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不同管理方式对葡萄园土壤微生物多样性的影响。

Effects of different management regimes on microbial biodiversity in vineyard soils.

机构信息

Department of Soil Science and Plant Nutrition, Hochschule Geisenheim University, Geisenheim, Germany.

Department of General and Organic Viticulture, Hochschule Geisenheim University, Geisenheim, Germany.

出版信息

Sci Rep. 2018 Jun 20;8(1):9393. doi: 10.1038/s41598-018-27743-0.

Abstract

An active and diverse soil biota is important for maintaining crop productivity and quality, and preservation of these traits is a major goal of sustainable farming. This study aimed at unravelling the impact of different management practices on soil fungal and bacterial biodiversity in vineyards as a model for permanent crops. Species diversity was assessed using an amplicon sequencing approach in a long-term field experiment in the Rheingau wine region of Germany where integrated, organic and biodynamic management practices had been in place for 10 years. Fungal community composition under integrated management differed significantly from organic and biodynamic management, whereas fungal species richness remained unaffected. Soil under integrated management had a significantly reduced bacterial species richness compared to organic, but community composition was similar to organically and biodynamically managed soils. Highest fungal richness was obtained under cover crop between rows in topsoil, arising from cover cropping and organic carbon supply.

摘要

活跃多样的土壤生物群对于维持作物生产力和质量非常重要,而保持这些特性是可持续农业的主要目标。本研究旨在揭示不同管理措施对葡萄园土壤真菌和细菌生物多样性的影响,葡萄园是永久性作物的一个典范。在德国莱茵高葡萄酒产区的一个长期田间试验中,采用扩增子测序方法评估了物种多样性,该地区已采用综合管理、有机管理和生物动力管理措施 10 年。综合管理下的真菌群落组成与有机管理和生物动力管理有显著差异,而真菌丰富度不受影响。与有机管理相比,综合管理下的土壤细菌物种丰富度显著降低,但群落组成与有机和生物动力管理的土壤相似。在表土中行间的覆盖作物下获得了最高的真菌丰富度,这归因于覆盖作物和有机碳供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef62/6010416/ec0b01806e81/41598_2018_27743_Fig7_HTML.jpg

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