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Toxicity of Naturally-Contaminated Manganese Soil to Selected Crops

机译:天然污染的锰土壤对部分农作物的毒性

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The impact of manganese excess using naturally contaminated soil (Mn-soil, pseudototal Mn 6494 vs 675 μg g~(-1) DW in control soil) in the shoots of four crops was studied. Mn content decreased in the order Brassica napus > Hordeum vulgare > Zea mays > Triticum aestivum. Growth was strongly depressed just in Brassica (containing 13 696 μg Mn g~(-1) DW). Some essential metals (Zn, Fe) increased in Mn-cultured Brassica and Zea, while macronutrients (K, Ca, Mg) decreased in almost all species. Toxic metals (Ni and Cd) were rather elevated in Mn-soil. Microscopy of ROS, NO, lipid peroxidation, and thiols revealed stimulation in all Mn-cultured crops, but changes were less visible in Triticum, a species with low shoot Mn (2363 μg g~9-1) DW). Antioxidative enzyme activities were typically enhanced in Mn-cultured plants. Soluble phenols increased in Brassica only while proteins rather decreased in response to Mn excess. Inorganic anions (chloride, sulfate, and phosphate) were less accumulated in almost all Mn-cultured crops, while the nitrate level rather increased. Organic anions (malate, citrate, oxalate, acetate, and formate) decreased or remained unaffected in response to Mn-soil culture in Brassica, Hordeum, and Triticum but not in Zea. However, the role of organic acids in Mn uptake in these species is not assumed. Because control and Mn-soil differed in pH (6.5 and 3.7), we further studied its impact on Mn uptake in solution culture (using Mn concentration ~5 mM deducted from water-soluble fraction of Mn-soil). Shoot Mn contents in Mn-treated plants were similar to those observed in soil culture (high in Brassica and low in Triticum) and pH had negligible impact. Fluorescence indicator of "general ROS" revealed no extensive or pH-dependent impact either in control or Mn-cultured roots. Observed toxicity of Mn excess to common crops urges for selection of cultivars with higher tolerance.
机译:研究了自然污染土壤(锰土壤,伪总锰6494与对照土壤中675μgg〜(-1)DW)对四种农作物芽中锰过量的影响。锰含量按甘蓝型油菜>大麦>玉米>普通小麦的顺序降低。仅在芸苔属(含有13696μgMn g〜(-1)DW)中生长受到强烈抑制。锰培养的芸苔属植物和玉米中的某些必需金属(锌,铁)增加,而几乎所有物种中的常量营养素(钾,钙,镁)减少。锰土壤中的有毒金属(镍和镉)相当高。 ROS,NO,脂质过氧化和硫醇的显微镜检查显示了所有Mn种植的农作物都受到刺激,但在小麦中,茎粗锰含量低(2363μgg〜9-1)的小麦Triticum的变化较少。在锰培养的植物中,抗氧化酶的活性通常得到增强。甘蓝型油菜中可溶性酚的含量只有在锰过量的情况下才降低。几乎所有锰栽培作物中无机阴离子(氯离子,硫酸根和磷酸根)的累积量都较少,而硝酸根含量却反而增加了。在甘蓝型油菜,大麦和小麦中,锰离子对培养物中的有机阴离子(苹果酸根,柠檬酸根,草酸根,乙酸根和甲酸根)减少或保持不受影响,但对玉米无影响。但是,没有假设有机酸在这些物种中的锰吸收中的作用。因为对照和锰土壤的pH值不同(6.5和3.7),所以我们进一步研究了其对溶液培养中锰吸收的影响(使用从水溶性锰水溶液中扣除的Mn浓度〜5 mM)。锰处理过的植物中的芽中锰含量与土壤培养中观察到的相似(芸苔属中较高,而小麦属中较低),pH值的影响可忽略不计。 “一般ROS”的荧光指示剂显示在对照或Mn培养的根中没有广泛的或pH依赖性的影响。观察到锰过量对普通作物的毒性,因此强烈建议选择具有较高耐受性的品种。

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