Literature DB >> 30925229

Mudflat reclamation causes change in the composition of fungal communities under long-term rice cultivation.

Yang Zhang1, Qing Li1, Yinglong Chen1, Qigen Dai1, Jian Hu2.   

Abstract

Fungi play a critical role in farmland ecosystems, especially in improving soil fertility; however, little is known about the changes in fungal communities caused by mudflat reclamation under rice cultivation. In this study, mudflats located in Yancheng, China, which were divided into nine plots with 0, 11, and 20 years of successive rice cultivation histories, were sampled to determine the fungal community composition by using Illumina MiSeq sequencing. Results show that the Shannon diversity of the fungal communities did not change significantly but the species richness increased under mudflat reclamation with long-term rice cultivation. Ascomycota was the dominant phylum throughout the reclaimed mudflats samples, while Sordariomycetes was the dominant class. Fungal functional prediction found that the relative abundance of saprotrophs gradually increased with mudflat reclamation and mainly belonged to Ascomycota after 20 years of successive reclamation. Redundancy analysis showed that electrical conductivity, organic matter, and total nitrogen were the main factors affecting the composition and ecological function of the fungal community during mudflat reclamation. In short, a fungal community dominated by Ascomycota was established during mudflat reclamation under rice cultivation, which is more conducive to promoting soil fertility because of the higher proportion of saprotrophic fungi in Ascomycota.

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Keywords:  Illumina MiSeq sequencing; champignons; culture du riz à long terme; fungi; long-term rice cultivation; mudflat reclamation; réhabilitation des vasières; séquençage MiSeq d’Illumina

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Year:  2019        PMID: 30925229     DOI: 10.1139/cjm-2019-0005

Source DB:  PubMed          Journal:  Can J Microbiol        ISSN: 0008-4166            Impact factor:   2.419


  2 in total

1.  Silicate Fertilizer Amendment Alters Fungal Communities and Accelerates Soil Organic Matter Decomposition.

Authors:  Suvendu Das; Jeong Gu Lee; Song Rae Cho; Hyeon Ji Song; Pil Joo Kim
Journal:  Front Microbiol       Date:  2019-12-20       Impact factor: 5.640

2.  Soil Bacterial Community in the Multiple Cropping System Increased Grain Yield Within 40 Cultivation Years.

Authors:  Tao Chen; Ruiwen Hu; Zhongyi Zheng; Jiayi Yang; Huan Fan; Xiaoqiang Deng; Wang Yao; Qiming Wang; Shuguang Peng; Juan Li
Journal:  Front Plant Sci       Date:  2021-12-20       Impact factor: 5.753

  2 in total

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