首页> 外文期刊>The Science of the Total Environment >Appraisal of lignocellusoic biomass degrading potential of three earthworm species using vermireactor mediated with spent mushroom substrate: Compost quality, crystallinity, and microbial community structural analysis
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Appraisal of lignocellusoic biomass degrading potential of three earthworm species using vermireactor mediated with spent mushroom substrate: Compost quality, crystallinity, and microbial community structural analysis

机译:使用腐烂的蘑菇基质介导的反应器评估三种earth木质纤维素生物质的降解潜力:堆肥质量,结晶度和微生物群落结构分析

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摘要

Spent mushroom substrate (SMS) is a recalcitrant lignocellulosic waste. Recycling of SMS through composting has been reported; however, the process is lengthy due to its complex biochemical composition. Although vermitechnology is known for its high efficiency, it has rarely been applied to recycle SMS. In this study, the qualitative value of vermicomposted SMS mediated by three earthworm species (i.e., Eisenia fetida, Eudrilus eugeniae, and Perionyx excavatus) was evaluated on the basis of nutrient availability, microbial activity, phospholipid fatty acid (PLFA) profiles, and seed germination assays. Degradation profiles of the lignocellulosic substrate in the vermireactors were assessed by monitoring the changes in crystallinity and distribution of functional groups using X-ray diffraction (XRD) and Fourier transform infrared spectroscopy, respectively. Total organic carbon decreased by 1.4-3.5 folds with approximately 2.1-2.4 folds increase in nitrogen and phosphorus availability in all vermibeds. Interestingly, pH declined in the Eisenia and Eudrilus systems but increased in the Perionyx-vermibeds. XRD-derived crystallinity index was reduced significantly by 1.37 folds in Perionyx-vermicompost with concurrent microbial enrichment. Further, profuse abundance of vital functional groups (C=O, NH. and OH) was clearly observed in the vermicompost with Perionyx followed by that with Eisenia. Moreover, PLFA illustrated significant variations in fatty acid distributions and microbial communities of the three vermicomposting systems. The seed germination assay showed that the germination index and relative root-shoot vigor of Perionyx-vermicompost treated seeds were 1.05-1.30 times greater than those of Eisenia and Eudrilus vermicompost treated ones. The results suggest that SMS degradability was affected by the growth of a healthy microbial community through vermicomposting.
机译:废蘑菇底物(SMS)是难降解的木质纤维素废料。据报道,通过堆肥回收SMS。然而,由于其复杂的生化组成,该过程是漫长的。尽管蠕虫技术以其高效率而闻名,但很少用于回收SMS。在这项研究中,基于营养物的可利用性,微生物活性,磷脂脂肪酸(PLFA)谱和种子,评估了由三种worm(Eisenia fetida,Euderlus eugeniae和Perionyx excavatus)介导的ver杂SMS的定性价值。发芽试验。通过分别使用X射线衍射(XRD)和傅里叶变换红外光谱法监测结晶度和官能团分布的变化,评估了反应器中木质纤维素基质的降解情况。在所有生物中,总有机碳减少了1.4-3.5倍,其中氮和磷的利用率增加了约2.1-2.4倍。有趣的是,Eisenia和Eudrilus系统的pH下降,但Perionyx-蠕虫的pH上升。 X射线衍生的结晶度指数在Perionyx-vermicompost中显着降低了1.37倍,同时发生了微生物富集。此外,在Percomyx紧随其后的Ecomnia中,在vercompost中清楚地观察到大量重要的功能基团(C = O,NH和OH)。此外,PLFA说明了三种ver堆肥系统的脂肪酸分布和微生物群落的显着变化。种子发芽试验表明,Perionyx-vermicompost处理的种子的发芽指数和相对根尖活力是Eisenia和Eudrilus vermicompost处理的种子的1.05-1.30倍。结果表明,通过ver堆肥,健康微生物群落的生长会影响SMS的降解性。

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