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不同生物炭对酸性土壤水稻根际土壤微生物群落结构的影响。

Impact of Different Biochars on Microbial Community Structure in the Rhizospheric Soil of Rice Grown in Albic Soil.

机构信息

College of Agricultural Science, Heilongjiang Bayi Agricultural University, Daqing 163319, China.

College of Cultivation and Cultivation, Heilongjiang Academy of Agricultural Sciences, Harbin 150000, China.

出版信息

Molecules. 2021 Aug 7;26(16):4783. doi: 10.3390/molecules26164783.

Abstract

The purpose of this study was to clarify the effects of biochar on the diversity of bacteria and fungi in the rice root zone and to reveal the changes in soil microbial community structure in the root zone after biochar application to provide a scientific basis for the improvement of albic soil. Rice and corn stalk biochar were mixed with albic soil in a pot experiment. Soil samples were collected at the rice maturity stage, soil nutrients were determined, and genomic DNA was extracted. The library was established using polymerase chain reaction (PCR) amplification. The abundance, diversity index, and community structure of the soil bacterial 16SrRNA gene V3 + V4 region and the fungal internal transcribed spacer-1 (ITS1) region were analyzed using Illumina second-generation high-throughput sequencing technology on the MiSeq platform with related bioinformatics. The results revealed that the biochar increased the soil nutrient content of albic soil. The bacteria ACE indexes of treatments of rice straw biochar (SD) and corn straw biochar (SY) were increased by 3.10% and 2.06%, respectively, and the fungi ACE and Chao indices of SD were increased by 7.86% and 14.16%, respectively, compared to conventional control treatment with no biochar (SBCK). The numbers of bacterial and fungal operational taxonomic units (OUT) in SD and SY were increased, respectively, compared to that of SBCK. The relationship between soil bacteria and fungi in the biochar-treated groups was stronger than that in the SBCK. The bacterial and fungal populations were correlated with soil nutrients, which suggested that the impacts of biochar on the soil bacteria and fungi community were indirectly driven by alternation of soil nutrient characteristics. The addition of two types of biochar altered the soil microbial community structure and the effect of rice straw biochar treatment on SD was more pronounced. This study aimed to provide a reference and basic understanding for albic soil improvement by biochar, with good application prospects.

摘要

本研究旨在阐明生物炭对水稻根区细菌和真菌多样性的影响,并揭示生物炭施用后根区土壤微生物群落结构的变化,为改良白浆土提供科学依据。采用盆栽试验,将水稻和玉米秸秆生物炭与白浆土混合。在水稻成熟阶段采集土壤样品,测定土壤养分,并提取基因组 DNA。采用聚合酶链反应(PCR)扩增技术建立文库,在 MiSeq 平台上利用 Illumina 第二代高通量测序技术对土壤细菌 16SrRNA 基因 V3+V4 区和真菌内部转录间隔区-1(ITS1)区的丰度、多样性指数和群落结构进行分析,并进行相关生物信息学分析。结果表明,生物炭增加了白浆土的土壤养分含量。与不添加生物炭的常规对照处理(SBCK)相比,水稻秸秆生物炭(SD)和玉米秸秆生物炭(SY)处理的细菌 ACE 指数分别提高了 3.10%和 2.06%,SD 的真菌 ACE 和 Chao 指数分别提高了 7.86%和 14.16%。SD 和 SY 的细菌和真菌操作分类单元(OUT)数量均有所增加。与 SBCK 相比,生物炭处理组土壤细菌和真菌之间的关系更强。细菌和真菌种群与土壤养分呈正相关,这表明生物炭对土壤细菌和真菌群落的影响是通过土壤养分特征的改变间接驱动的。两种类型的生物炭的添加改变了土壤微生物群落结构,水稻秸秆生物炭处理对 SD 的影响更为显著。本研究旨在为生物炭改良白浆土提供参考和基础认识,具有良好的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/438f/8402013/faabbaecece7/molecules-26-04783-g001.jpg

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