首页> 外文OA文献 >A green garlic (Allium sativum L.) based intercropping system reduces the strain of continuous monocropping in cucumber (Cucumis sativus L.) by adjusting the micro-ecological environment of soil
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A green garlic (Allium sativum L.) based intercropping system reduces the strain of continuous monocropping in cucumber (Cucumis sativus L.) by adjusting the micro-ecological environment of soil

机译:基于绿色的大蒜(Allium Sativum L.)的间作系统通过调整土壤的微生态环境来减少黄瓜(Cucumis Sativus L.)的连续单剖面菌株

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摘要

The continuous cropping obstacle of cucumber (Cucumis sativus L.) under facility cultivation is more prevalent in China. This is associated with an imbalance in soil microbial and ecological environment in long-term monocultures. It was postulated that intercropping with green garlic would relieve the continuous cropping obstacle of cucumber by altering the soil micro-ecology status. A pot-based experiment was conducted to investigate the green garlic-cucumber intercropping and cucumber monocropping systems. The results showed that the cucumber shoot biomass was improved by intercropping with green garlic. However, the population of soil bacteria and actinomycetes increased, while the fungal population decreased. The fatty acid methyl ester (FAME) profiles indicated that soil contained more fungal FAME biomarkers (18:1ω9c, 18:2ω6, 9) and higher fungal:bacterial ratio in the monoculture system, whereas clustering of more bacterial FAME biomarkers (cy17:0, cy19:0, 16:1ω7c10, Me16:0, 10Me17:0, 10Me18:0) was observed under intercropping conditions. Moreover, significantly (P < 0.05) higher soil invertase and alkaline phosphatase activities, organic matter, and available N, P and K contents were observed under intercropping systems. These were high in both bulk and rhizosphere soils in the intercropping system when compared to monocropping system. These findings suggest that intercropping with green garlic can alleviate continuous cropping obstacle of cucumber by improving the diverse composition of soil microbial community, enzyme activities, and nutrient availability.
机译:在设施培养下黄瓜(Cucumis Sativus L.)的连续种植障碍更为普​​遍。这与在长期单一栽培中的土壤微生物和生态环境中的不平衡有关。它假设与绿色大蒜的间作将通过改变土壤微生态地位来缓解黄瓜的连续种植障碍。进行了一种基于罐的实验,以研究绿色大蒜 - 黄瓜间作和黄瓜单剖盈系统。结果表明,通过与绿色大蒜进行间作改善了黄瓜芽生物质。然而,土壤细菌和放线菌的群体增​​加,而真菌人口减少。脂肪酸甲酯(名称)型材表明,土壤含有更具真菌名称生物标志物(18:1ω9c,18:2Ω6,9)和更高的真菌:单一栽培系统中的细菌比,而细菌比例更多的细菌名称生物标志物(CY17:0 ,CY19:0,16:1ω7C10,ME16:0,10me17:0,10ME18:0)在间作条件下观察到。此外,在间作系统下观察到显着(P <0.05)较高的土壤转化酶和碱性磷酸酶活性,有机物和可用的N,P和K含量。与单一的系统相比,这些在间作系统中的散装和根际土壤都很高。这些研究结果表明,通过改善土壤微生物群落,酶活性和营养可用性的不同组成,与绿色大蒜的间作可以减轻黄瓜的连续作用障碍。

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