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Composted biochar affects structural dynamics, function and co-occurrence network patterns of fungi community

机译:堆肥生物炭会影响真菌社区的结构动态,功能和共同发生网络模式

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摘要

A few researchers have reported enhancing soil physicochemical properties and reducing greenhouse gas emission using biochar-compost mixture as an alternative method to address soil fertility, soil degradation and climate change. However, information about its effects on soil microbiome has rarely been studied. This investigation was on the impact of a combined biochar-compost application on soil physicochemical variables, fungal community composition, function and network patterns in maize at seedling stage (SS), reproductive stage (RS), and maturity stage (MS). The experimental design consists of five treatments: control (CNT), compost (CMP), composted biochar (CMB), compost fortified with biochar (CFWB), biochar (BCH). The results showed that CFWB, CMB, and CMP increased fungal diversity indices (Shannon, Sobs, and Chao) at the RS and MS stages respectively, compared to BCH and CNT. Distance-based redundancy analysis (db-RDA) at genus level indicated that the pH, available nitrogen, and soil organic matter at SS; available phosphorus at RS; Mg, Mn, Fe, and Zn at MS significantly and positively affected the fungi community. Based on the Linear discriminant analysis (LDA) and effect size (LEfSe) analysis, the results revealed that only Cystofilobasidiaceae and Guehomyces were the MS biomarkers; and significantly enriched in CFWB. FUNGuild analysis indicated that organic amendments (CFWB, CMB, CMP, and BCH) suppressed the abundance of plant pathogenic fungi (Edenia and Waitea) compared to CNT. Network analysis showed that CFWB and CMB had a high niche overlap and cross-feeding in their networks compared to other treatments. However, CMP network had more positive links with Saprotroph, Pathotroph-Saprotroph-Symbiotroph, Pathotroph and Pathotroph-Symbiotroph compared with other treatments. This study showed that applying biochar, compost and a mixture of both, positively affected soil fungal communities plus co-occurrence network pattern in a single cropping season. Thus, their application as soil amendments may improve the soil fungi ecosystem, soil health and quality and mitigate climate change.
机译:少数研究人员报道了利用生物炭 - 堆肥混合物作为解决土壤肥力,土壤退化和气候变化的替代方法,减少土壤理化化学性质和减少温室气体排放。然而,有关其对土壤微生物组影响的信息很少已经研究过。该调查是对苗期(SS),生殖阶段(RS)和成熟阶段(MS)的玉米土壤物理化学变量,真菌群落组成,功能和网络模式的影响对土壤物理化学变量,真菌群落组成,功能和网络模式的影响。实验设计由五种治疗组成:控制(CNT),堆肥(CMP),堆肥生物炭(CMB),用BioChar(CFWB),BioChar(BCH)强化堆肥。结果表明,与BCH和CNT相比,CFWB,CMB和CMP分别在RS和MS阶段增加了真菌分集指数(Shannon,Sobs和Chao)。属级距离的冗余分析(DB-RDA)表明,SS的pH,可用氮气和土壤有机物;可用磷在卢比; Mg,Mn,Fe和Zn显着且积极影响真菌群落。基于线性判别分析(LDA)和效果大小(lefse)分析,结果表明,只有Cystofilobasideae和Guehomyces是MS Biomarkers;并在CFWB中显着富集。 Fungueld分析表明,与CNT相比,有机修改(CFWB,CMB,CMP和BCH)抑制了植物病原真菌(Edenia和Waidea)的丰富。网络分析表明,与其他处理相比,CFWB和CMB在其网络中具有高的利基重叠和交叉喂养。然而,与其他治疗相比,CMP网络与Saprotroph,Pathotroph-saprotroph-symbofroph,Pathotroph-Saprotoph-symbofroph,Pathotroph和Pathotroph-Symbofroph的阳性有更多的阳性环节。该研究表明,在单一种植季节应用生物炭,堆肥和两者兼容性受影响的土壤真菌社区的混合物加上共有网络模式。因此,它们作为土壤修正案的应用可能会改善土毒真菌生态系统,土壤健康和质量,减轻气候变化。

著录项

  • 来源
    《Science of the total environment》 |2021年第25期|145672.1-145672.13|共13页
  • 作者单位

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

    Coltege of Resources and Environment Northeast Agricultural University Harbin 150030 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Black soil; Trophic mode; FUNGuild; Biochar-compost; Biomarkers; Maize;

    机译:黑土;营养模式;Fungueld;生物炭 - 堆肥;生物标志物;玉米;

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