Soil microbial diversity and functional capacity associated with the production of edible mushroom Stropharia rugosoannulata in croplands

Author:

Tang Shaojun1,Fan Tingting2,Jin Lei1,Lei Pin1,Shao Chenxia1,Wu Shenlian1,Yang Yi1,He Yuelin1,Ren Rui1,Xu Jun1

Affiliation:

1. Hunan Institute of Microbiology, Changsha, china

2. College of Forestry, Central South University of Forestry & Technology, Changsha, China

Abstract

In recent years, a rare edible mushroom Stropharia rugosoannulata has become popular. S. rugosoannulata has the characteristics of easy cultivation, low cost, high output value, and low labor requirement, making its economic benefits significantly superior to those of other planting industries. Accumulating research demonstrates that cultivating edible fungus is advantageous for farming soil. The present experiment used idle croplands in winter for S. rugosoannulata cultivation. We explored the effects of S. rugosoannulata cultivation on soil properties and soil microbial community structure in paddy and dry fields, respectively. We cultivated S. rugosoannulata in the fields after planting chili and rice, respectively. The results showed that Chili-S. rugosoannulata and Rice-S. rugosoannulata planting patterns increased the yield, quality and amino acid content of S. rugosoannulata. By analyzing the soil properties, we found that the Chili-S. rugosoannulata and Rice-S. rugosoannulata cropping patterns increased the total nitrogen, available phosphorus, soil organic carbon, and available potassium content of the soil. We used 16s amplicons for bacteria and internal transcribed spacer (ITS) region for fungi to analyze the microbial communities in rhizosphere soils. Notably, S. rugosoannulata cultivation significantly increased the abundance of beneficial microorganisms such as Chloroflexi, Cladosporium and Mortierella and reduce the abundance of Botryotrichumin and Archaeorhizomyces. We consider S. rugosoannulata cultivation in cropland can improve soil properties, regulate the community structure of soil microorganisms, increase the expression abundance of beneficial organisms and ultimately improve the S. rugosoannulata yield and lay a good foundation for a new round of crops after this edible mushroom cultivation.

Funder

National Natural Science Foundation of China

Changsha Key R&D Projects

Hunan Province Key R&D Projects

Hunan Provincial Natural Science Foundation of China

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference55 articles.

1. Sphingomonas: from diversity and genomics to functional role in environmental remediation and plant growth;Asaf;Critical Reviews in Biotechnology,2020

2. Influence of six vegetable cultivars on reproduction of Meloidogyne javanica;Bafokuzara;Journal of Nematology,1983

3. A unique fungal two-component system regulates stress responses, drug sensitivity, sexual development, and virulence of Cryptococcus neoformans;Bahn;Molecular Biology of the Cell,2006

4. Deposition of ammonium and nitrate in the roots of maize seedlings supplied with different nitrogen salts;Bloom;Journal of Experimental Botany,2012

5. Trimmomatic: a flexible trimmer for Illumina sequence data;Bolger;Bioinformatics,2014

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