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Three years of biochar amendment alters soil physiochemical properties and fungal community composition in a black soil of northeast China

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TLDR
In this paper, the authors investigated the long-term effects of biochar as a soil amendment in a black soil of northeast China over the long term and found that the changes in these soil characteristics were highly correlated with the amounts of Biochar addition, suggesting that the impacts of longterm biochar amendment on the soil fungal community occurred indirectly as a result of the alteration of soil physiochemical properties.
Abstract
Although biochar amendment has been extensively evaluated as a promising strategy to improve soil quality, most evaluations have been conducted in the laboratory or under short-term field conditions, which restricted us to understand the long-term effects of biochar as a soil amendment. As the residence time of biochar in soils is expected to be hundreds to thousands of years, this study focused on revealing whether biochar addition influences soil physiochemical properties and fungal community composition in a black soil of northeast China over the long term. Biochar was added to the micro-plots at 0%, 2%, 4%, and 8% of the total mass of the top 20 cm of the soil in the spring of 2012, and soil samples were collected seasonally four times in 2014. The results indicate that soil pH, moisture, total C, total N, total P, NO 3 − -N, available K and the C/N ratio significantly increased but soil bulk density and total K content decreased with biochar addition. The soil fungal abundance determined using quantitative real-time PCR showed that the number of fungal ITS gene copies increased with biochar addition. The soil fungal community composition determined using the Illumina MiSeq sequencing method showed that community diversity was not influenced by biochar addition but the community composition was influenced. The impact of biochar on changes in community composition was not reflected at the phylum level, but at the genus and operational taxonomic units (OTU) levels. The relative abundance of Fusarium decreased, but Guehomyces increased with biochar addition over the first three sampling dates. The relative abundances of several OTUs classified as potential crop pathogens decreased with biochar addition, suggesting that biochar amendment may be beneficial in terms of suppressing the occurrence of crop disease over the long term. In addition, canonical correspondence analysis indicated that fungal community composition was associated with soil parameters such as pH, soil moisture, total C, total N, total K and available K. The changes in these soil characteristics were highly correlated with the amounts of biochar addition, suggesting that the impacts of long-term biochar amendment on the soil fungal community occurred indirectly as a result of the alteration of soil physiochemical properties.

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Citations
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Linking N2O Emissions from Biofertilizer-Amended Soil of Tea Plantations to the Abundance and Structure of N2O-Reducing Microbial Communities.

TL;DR: It is shown that biofertilizers can affect the microbial nitrogen transformation process and reduce N2O emissions from agroecosystems and enhance relative abundance of nosZ-harboring denitrifiers in the T. viride biofERTilizer treatments.
Journal ArticleDOI

Impact of biochar amendment on the abundance and structure of diazotrophic community in an alkaline soil.

TL;DR: The results suggest that the addition of biochar or biochar compound fertilizer could increase the abundance and alter the community structure of diazotrophs, which may benefit N fixation in alkaline agricultural soil.
Journal ArticleDOI

Effects of biochar on soil microbial community and functional genes of a landfill cover three years after ecological restoration

TL;DR: Investigation of soil properties, microbial communities, and microbial functional genes related to nutrient cycling were investigated three years after the biochar amendment of the topsoil of a subtropical landfill cover, suggesting that biochar-amended soils were less active in processes involved in C and N cycling but enhanced in processes related to P cycling.
Journal ArticleDOI

Mechanism of biochar as a biostimulation strategy to remove polycyclic aromatic hydrocarbons from heavily contaminated soil in a coking plant

TL;DR: In this article, 12 types of biochar were applied in a heavily contaminated soil from a coking plant to gain insights into the mechanism responsible for the microbial response to the addition of different biochar types into soil and biodegradation removal of polycyclic aromatic hydrocarbons (PAHs).
Journal ArticleDOI

Bioremediation of Hg-contaminated soil by combining a novel Hg-volatilizing Lecythophora sp. fungus, DC-F1, with biochar: Performance and the response of soil fungal community.

TL;DR: High-throughput sequencing showed that the soil fungal community compositions were more largely influenced by DC-F1 addition than by biochar addition, with the proportion of Mortierella increasing and those of Penicillium and Thielavia decreasing with DC-f1 addition.
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