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Characteristics and nutrient function of intestinal bacterial communities in black soldier fly (Hermetia illucens L.) larvae in livestock manure conversion

机译:黑士兵飞行中肠道细菌社区的特征和营养功能(Hermetia issulcens L.)幼虫在牲畜粪便转换

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摘要

The potential utility of black soldier fly larvae (BSFL) to convert animal waste into harvested protein or lipid sources for feeding animal or producing biodiesel provides a new strategy for agricultural waste management. In this study, the taxonomic structure and potential metabolic and nutrient functions of the intestinal bacterial communities of BSFL were investigated in chicken and swine manure conversion systems. Proteobacteria, Firmicutes and Bacteroidetes were the dominant phyla in the BSFL gut in both the swine and chicken manure systems. After the larvae were fed manure, the proportion of Proteobacteria in their gut significantly decreased, while that of Bacteroidetes remarkably increased. Compared with the original intestinal bacterial community, approximately 90 and 109 new genera were observed in the BSFL gut during chicken and swine manure conversion, and at least half of the initial intestinal genera found remained in the gut during manure conversion. This result may be due to the presence of specialized crypts or paunches that promote microbial persistence and bacteria–host interactions. Ten core genera were found in all 21 samples, and the top three phyla among all of the communities in terms of relative abundance were Proteobacteria, Firmicutes and Bacteroidetes. The nutrient elements (OM, TN, TP, TK and CF) of manure may partly affect the succession of gut bacterial communities with one another, while TN and CF are strongly positively correlated with the relative abundance of Providencia. Some bacterial taxa with the reported ability to synthesize amino acids, Rhizobiales, Burkholderia, Bacteroidales, etc., were also observed in the BSFL gut. Functional analysis based on genes showed that intestinal microbes potentially contribute to the nutrition of BSFL and the high‐level amino acid metabolism may partly explain the biological mechanisms of protein accumulation in the BSFL body. These results are helpful in understanding the biological mechanisms of high‐efficiency nutrient conversion in BSFL associated with intestinal microbes.
机译:黑士兵飞幼虫(BSFL)将动物废物转换成收获的蛋白质或脂质来源的潜在效用为饲喂动物或生产生物柴油为农业废物管理提供了新的战略。在这项研究中,研究了BSFL的肠道细菌群落的分类结构和潜在的代谢和营养功能在鸡和猪粪转换系统中。乳化菌,常规和菌兵是在猪和鸡粪系统中的BSFL肠道中的优势植物。幼虫喂养粪便后,肠道中植物的比例显着降低,而Bacteropetes的比例显着增加。与原始肠道细菌群落相比,在鸡和猪粪转化期间在BSFL肠道中观察到大约90和109个新的属,并且在粪便转换期间发现至少一半的初始肠道属仍然存在于肠道中。该结果可能是由于存在促进微生物持久性和细菌宿主相互作用的专用隐窝或潜腹。在所有21个样品中发现了十个核心属,并且在相对丰度的所有社区中的前三个植物是促菌,骨细菌和菌兵。粪肥的营养素(OM,TN,TP,TK和CF)可能部分地影响肠道细菌社区的连续性,而TN和CF与普罗维登西亚的相对丰富具有强烈呈正相关。在BSFL肠道中还观察到一些细菌分类群,具有报告的合成氨基酸,Rhizobiales,Burkowneria,膀翼等能力。基于基因的功能分析表明,肠道微生物可能导致BSFL的营养,高水平的氨基酸代谢可以部分解释BSFL体内蛋白质积累的生物学机制。这些结果有助于了解与肠道微生物相关的BSFL中高效营养转化转化的生物机制。

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