Effects of Dazomet Fumigation on Soil Phosphorus and the Composition of Harboring Microbial Communities.

Bin Huang, Dongdong Yan, Qiuxia Wang, Wensheng Fang, Zhaoxin Song, Hongyan Cheng, Yuan Li, Canbin Ouyang, Qingli Han, Xi Jin, Aocheng Cao

Journal: Journal of agricultural and food chemistry 2021;68(18):5049-5058

PMID: 32134657

Abstract

The soil phosphorus (P) cycle and P transformation are largely driven by the soil bacterial microbial community. However, little is known about the effects of dazomet (DZ) soil fumigation on soil P and soil microbial communities associated with P transformation. This research investigated P released from three farm soils as a result of DZ fumigation and changes in enzyme activity, gene abundance, and the encoding alkaline phosphatase microbial community. After DZ fumigation, we observed a briefly significant increase in the available P and the active P fractionation. The soil ALP activity, 16 abundance, and the gene decreased significantly after DZ fumigation. The abundance and diversity of -harboring microbes also decreased shortly after fumigation, increased significantly 14-28 days later, and then decreased again toward the end of the experimental period of 86 days. The shared OTUs between treatments became fewer with increasing time after fumigation. The changes in available P and the active P fractionation after DZ fumigation were significantly correlated with the abundance of the dominant -harboring microbes. DZ fumigation promoted P mineralization in these farm soils and changed the composition of -harboring microbial communities, which will benefit crops able to absorb and use P.

Address: Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.; Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.; Beijing Innovation Consortium of Agriculture Research System, Beijing 100193, China.; College of Biodiversity Conservation, Southwest Forestry University, Kunming 650224, China.; IPPCAAS-BU Joint Research Centre for Soil Remediation, Baoding University, Hebei 071000, China.

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