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Soil quality, microbial functions and tomato yield under cover crop mulching in the Mediterranean environment

机译:地中海环境下覆草覆盖下的土壤质量,微生物功能和番茄产量

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An experiment concerning the biological and chemical responses of soil to cover crop mulching was carried out in two adjacent experimental fields (2012 and 2013) under different climatic conditions in the Mediterranean environment (Central Italy). The Monthly Aridity Index was calculated in order to verify the relationship between soil properties and climatic factors under three different cover crop mulches: Vicia villosa Roth (HV), Phacelia tanacetifolia Benth. (LP), and Sinapis alba L. (WM). A conventional management was also included in the experimental fields as control (C). Soil samples were collected at 0-20 cm depth after the transplanting and the harvesting of tomato (May and August, respectively), in order to assess the initial and residual effects of mulching on soil quality. In the two experimental years, the amount of precipitation from May to August was 110 mm in 2012 and 172 mm in 2013. The average values of AI were 18 and 49 in 2012 and 2013, respectively. LP mulching was sensitive to low precipitation levels in terms of aboveground decomposition rate (the variation of dry matter from May to August 2012 was -53% in LP, 64% in HV and 69% in WM) and a lower tomato yield compared to the control in 2012 (4.2 kg m(-2) in LP and 5.2 kg m(-2) in C). WM mulching was sensitive to low precipitation in terms of soil nutrient storage (from May to August 2012 the variation of soil C was 19% in WM., 6% in C, -5 % in LP and 10% in HV; the variation of soil N was 44% in WM, 2% in C, -2% in LP and 13% in HV). Soil microbial activity and functional diversity were strongly affected by the climatic conditions in all mulching treatments. In particular, precipitation influenced soil C availability, which enhanced microbial functional diversity. In short, the effects of lacy phacelia, white mustard and hairy vetch mulching on soil quality, microbial functions and tomato yield were influenced by summer precipitation and temperature in the Mediterranean environment. (C) 2014 Elsevier B.V. All rights reserved.
机译:在地中海环境(意大利中部)的不同气候条件下,在两个相邻的试验场(2012年和2013年)进行了涉及土壤覆盖农作物覆盖的生物学和化学反应的实验。计算月度干旱指数是为了验证三种不同覆盖作物覆盖物下的土壤特性与气候因素之间的关系:蚕豆(Vicia villosa Roth,HV),草楠(Phacelia tanacetifolia Benth)。 (LP)和Sinapis alba L.(WM)。实验领域还包括常规管理方法作为对照(C)。番茄移栽和收获后(分别为五月和八月),在0-20厘米深度处收集土壤样品,以评估覆盖对土壤质量的初始和残留影响。在两个实验年中,2012年5月至8月的降水量为110毫米,2013年为172毫米。2012年和2013年的AI平均值分别为18和49。就地上分解速率而言,低产覆盖对低降水量敏感(2012年5月至2012年8月干物质的变化为-53%,高产为64%,西麦为69%),而番茄单产比低。 2012年控制(LP中为4.2 kg m(-2),C中为5.2 kg m(-2))。 WM覆盖对土壤养分储量低降水很敏感(2012年5月至2012年8月,WM的土壤碳变化为19%,C的变化为6%,LP的变化为-5%,HV的变化为10%; WM中土壤氮为44%,C中为2%,LP中为-2%,HV中为13%。在所有覆盖处理中,气候条件都对土壤微生物活性和功能多样性产生强烈影响。特别是,降水影响了土壤碳的有效性,从而增强了微生物的功能多样性。简而言之,地中海环境中夏季降水和温度会影响蕾丝状的速度,白芥末和紫菜覆盖对土壤质量,微生物功能和番茄产量的影响。 (C)2014 Elsevier B.V.保留所有权利。

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