Diversity of arbuscular mycorrhizal fungi in no-till and conventionally tilled vineyards

IF 1.2 4区 生物学 Q2 Agricultural and Biological Sciences
F. Oehl, B. Koch
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引用次数: 23

Abstract

The use of a permanent vegetation cover or frequent tillage in vineyards may affect soil water budget, nutrient availability, soil compaction, soil erosion and soil microbe biodiversity, and through all these and other factors also yield and wine quality parameters. The abundance and diversity of arbuscular mycorrhizal fungi (AMF) might also be influenced, but so far effects on AMF by permanent vege-tation cover (= no-tillage systems) or repeated chiseling and rotary-tillaging have rarely been compared in vineyards. The objective of this on-farm study was to determine AMF species richness and diversity in two adjacent vineyards in Palatinate (SW Germany). In both vineyards, grown on fertile Luvisols, the var. “Pinot Gris” was grown for 39 years, but with different soil cultivation and different fertilization strategies. In one vineyard, soil was maintained periodically without vegetation by passing rotatory cultivator and chiseling between the grapevine rows (‘inter-rows’) several times per year, preferably during spring and summer and in dependency of rainfall and ‘weed’ growth, and fertilization was mainly by organic fertilizers in the last ten years before soil sampling. In the other vineyard, a permanent vegetation has been established since planting, dominated by Lolium perenne, and mineral fertilizers were exclusively applied. Despite of similar high nutrient availability in both soils, in particular of phosphorus, astonishing high AMF species richness and diversity were found in both vineyards. In the no-tillage inter-rows, 34 AMF species were found, with a species composition typically for Central European permanent grasslands (Shannon diversity index 2.45). In the tillage system 24 AMF species were found with a composition as known for extensively used, cultivated Central European croplands (diversity index 2.26). We conclude that above all soil cultivation has affected AMF diversity in these Central European vineyards, while the level and type of fertilization affected the AMF communities only on a minor level.
免耕和常规耕作葡萄园丛枝菌根真菌的多样性
葡萄园使用永久植被覆盖或频繁耕作可能会影响土壤水分预算、养分供应、土壤压实、土壤侵蚀和土壤微生物生物多样性,并通过所有这些因素和其他因素影响产量和葡萄酒质量参数。丛枝菌根真菌(AMF)的丰度和多样性也可能受到影响,但到目前为止,很少在葡萄园中比较永久植被覆盖(=免耕系统)或重复凿除和旋耕对AMF的影响。这项农场研究的目的是确定Palatinate(德国西南部)两个相邻葡萄园的AMF物种丰富度和多样性。在这两个葡萄园中,“灰皮诺”变种都生长在肥沃的鲁维索尔,种植了39年,但土壤种植和施肥策略不同。在一个葡萄园中,通过每年几次的旋转耕耘机和葡萄藤行(“行间”)之间的凿挖,定期保持土壤无植被,最好是在春季和夏季,并依赖于降雨和“杂草”生长,在土壤取样前的最后十年中,施肥主要是通过有机肥料。在另一个葡萄园,自种植以来,已经建立了永久性植被,主要是多年生黑麦草,并且只施用矿物肥料。尽管两种土壤中的养分可利用性相似,特别是磷,但在两个葡萄园中都发现了惊人的高AMF物种丰富度和多样性。在免耕间行中,发现了34种AMF物种,其物种组成通常为中欧永久草原(Shannon多样性指数2.45),栽培的中欧农田(多样性指数2.26)。我们得出的结论是,最重要的是,土壤栽培影响了这些中欧葡萄园的AMF多样性,而施肥水平和类型仅在较小程度上影响AMF群落。
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来源期刊
CiteScore
2.50
自引率
0.00%
发文量
0
审稿时长
20 weeks
期刊介绍: The Journal of Applied Botany and Food Quality is the Open Access journal of the German Society for Quality Research on Plant Foods and the Section Applied Botany of the German Botanical Society. It provides a platform for scientists to disseminate recent results of applied plant research in plant physiology and plant ecology, plant biotechnology, plant breeding and cultivation, phytomedicine, plant nutrition, plant stress and resistance, plant microbiology, plant analysis (including -omics techniques), and plant food chemistry. The articles have a clear focus on botanical and plant quality aspects and contain new and innovative information based on state-of-the-art methodologies.
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