School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou, 730070, China.
School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou, 730070, China.
Sci Total Environ. 2018 Jan 1;610-611:703-708. doi: 10.1016/j.scitotenv.2017.08.104. Epub 2017 Aug 17.
During vermicomposting, the organic wastes can be recycled into high-value products as mediated by earthworms through gut digestion, burrowing, casting and mucus excretion. However, to date, few studies have been done on the role of mucus in vermicomposting system compared to the effects of the other activities. Hence, this study investigated the potential role of earthworms' mucus in the decomposition and humification of organic wastes. For this, the mucus of Eisenia fetida was extracted and inoculated into three vermicomposting substrates using cow dung (CD), fruit and vegetable wastes (FVW), and sewage sludge (SS). The results obtained after a 20day experiment showed that the mucus could accelerate the mineralization and humification rates of organic components. The dissolved carbon showed 9.8%-37.5% increase in treatments containing mucus, higher than those in substrates without mucus. Moreover, the mucus significantly stimulated the microbial activity and bacterial abundance, showing the greatest increases in FVW treatments. In addition, the mucus positively stimulated growth of Proteobacteria, but negatively affected the Firmicutes during decomposition. This result suggests that the earthworms' mucus significantly accelerated the decomposition and humification of vermicomposting materials, and could even promote microbial activity, growth, and increase community diversity in vermicomposting systems.
在蚯蚓堆肥过程中,有机废物可通过蚯蚓的肠道消化、打洞、排泄和分泌黏液等作用转化为高价值产品。然而,与其他活动的影响相比,迄今为止,关于黏液在蚯蚓堆肥系统中的作用的研究很少。因此,本研究调查了蚯蚓黏液在有机废物分解和腐殖化中的潜在作用。为此,从赤子爱胜蚓中提取黏液,并将其接种到三种蚯蚓堆肥基质中,分别使用牛粪(CD)、果蔬废物(FVW)和污水污泥(SS)。在 20 天的实验后获得的结果表明,黏液可以加速有机成分的矿化和腐殖化速率。在含有黏液的处理中,溶解碳增加了 9.8%-37.5%,高于不含黏液的基质中的溶解碳。此外,黏液显著刺激了微生物活性和细菌丰度,在 FVW 处理中表现出最大的增加。此外,黏液对变形菌门的生长有积极的刺激作用,但在分解过程中对厚壁菌门有负面影响。这一结果表明,蚯蚓黏液显著加速了蚯蚓堆肥材料的分解和腐殖化过程,甚至可以促进微生物的活性、生长和增加蚯蚓堆肥系统中的群落多样性。