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黑水虻幼虫堆肥改变土壤生物化学和细菌群落组成。

Black soldier fly larvae vermicompost alters soil biochemistry and bacterial community composition.

机构信息

College of Natural Research and Environmental Sciences, ZheJiang University, YuHangTang Ave 688ZheJiang Province, HangZhou, 310058, People's Republic of China.

HangZhou GuSheng Technology Company Limited, XiangWang Ave 311118, HangZhou, 311121, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2022 Jun;106(11):4315-4328. doi: 10.1007/s00253-022-11947-6. Epub 2022 May 21.

Abstract

Black soldier fly larvae (Hermetia illucens L. BSFL) bioconversion is a promising biotechnology for food waste recycling, yet little is known about how BSFL vermicompost affects soil health in terms of element availability and related microbial response. In this work, a field soil experiment for luffa (Luffa cylindrica (L.) Roem.) growth was conducted to examine the impacts of BSFL vermicompost (BV, 9750 kg ha, equal to total N input rate of chemically treated soil (CK)) on soil biochemistry and bacterial communities. Relative to CK, application of BV significantly increased total soil carbon by 149% and enhanced catalase and urease activity by 59.2% and 16.2%, respectively. BV increased the degree of aromaticity and humification in dissolved organic matter (DOM) in soil by 28.6% and 27.3%, respectively, compared to CK treatment. Among bacterial communities in soil, Bacteroidetes, Firmicutes, Proteobacteria, and Actinobacteria were the phyla that showed the most substantial alteration in response to BV. Redundancy analysis further revealed that the bacterial community structure was affected by DOM and total phosphorus. Functional analyses indicated that BV enhanced xylanolysis (55.4%) and nitrogen fixation (46.3%), but inhibited nitrification (59.8%). BSFL vermicompost input might effectively prevent the harm of soil borne pathogens (e.g., wilt). Moreover, these function groups strongly correlated with Clostridiales, Actinomycetales, and Nitrospirales. Our study reveals that BSFL vermicompost promoted soil nutrient availability, microbial community succession, and biochemical function optimization, which is conducive to the popularization and application of BSFL vermicompost in the field of soil health. KEY POINTS: • Vermicompost enhanced catalase and urease levels while increased DOM aromaticity. • Vermicompost enriched Bacteroidetes and Firmicutes and improved soil health.

摘要

黑水虻幼虫(Hermetia illucens L. BSFL)生物转化是一种很有前途的生物技术,可用于回收食物垃圾,但人们对 BSFL 蚯蚓粪如何影响土壤健康(就元素可用性和相关微生物响应而言)知之甚少。在这项工作中,进行了一个实地苦瓜(Luffa cylindrica (L.) Roem.)生长实验,以研究 BSFL 蚯蚓粪(BV,9750kg/公顷,相当于化学处理土壤(CK)的总氮输入率)对土壤生物化学和细菌群落的影响。与 CK 相比,BV 的应用使土壤总碳增加了 149%,过氧化氢酶和脲酶活性分别提高了 59.2%和 16.2%。与 CK 处理相比,BV 分别增加了土壤中溶解性有机质(DOM)的芳香度和腐殖化程度 28.6%和 27.3%。在土壤细菌群落中,厚壁菌门、Firmicutes、变形菌门和放线菌门是对 BV 反应最显著的门。冗余分析进一步表明,细菌群落结构受 DOM 和总磷的影响。功能分析表明,BV 增强了木聚糖水解(55.4%)和固氮(46.3%),但抑制了硝化作用(59.8%)。BSFL 蚯蚓粪的投入可能有效地防止土传病原菌(如枯萎病)的危害。此外,这些功能类群与梭状芽孢杆菌、放线菌目和硝化螺旋菌密切相关。我们的研究表明,BSFL 蚯蚓粪促进了土壤养分的有效性、微生物群落的演替和生化功能的优化,这有利于 BSFL 蚯蚓粪在土壤健康领域的推广和应用。 关键点: • 堆肥提高了过氧化氢酶和脲酶水平,同时增加了 DOM 的芳香度。 • 堆肥富集了拟杆菌门和厚壁菌门,改善了土壤健康。

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