Organic Fertilizer with High Nutrient Levels Affected Peanut-Growing Soil Bacteria More Than Fungi at Low Doses

Author:

Zhang Xianying12,Li Pengcheng1,Zhao Mingyi13,Wang Shuqiang1,Sun Baoyi1,Zhang Yulan145ORCID,Wang Yonghuan6,Chen Zhenhua1,Xie Hongtu1,Jiang Nan145,Li Tingting7

Affiliation:

1. CAS Key Laboratory of Forest Ecology and Silviculture, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China

2. College of Life Science and Technology, Shenyang Agricultural University, Shenyang 110866, China

3. College of Land and Environment, Shenyang Agricultural University, Shenyang 110866, China

4. Key Laboratory of Conservation Tillage and Ecological Agriculture, Shenyang 110016, China

5. National Field Observation and Research Station of Shenyang Agro-Ecosystems, Shenyang 110107, China

6. Liaoning Agricultural Development Service Center, Shenyang 110164, China

7. Shenyang Research Institute of Chemical Industry, Shenyang 110021, China

Abstract

The breeding of laying hens and broilers in China has increased tremendously. Wet organic fertilizer prepared from hen manure using high-temperature container fermentation preserves high levels of nutrients and a diverse microbial community. We applied low doses of organic fertilizer to peanuts in the black soil area of China’s northeastern region. Based on the calculation of nitrogen content, treatments were set as follows: chemical fertilizer (PCF), organic fertilizer (POF, 4500 kg·ha−1), and replacement of 50% chemical fertilizer with organic fertilizer (PR, 2250 kg·ha−1). Compared to the plots with chemical fertilizers, the use of organic fertilizer and replacing 50% of the chemical fertilizers with organic fertilizer significantly increased peanut yields. Both the organic fertilizer and replacing 50% of the chemical fertilizers with organic fertilizer did not significantly affect the activities of the most tested soil enzymes related to carbon transformation and the absolute abundance of microorganisms. However, they did significantly enhance soil dehydrogenase and α-glucosidase. The community abundance ratio of fungi/bacteria trended downward, leading to soil with a high-fertility bacterial composition. The replacement of 50% chemical fertilizer with organic fertilizer significantly enhanced the species richness and diversity of the bacterial and fungal communities. Organic fertilizer treatment significantly increased the relative abundance of Gemmatimonas and Sphingomonas. The relative abundance of Mycobacterium in the treatment where 50% of the chemical fertilizers were replaced with organic fertilizer was significantly lower than that in the organic fertilizer treatment. PCoA results showed that the low-dose organic fertilizer treatment, replacing 50% of the chemical fertilizers with organic fertilizer, had a significant impact on the composition of soil bacterial communities.

Funder

Strategic Priority Research Program of the Chinese Academy of Sciences

Major Program of the Institute of Applied Ecology, Chinese Academy of Sciences

National Key RD Program

Liaoning Provincial Department of Science and Technology Project “Liaoning Rural Science-Technology Specialised Action Plan”

Publisher

MDPI AG

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