Effect of moisture content on larval gut microbiome and the conversion of pig manure by black soldier fly

肥料 伊卢森斯爱马仕 含水量 食品科学 营养物 动物科学 水分 作文(语言) 生物 有机质 粪便 化学 厚壁菌 农学 幼虫 细菌 植物 微生物学 生态学 语言学 哲学 岩土工程 有机化学 工程类 16S核糖体RNA 遗传学
作者
Lili Wang,Wang Shengwen,Ren-can Yang,Bin Zhang,Le Xu,HU Qing-quan,Zhi-Yong Zhao,Zhenhui Cao
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:912: 169579-169579
标识
DOI:10.1016/j.scitotenv.2023.169579
摘要

The study investigated the influence of varied moisture levels in pig manure on the gut microbiome of black soldier fly larvae (BSFL) and their waste conversion efficiency. This encompassed alterations in nutrient components of both BSFL and pig manure, diversity and characterization of the BSFL gut microbiota, and the reciprocal effects between the BSFL gut microbiota and their growth performance and nutrient composition. Additionally, the investigation delved into the changes in the bacterial community and the presence of potential pathogenic bacteria in pig manure. An initial mixture of fresh pig manure and wheat bran was prepared with a 60 % moisture content (Group A). Distilled water was subsequently added to adjust the moisture levels, resulting in mixtures with 65 % (Group B), 70 % (Group C), and 75 % (Group D) moisture content. Each group underwent BSFL digestion over ten days. Groups C (3.87 ± 0.05 mg/worm) and D (3.97 ± 0.08 mg/worm) showed significantly higher bioconversion efficiencies and enhanced BSFL growth compared to Groups A (2.66 ± 0.21 mg/worm) and B (3.09 ± 0.09 mg/worm) (P < 0.05). A 75 % moisture level was identified as ideal, positively influencing fecal conversion efficiency (FCE) (9.57 ± 0.14 %), crude fat intake (8.92 ± 0.56 %), protein (46.60 ± 0.54 %), and total phosphorus (1.37 ± 0.08 %) from pig manure, and subsequent nutrient accumulation in BSFLs. A decline in larval crude ash content indicated higher organic matter and an increased pig manure conversion rate with elevated moisture. High-throughput sequencing and diversity analyses confirmed different moisture contents influenced the BSFL gut microbiota. Bacteroidetes (32.7–62.0 %), Proteobacteria (6.8–29.3 %), Firmicutes (5.8–23.4 %), and Actinobacteria (1.9–29.0 %) were predominant phyla. A 75 % moisture content significantly impacted the BSFL biomass conversion and growth performance. Additionally, Larval feces met non-hazardous fertilizer standards, according to NY-525 (2012).
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