土壤类型的相互作用可能会形成养分吸收,根部定植,植物生长和根部特性的独特行为。生物炭与微生物接种剂的结合可以被认为是磷肥料的潜在可再生来源。

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