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养分缺乏对双季种植系统中土壤微生物群落结构的影响。

The impact of nutrient deficiency on the structure of soil microbial communities within a double-cropping system.

作者信息

Yang Rulan, Sun Zheng, Gong Yu, Zhou Peng, Zhang Xinping, Wang Jie, Dong Qiang, Gao Fei

机构信息

College of Agronomy, Shanxi Agricultural University, Taiyuan, China.

Laboratory of Green Innovation, Advanced Institute of Natural Sciences, Beijing Normal University, Zhuhai, China.

出版信息

Front Plant Sci. 2025 Jan 29;16:1487687. doi: 10.3389/fpls.2025.1487687. eCollection 2025.

Abstract

In the North China Plain, it is common for farmers to regularly clear crop residues from their fields. The prevalent practice of fertilization in this region continues to depend heavily on the use of compound fertilizers. Howere , long-term single fertilizer application has become the norm in the present agricultural production, which not only destroys the crop rotation system but also negatively affects the soil environment and crop yields. The current knowledge of how nutrient deficits affect the microbial community structure in double-cropping systems is still limited. To clarify the specific response of soil microorganisms to the absence of key nutrients in the ecosystems of the annual double cropping system, this study investigated how the lack of essential nutrients affected the diversity, abundance, and functional dynamics of microorganisms in the soil, and designed five treatment methods: (1) CK, nofertilizer treatment; (2) NPK, adequate nitrogen fertilizer, phosphorus fertilizer, and potassium fertilizer treatment; (3) PK, nitrogen deficiency treatment; (4) NK, phosphorus deficiency treatment; and (5) NP, potassium deficiency treatment. The results showed that in two growing seasons, NPK treatment increased the yields of wheat and corn by 16.9% and 27.0%, respectively, while NK and NP treatments increased by 13.4%, 5.4%, 25.0%, and 17.9%, respectively, and the total annual yield increased by 21.1%. In addition, NPK treatment promoted the microbial diversity and abundance of wheat and maize, and balanced fertilization provided more comprehensive nutritional support for crops. Compared to other nutrient-deficient treatments, NPK treatment substantially increased the abundance and functional diversity of soil bacterial and fungal communities (p<0.05). The structure and abundance of soil microbial communities are significantly correlated with soil physicochemical factors that involve organic matter, pH, potassium content, phosphorus, and nitrogen levels. pH is the primary environmental factor influencing the diversity of soil microbial communities.

摘要

在华北平原,农民定期清理田间作物残茬是常见的做法。该地区普遍的施肥方式仍然严重依赖复合肥的使用。然而,长期单一施肥已成为当前农业生产的常态,这不仅破坏了作物轮作系统,还对土壤环境和作物产量产生负面影响。目前关于养分亏缺如何影响双季种植系统中微生物群落结构的认识仍然有限。为了阐明土壤微生物对一年两熟制生态系统中关键养分缺失的具体响应,本研究调查了必需养分的缺乏如何影响土壤中微生物的多样性、丰度和功能动态,并设计了五种处理方法:(1)CK,不施肥处理;(2)NPK,充足氮肥、磷肥和钾肥处理;(3)PK,缺氮处理;(4)NK,缺磷处理;(5)NP,缺钾处理。结果表明,在两个生长季中,NPK处理使小麦和玉米产量分别提高了16.9%和27.0%,而NK和NP处理分别提高了13.4%、5.4%、25.0%和17.9%,全年总产量提高了21.1%。此外,NPK处理促进了小麦和玉米的微生物多样性和丰度,平衡施肥为作物提供了更全面的营养支持。与其他养分缺乏处理相比,NPK处理显著增加了土壤细菌和真菌群落的丰度和功能多样性(p<0.05)。土壤微生物群落的结构和丰度与涉及有机质、pH值、钾含量、磷和氮水平的土壤理化因子显著相关。pH值是影响土壤微生物群落多样性的主要环境因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0a1/11814463/84afe13d9d2b/fpls-16-1487687-g001.jpg

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