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施肥组合对黄瓜品质和土壤微生物群落的影响。

Effect of fertilization combination on cucumber quality and soil microbial community.

作者信息

Wang Mei, Xu Yu, Ni Haiping, Ren Shiai, Li Ni, Wu Yuxia, Yang Yan, Liu Yumin, Liu Zongzheng, Liu Yingchun, Shi Jing, Zhang Youming, Jiang Lihua, Tu Qiang

机构信息

Institute of Agricultural Resources and Environment, Shandong Academy of Agricultural Sciences, Jinan, China.

Helmholtz International Lab for Anti-Infectives, State Key Laboratory of Microbial Technology, Shandong University-Helmholtz Institute of Biotechnology, Shandong University, Qingdao, China.

出版信息

Front Microbiol. 2023 Feb 23;14:1122278. doi: 10.3389/fmicb.2023.1122278. eCollection 2023.

Abstract

Due to the lack of scientific guidance on the usage of fertilizer, the overuse of chemical and organic fertilizer is commonly witnessed all over the world, which causes soil degradation and leads to environmental pollution. The effect of fertilizer strategies on soil properties, cucumber nutrients, and microbial community was investigated in this study with the aim to explore an optimized and enhanced fertilizer strategy. There were five fertilizer strategies conducted including CK (no fertilizer), M (cow dung manure only), NPK (chemical fertilizer only), NPKM (chemical fertilizer combined with manure), and DNPKM (30%-reducing chemical fertilizer combined with manure). It was found that different fertilizer strategies significantly affected the soil organic matter and nutrient levels and cucumber production and nutrient contents of the experimental field. Different fertilizer strategies showed dramatic effects on the alpha- and beta-diversity of soil microbial communities. Moreover, NPKM and DNPKM groups could significantly improve the bacterial abundance and fungal diversity. In addition, the structure of microbial communities was significantly changed in the presence of manure, chemical fertilizer, and their combination. Optimized combination of NPK with M improved the abundance of aerobic, biofilm formation-related, and Gram-negative bacteria and suppressed the anaerobic and Gram-positive bacteria. The presence of saprotrophs fungi was enhanced by all fertilizer strategies, especially the plethora of . The combination of manure with chemical fertilizer could improve the availability of nutrients, and therefore reduce the adverse effects and potential risks induced by excessive fertilizer application. In conclusion, the new fertilization approach can not only meet the growth requirements of cucumber after reduced fertilization, but also protect soil health, which provides a new candidate for the eco-friendly technology to satisfy the topic of carbon neutrality.

摘要

由于缺乏关于肥料使用的科学指导,世界各地普遍存在化学肥料和有机肥料的过度使用现象,这导致了土壤退化并造成环境污染。本研究调查了施肥策略对土壤性质、黄瓜养分和微生物群落的影响,旨在探索一种优化和强化的施肥策略。共实施了五种施肥策略,包括CK(不施肥)、M(仅施牛粪)、NPK(仅施化肥)、NPKM(化肥与粪肥结合)和DNPKM(减少30%化肥与粪肥结合)。结果发现,不同的施肥策略显著影响了试验田的土壤有机质和养分水平、黄瓜产量和养分含量。不同的施肥策略对土壤微生物群落的α-和β-多样性有显著影响。此外,NPKM和DNPKM组能显著提高细菌丰度和真菌多样性。此外,在粪肥、化肥及其组合存在的情况下,微生物群落结构发生了显著变化。NPK与M的优化组合提高了需氧菌、生物膜形成相关菌和革兰氏阴性菌的丰度,抑制了厌氧菌和革兰氏阳性菌。所有施肥策略都增强了腐生真菌的存在,尤其是大量的……粪肥与化肥的组合可以提高养分的有效性,从而减少过量施肥带来的不利影响和潜在风险。总之,这种新的施肥方法不仅能在减少施肥量的情况下满足黄瓜的生长需求,还能保护土壤健康,为满足碳中和主题的生态友好型技术提供了新的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6853/9996052/929435f4a7de/fmicb-14-1122278-g001.jpg

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