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首页> 外文期刊>Ecological management & restoration >Short Research Report: high level of soil carbon addition causes possible manganese and aluminium phytotoxicity
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Short Research Report: high level of soil carbon addition causes possible manganese and aluminium phytotoxicity

机译:简短的研究报告:高含量的土壤碳会导致锰和铝的植物毒性

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摘要

A restoration trial of grassy woodland on former agricultural land applied carbon at a standard rate (840 g C/m(2)/year) and at a high rate (4,200 g C/m(2)/year), to test whether further benefits to native plants and suppression of exotics would emerge. Carbon addition at the high rate reduced plant cover further than the standard rate but led to severe loss of plant species; it also reduced soil pH. Soil Al, Fe and Mn levels increased across the gradient of C addition, which would be consistent with the reduction in soil pH for Al and Mn, and a decrease in soil redox potential for Mn and Fe. Nutrient analysis of leaf tissue confirmed that uptake of Fe and Mn increased over the range of C addition, with the concentration of Mn in the high carbon treatment exceeding the threshold for toxicity for a range of species. The soil and plant tissue data are consistent with the induction of increased soil acidity and of stronger reducing conditions in the soil by high level of carbon addition and localised soil flooding. Plant uptake of Mn to toxic levels occurred subsequently, leading to negative effects on plants; aluminium phytotoxicity may also have occurred.
机译:在原农业用地上的草地林地恢复试验以标准速率(840 g C / m(2)/年)和高速率(4,200 g C / m(2)/年)施用了碳,以测试是否进一步对本地植物的好处和对外来植物的抑制将出现。高比率的碳增加使植物的覆盖率比标准比率进一步降低,但导致植物种类的严重损失;它也降低了土壤的pH值。土壤中铝,铁和锰的含量随着碳含量的增加而增加,这与铝和锰的土壤pH值的降低以及锰和铁的土壤氧化还原势的降低是一致的。叶片组织的营养分析证实,在添加C的范围内,Fe和Mn的吸收增加,而高碳处理中Mn的浓度超过了一系列物种的毒性阈值。土壤和植物组织数据与通过高水平的碳添加和局部土壤淹没引起的土壤酸度增加和土壤中更强的还原条件的诱导相一致。随后,植物对锰的吸收达到有毒水平,从而对植物产生不利影响。铝也可能发生了植物毒性。

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