Enhanced gut microbiome supplementation of essential amino acids in Diploptera punctata fed low-protein plant-based diet

Paul A. Ayayee, Nick Petersen, Jennifer Riusch, Claudia Rauter, Thomas Larsen
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Abstract

Building on our previous work, we investigate how dietary shifts affect gut microbial essential amino acid (EAA) provisioning in the lactating cockroach Diploptera punctata.To that end, we fed cockroaches three distinct diets: a plant-only Gari diet composed of starchy and granulated root tuber Yucca (Manihot esculenta), a dog food diet (DF), and a cellulose-amended dog food (CADF) diet. We anticipated that the high carbohydrate, low protein Gari would highlight increased microbial EAA supplementation to the host.By day 28, we observed distinct profiles of 14 bacterial families in the insect gut microbiomes of the three dietary groups. CADF-fed insects predominantly harbored cellulolytic and nitrogen-fixing bacteria families Streptococcaceae and Xanthomonadaceae. In contrast, Gari-fed insects were enriched in anaerobic lignocellulolytic bacteria families Paludibacteraceae and Dysgonomonadaceae, while DF-fed insects had a prevalence of proteolytic anaerobes Williamwhitmaniaceae and sulfate-reducing bacteria Desulfovibrionaceae. Furthermore, we confirmed significantly higher EAA supplementation in Gari-fed insects than in non-Gari-fed insects based on δ13C-EAA offsets between insect and their diets. The δ13C-EAA offsets between DF and CADF were nearly indistinguishable, highlighting the relevance of using the plant-based Gari in this experiment to unequivocally demonstrate this function in this insect. These results were underscored by lower standard metabolic rate (SMR) relative to the DF insect in Gari-fed (intermediate SMR and dietary quality) and CADF (least SMR and dietary quality) insects.The influence of diet on EAA provisioning and SMR responses in insects underscores the need for further exploration into the role of gut microbial functions in modulating metabolic responses
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为以低蛋白植物为基础的食物喂养的点翅目鸟补充必需氨基酸,增强其肠道微生物群的功能
为此,我们给蟑螂喂食了三种不同的食物:由淀粉和颗粒块根丝兰(Manihot esculenta)组成的纯植物Gari食物、狗粮食物(DF)和纤维素改良狗粮(CADF)食物。我们预计,高碳水化合物、低蛋白质的 Gari 会突出增加宿主的微生物 EAA 补充。到第 28 天时,我们观察到三个饮食组的昆虫肠道微生物组中 14 个细菌家族的不同特征。喂食 CADF 的昆虫主要携带纤维素分解和固氮细菌科链球菌属和黄单胞菌属。与此相反,饲喂 Gari 的昆虫富含厌氧木质纤维分解菌科 Paludibacteraceae 和 Dysgonomonadaceae,而饲喂 DF 的昆虫则盛产蛋白分解厌氧菌 Williamwhitmaniaceae 和硫酸盐还原菌 Desulfovibrionaceae。此外,根据昆虫及其日粮之间的δ13C-EAA偏移量,我们证实饲喂加里的昆虫的EAA补充量明显高于非饲喂加里的昆虫。DF 和 CADF 之间的 δ13C-EA 偏移几乎没有区别,这突出表明了在本实验中使用植物性 Gari 来明确证明这种昆虫的这种功能的相关性。饲喂 Gari(中等 SMR 和食物质量)和 CADF(最低 SMR 和食物质量)的昆虫的标准代谢率(SMR)相对于 DF 昆虫较低,这也强调了这些结果。
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