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稻草生物炭对在老化的铜污染土壤中作为饲料种植的苎麻(Boehmeria nivea L.)生长、抗氧化能力和铜吸收的影响。

Influence of rice straw biochar on growth, antioxidant capacity and copper uptake in ramie (Boehmeria nivea L.) grown as forage in aged copper-contaminated soil.

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, PR China.

Department of Soil and Environmental Science, Ghazi University, Dera Ghazi Khan, Pakistan.

出版信息

Plant Physiol Biochem. 2019 May;138:121-129. doi: 10.1016/j.plaphy.2019.02.021. Epub 2019 Mar 1.

Abstract

Copper (Cu) contamination in agricultural soil poses severe threats to living organisms, and possible ecofriendly solutions need to be considered for Cu immobilization, such as using biochar. A pot study was conducted to examine the effectiveness of biochar derived from rice straw (RSB) at various application rates (0, 2.5, 5 and 10% w/w) to mitigate possible risks of Cu solubility and its uptake by ramie (Boehmeria nivea L.) as forage. The plant growth parameters as well as soil chemical properties (pH, electrical conductivity and cation exchange capacity) notably improved with the increasing RSB application. Moreover, prominent reduction was observed in soil bioavailable Cu concentration by 96% with RSB application of 10% relative to control. In addition, Cu content in B. nivea roots, leaves and stems decreased by 60, 28 and 22%, respectively, for 10% RSB application. It was noted that chlorophyll content and gas exchange parameters in leaves were significantly higher at 10% RSB application than in control. Furthermore, 10% RSB resulted in a greater reduction in oxidative stress from the Cu in soil. Thus, soil amendment with RSB demonstrated positive results for Cu stabilization in aged Cu-contaminated soil, thereby reducing its accumulation and translocation in B. nivea and mitigating livestock feed security risks.

摘要

农田土壤中的铜污染对生物构成严重威胁,需要考虑使用生物炭等可能的环保方法来固定铜。本研究采用盆栽试验,探究了不同用量(0、2.5、5 和 10%,w/w)的稻草生物炭对苎麻(Boehmeria nivea L.)作为饲料可能的铜溶解度风险和吸收的缓解效果。结果表明,随着生物炭用量的增加,植物生长参数和土壤化学性质(pH、电导率和阳离子交换容量)显著改善。与对照相比,添加 10%生物炭可使土壤中生物有效态铜浓度降低 96%。此外,添加 10%生物炭使苎麻根、叶和茎中的铜含量分别降低了 60%、28%和 22%。添加 10%生物炭可显著提高叶片的叶绿素含量和气体交换参数。此外,10%生物炭还可减轻土壤中铜引起的氧化应激。因此,在老化的铜污染土壤中添加生物炭可以固定土壤中的铜,降低其在苎麻中的积累和转运,减轻牲畜饲料安全风险。

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