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首页> 外文期刊>Biology and Fertility of Soils >Isoelectric focusing of β-glucosidase humic-bound activity in semi-arid Mediterranean soils under management practices
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Isoelectric focusing of β-glucosidase humic-bound activity in semi-arid Mediterranean soils under management practices

机译:在管理实践下半干旱地中海土壤中β-葡萄糖苷酶腐殖结合活性的等电聚焦

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摘要

Changes in β-glucosidase enzyme–humic complexes and conventional parameters (pH, total organic C, total N, water-soluble C, and bulk density) were studied in an almond-cropped soil prone to erosion under a rehabilitation practice. The experimental plan included three soil slopes (0%, 2%, and 6%) and two type of fertilization (organic and mineral), with sampling of rhizosphere and inter-row soils. The enzyme humic complexes were extracted by pyrophosphate, purified by ultrafiltration of the organic extracts on molecular mass exclusion membranes (mol wt > 104) and fractionated by isoelectric focusing technique (IEF). The IEF on polyacrylamide rod gels with a restricted pH gradient ranging between 6.0 and 4.0 gave five humic bands on the basis of the little differences of their electric charges (pI). Under both organic and mineral fertilization, β-glucosidase activity bound to the fractionated humic substances, especially in the pH range 4.5–4.2 of the rhizosphere soil, was higher than that of the inter-row soil. This also occurred in 6% slope where the enzyme activity was lower than in soil with lower slopes. The higher number of the β-glucosidase active humic bands in rhizosphere than inter-row soil, particularly for the 0% slope, may be due to the presence of humic molecules capable of preserving the enzyme molecules in the active form, other than to the higher microbial activity synthesizing and releasing the tested enzymes.
机译:在易于修复的杏仁作物土壤中,研究了β-葡萄糖苷酶-腐殖质复合物和常规参数(pH,总有机碳,总氮,水溶性碳和堆积密度)的变化。该实验计划包括三个土壤坡度(0%,2%和6%)和两种施肥类型(有机和矿物),对根际土壤和行间土壤进行采样。用焦磷酸盐提取酶腐殖质复合物,在分子排阻膜(mol wt> 10 4 )上对有机提取物进行超滤,然后通过等电聚焦技术(IEF)进行分离。 pH值限制在6.0到4.0之间的聚丙烯酰胺棒状凝胶上的IEF根据其电荷(pI)的微小差异给出了五个腐殖质带。在有机肥和矿物肥下,与分级腐殖质结合的β-葡萄糖苷酶活性,特别是在根际土壤的pH范围为4.5-4.2的情况下,都高于行间土壤。这也发生在6%的坡度上,其中酶活性低于在较低坡度的土壤中。根际土壤中的β-葡萄糖苷酶活性腐殖质条带数量多于行间土壤,特别是对于0%的坡度,可能是由于存在能够以活性形式保留酶分子的腐殖质分子而不是土壤中的腐殖质分子。更高的微生物活性,可以合成和释放测试的酶。

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