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首页> 外文期刊>Agronomy Journal >Intensification of field pea production: impact on soil microbiology.
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Intensification of field pea production: impact on soil microbiology.

机译:豌豆生产的集约化:对土壤微生物的影响。

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The economic and environmental benefits of including grain legumes in crop rotations may tempt farmers to grow them more frequently than recommended, resulting in potential changes to soil chemical, physical, and biological properties. We investigated the effects of increasing the frequency of field pea (Pisum sativum L.) (P) in a wheat (Triticum aestivum L.) (W)-based cropping system on soil microbial biomass C (MBC), beta -glucosidase enzyme activity, bacterial diversity, and populations of Rhizobium leguminosarum bv. viceae in the last 3 yr of a 13-yr field study. The treatments consisted of three rotations: P-P, W-P, and W-W-P. Fertilizer N at 5, 20, and 40 kg N ha-1 was applied to pea in P-P and W-P rotations to examine the role of starter N. Soil MBC and diversity were lower in P-P than pea rotated with wheat, presumably due to reduced amounts and diversity of C inputs under P-P. These reductions in soil MBC and diversity probably further reduced field pea growth and grain yields through reduced nutrient cycling. In field pea, beta -glucosidase activity increased with increasing N, suggesting that N was limiting the capacity of soil microorganisms to recycle nutrients from organic materials (including crop residues). Populations of soil rhizobia were not affected by treatment. Wheat grown after pea in the 3-yr W-W-P rotation had greater MBC and beta -glucosidase activity than that in the W-P rotation, indicating the importance of long rotations. Therefore, pea monoculture reduced soil microbial quality, with adverse effects on nutrient cycling.
机译:在轮作中包括豆科植物的经济和环境利益可能会诱使农民增加种植频率,而不是建议的水平,从而导致土壤化学,物理和生物特性的潜在变化。我们调查了基于小麦(W)的种植系统中增加豌豆( Pisum sativum L.)(P)频率的影响对土壤微生物生物量碳(MBC),β-葡萄糖苷酶活性,细菌多样性以及豆科植物根瘤菌的种群的影响一项为期13年的实地研究的最后3年中的 viceae 。处理包括三个循环:P-P,W-P和W-W-P。在PP和WP轮作中,在5,20和40 kg N ha -1 的施氮水平下对豌豆施肥,以研究起动剂N的作用。小麦,大概是由于PP下碳输入量的减少和多样性的缘故。这些土壤MBC和多样性的减少可能通过减少养分循环而进一步降低豌豆的生长和谷物产量。在豌豆中,β-葡萄糖苷酶活性随N的增加而增加,这表明N限制了土壤微生物从有机物质(包括农作物残留物)中回收养分的能力。土壤根瘤菌的种群不受处理的影响。豌豆在3年W-W-P轮作后生长的小麦具有比W-P轮作更大的MBC和β-葡萄糖苷酶活性,表明长轮作很重要。因此,豌豆单作会降低土壤微生物质量,对养分循环产生不利影响。

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