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首页> 外文期刊>Geomicrobiology journal >Impact of Nitrogen Fertilizer on the Mycorrhizal Inoculating Potential and Fungal Community Structure in Rhizosphere of Medicinal Plant Curcuma longa L.
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Impact of Nitrogen Fertilizer on the Mycorrhizal Inoculating Potential and Fungal Community Structure in Rhizosphere of Medicinal Plant Curcuma longa L.

机译:氮肥对药用植物莪术植物根际菌根接种潜力和真菌群落结构的影响。

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摘要

Reducing chemical fertilizer while remaining high crop yield has become a trend of agricultural practice. The purpose of this study was to investigate the effects of nitrogen (N) input on the structure of the fungal community and mycorrhizal inoculum potential in rhizosphere of Curcuma longa, aiming to minimize the use of chemicals and optimize the effect of biofertilizer for sustainable turmeric farming. For this, a field study was conducted in two successive years 2015 and 2016 with applications of varrying N fertilizer rates N0 (0 kgN ha(-1) y(-1)), N150 (150 kgN ha(-1) y(-1)), N350 (350 kgN ha(-1) y(-1)), and N500 (500 kgN ha(-1) y(-1)) in combination with mycorrhizal biofertilizer on turmeric plants in Hung-Yen. Rhizosphere soils were then analyzed for the abundance of predominant fungal taxon based on amplicon sequencing of rDNA internal transcribed spacer regions. Metagenomic results indicated significant effects of N inputs on rhizosphere fungal communities composition, with dominance of ascomyceteous fungi under optimized N levels, whereas basidiomycetous fungi were more abundant under higher N input. Operational taxonomic units relating to the predominantly abundant genus Glomus were found apparently in higher proportion under optimized N inputs (N150). The results demonstrate an enhanced productivity and icreased mycorrhizal inoculating potential by appropriated N fertilizer application in turmeric rhizosphere.
机译:减少化肥同时保持高作物产量已成为农业实践的趋势。本研究的目的是探讨氮气(n)投入对莪术症根际的真菌群落和菌根接种潜力的影响,旨在最大限度地减少化学品的使用,并优化生物分析器对可持续姜黄种植的影响。为此,在2015年和2016年的两次连续几年内进行了一个田间研究,该应用是变体N肥率N0(0kgn ha(-1)y(-1)y(-1)),n150(150kgn ha(-1)y( - 1)),N350(350kgn ha(-1)y(-1))和N500(500kgn ha(-1)y(-1)y(-1))与悬尾植物上的菌根生物分析器组合。然后基于RDNA内部转录间隔区的扩增子测序分析根际土壤的大量优势真菌群克。 Metagenomic结果表明了N对根际真菌社区组成的显着影响,具有优化N水平的无腺心理真菌的优势,而基础肌瘤真菌在较高的N个输入下更加丰富。与主要丰富的GloMus相关的运营分类单位显然在优化的N个输入下显然发现了更高的比例(N150)。结果表明,通过在姜黄根际的适当的N肥应用,提高了生产力和ICROARCE的菌根接种潜力。

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