保护性耕作下利用覆盖作物塑造土壤特性和谷物产量

Agronomy Pub Date : 2024-09-15 DOI:10.3390/agronomy14092104
Edward Wilczewski, Irena Jug, Ewa Szpunar-Krok, Mariola Staniak, Danijel Jug
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引用次数: 0

摘要

本综述的目的是收集有关不同植物作为冬季和夏季覆盖作物(CC)对土壤物理、化学和生物特性的影响,以及对采用保护性土壤耕作、种植有 CC 的地块中谷类作物产量的影响的最新研究成果。分析研究表明,CC 通常会对土壤的物理和生物特性产生积极影响。无论使用哪种植物作为 CC,我们都可以预期土壤微生物的数量会增加,土壤酶的活性会提高。在减少耕作的情况下,这种效果尤为明显。将 CC 生物质与表层土混合可松动板结的土壤,对于轻质沙质土壤,还可增加吸附复合体的能力。CC 生物质的大小和组成以及植被期和植物生物质覆盖土壤期间的气候条件对改善土壤的化学性质非常重要。通常可以观察到 CC(尤其是豆科植物)对表层土壤中矿质氮含量的有利影响。有时,钾(K)和/或磷(P)的含量也会增加。CC 对土壤有机碳(C)含量、全氮(N)含量或土壤 pH 值的影响则不常见。在少耕系统中使用 CC 可以显著提高谷物的产量和质量,尤其是在低肥力土壤条件和低施肥水平下使用豆科植物作为 CC 时。不过,非豆科植物也能在塑造土壤特性和提高谷物产量方面发挥非常积极的作用。
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Shaping Soil Properties and Yield of Cereals Using Cover Crops under Conservation Soil Tillage
The aim of this review was to collect current results on the effect of different plants grown as winter and summer cover crops (CC) on the physical, chemical, and biological properties of soil and on the yield of cereal crops grown in a site with CC, using conservation soil tillage. The analyzed studies indicate that CC usually have a positive impact on the physical and biological properties of the soil. Regardless of the plant species used as CC, we can expect an increase in the number of soil microorganisms and an improvement in the activity of soil enzymes. This effect is particularly beneficial in the case of reduced tillage systems. Mixing CC biomass with the topsoil loosens compacted soils and, in the case of light, sandy soils, increasing the capacity of the sorption complex. The size and composition of CC biomass and weather conditions during the vegetation period and during the covering of the soil with plant biomass are of great importance for improving the chemical properties of the soil. A beneficial effect of CC, especially legumes, on the content of the mineral nitrogen in the topsoil is usually observed. Sometimes, an increase in the content of available forms of potassium (K) and/or phosphorus (P) is also achieved. The effect of CC on the content of soil organic carbon (C), total nitrogen (N), or soil pH is less common. CC used in reduced tillage systems can significantly improve the yield and quality of cereal grain, especially when legumes are used as CC in low-fertility soil conditions and at low fertilization levels. However, non-legumes can also play a very positive role in shaping soil properties and improving cereal yield.
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