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Mechanism of increased plant uptake of Mn caused by steam sterilization of the soil

机译:土壤蒸汽灭菌导致植物体内锰吸收增加的机理

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To clarify the mechanisms underlying increased plant uptake of Mn from steam-sterilized soil, we examined the effect of steam sterilization (SS) on Mn-oxide dissolution and its subsequent re-oxidization by Mn-oxidizing microorganisms. Experimental plots subjected to SS or no soil disinfection (CT) were set up in a greenhouse, and planted with tomato seedlings. The amounts of water soluble and exchangeable Mn in the soil after SS treatment were significantly higher than in the CT soil, while the amounts of Mn-oxide were significantly lower. Reducing sugars in the soil water extract were also increased after SS. The ratio of the SS-induced increase in galactose plus mannose to that in arabinose plus xylose was about 0.5, indicating the additional reducing sugars were mainly of plant origin. These results suggested that SS released reducing sugars from plant residues in the soil, in turn causing dissolution of soil Mn-oxide. On the other hand, the activity of Mn-oxidizing microorganisms was reduced by SS, and the slowness of their recovery would also contribute to the increased uptake of Mn by plants from steam-sterilized soils.
机译:为了弄清蒸汽灭菌土壤中植物锰吸收增加的潜在机制,我们研究了蒸汽灭菌(SS)对Mn氧化物溶解及其随后被Mn氧化微生物再氧化的影响。将经过SS消毒或不进行土壤消毒(CT)的实验田放在温室中,并种植番茄幼苗。 SS处理后土壤中水溶性和可交换Mn的含量显着高于CT土壤,而Mn氧化物的含量则显着较低。 SS处理后,土壤水提取物中的还原糖也增加了。 SS诱导的半乳糖加甘露糖的增加与阿拉伯糖加木糖的增加的比率为约0.5,表明另外的还原糖主要是植物来源的。这些结果表明,SS从土壤中的植物残渣中释放出还原糖,进而导致土壤Mn氧化物溶解。另一方面,SS降低了Mn氧化微生物的活性,其恢复速度的缓慢也将有助于植物从蒸汽灭菌土壤中吸收Mn。

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