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首页> 外文期刊>Agroforestry Systems >Integrated evaluation of soil fertility in Ginkgo (Ginkgo biloba L.) agroforestry systems in Jiangsu, China
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Integrated evaluation of soil fertility in Ginkgo (Ginkgo biloba L.) agroforestry systems in Jiangsu, China

机译:中国江苏省银杏农林业系统土壤肥力的综合评价

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Ginkgo (Ginkgo biloba L.) is a traditional economic tree species in China, and often cultivated in agroforestry systems. The objective of the study was to examine the effects of different Ginkgo and crop species combinations on soil fertility. We established two Ginkgo and crop species systems: Ginkgo + wheat + soybean (G+W+S), Ginkgo + rape + soybean (G+R+S), and one Ginkgo + mulberry (G+M) system, one pure mulberry plantation (M), and one crop systems of rape + soybean (R+S) in the field. Soil chemical properties and enzymes activities were measured 4 years after planting. These soil chemical properties and enzyme activities were used as soil fertility indicators (FI). Soil fertility of the five planting systems was finally evaluated by using improved Analytic Hierarchy Process (AHP). The result showed that soil chemical properties (including pH, organic matter, total N, hydrolysable N, available P and K, total K) and soil enzyme activities (including catalase, sucrase, urease, dehydrogenase, phosphatase, polyphenol oxidase and protease) in the five planting systems were significantly different from each other (P = 0.0237). The above parameters were also different at different soil depths. The concentration of total N, P, organic matter, available P and K of soil decreased significantly with soil depth (P = 0.0146), however, pH increased. The concentrations of organic matter, total N, hydrolysable N, available P and K of soil under rape + soybean (R+S) was lowest among the five planting systems. The activities of sucrase, urease, dehydrogenase, phosphatase and protease decreased with soil depth, however, the activity of catalase and polyphenol oxidase increased. Except for catalase, the activities of these enzymes in the R+S system were the lowest among the five planting systems. The integrated evaluation of soil fertility showed that soil fertility indicators (FI) were significantly different, and the FI values for the five systems followed order: G+M (0.847) > G+W+S (0.446) > M (0.399) > G+R+S (0.343) > R+S (0.211). These results indicated that adoption of a Ginkgo-crop combination could lead to increased long-term sustainability of soil fertility by improving levels of soil organic matter, pH, available nutrient and soil enzyme activity.
机译:银杏(Ginkgo biloba L.)是中国传统的经济树种,通常在农林业系统中种植。该研究的目的是检验不同银杏和农作物物种组合对土壤肥力的影响。我们建立了两种银杏和农作物物种系统:银杏+小麦+大豆(G + W + S),银杏+油菜+大豆(G + R + S),一种银杏+桑树(G + M)系统,一种纯桑树种植园(M),以及田间的一种油菜+大豆(R + S)作物。种植4年后测量土壤化学性质和酶活性。这些土壤化学性质和酶活性用作土壤肥力指标(FI)。最后,使用改进的层次分析法(AHP)评估了五个种植系统的土壤肥力。结果表明,土壤化学性质(包括pH,有机质,总氮,可水解氮,有效磷和钾,总钾)和土壤酶活性(包括过氧化氢酶,蔗糖酶,脲酶,脱氢酶,磷酸酶,多酚氧化酶和蛋白酶)。这五个种植系统之间存在显着差异(P = 0.0237)。上述参数在不同的土壤深度下也不同。土壤总氮,磷,有机质,有效磷和钾的浓度随土壤深度的增加而显着降低(P = 0.0146),但pH值升高。在五个种植系统中,油菜+大豆(R + S)下土壤有机质,总氮,可水解氮,有效磷和钾的含量最低。蔗糖酶,脲酶,脱氢酶,磷酸酶和蛋白酶的活性随土壤深度而降低,而过氧化氢酶和多酚氧化酶的活性则增加。除过氧化氢酶外,R + S系统中这些酶的活性在五个种植系统中最低。土壤肥力的综合评估表明,土壤肥力指标(FI)显着不同,五个系统的FI值遵循以下顺序:G + M(0.847)> G + W + S(0.446)> M(0.399)> G + R + S(0.343)> R + S(0.211)。这些结果表明,采用银杏-农作物组合可以通过提高土壤有机质,pH,可用养分和土壤酶活性来提高土壤肥力的长期可持续性。

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