Aquaculture Program, Institut de Recerca i Tecnologia Agroalimentàries (IRTA), Centre de Sant Carles de la Ràpita (IRTA-SCR), Sant Carles de la Ràpita, Spain.
PhD Program in Aquaculture, Universitat Autònoma de Barcelona, Bellaterra, Spain.
Front Immunol. 2021 May 14;12:670279. doi: 10.3389/fimmu.2021.670279. eCollection 2021.
The inclusion of a medicinal plant leaf extract (MPLE) from sage () and lemon verbena (), rich in verbascoside and triterpenic compounds like ursolic acid, was evaluated in gilthead seabream () fed a low fishmeal-based diet (48% crude protein, 17% crude fat, 21.7 MJ kg, 7% fishmeal, 15% fish oil) for 92 days. In particular, the study focused on the effect of these phytogenic compounds on the gut condition by analyzing the transcriptomic profiling (microarray analysis) and histological structure of the intestinal mucosa, as well as the histochemical properties of mucins stored in goblet cells. A total number of 506 differentially expressed genes (285 up- and 221 down-regulated) were found when comparing the transcriptomic profiling of the intestine from fish fed the control and MPLE diets. The gut transcripteractome revealed an expression profile that favored biological mechanisms associated to the 1) immune system, particularly involving T cell activation and differentiation, 2) gut integrity (i.e., adherens and tight junctions) and cellular proliferation, and 3) cellular proteolytic pathways. The histological analysis showed that the MPLE dietary supplementation promoted an increase in the number of intestinal goblet cells and modified the composition of mucins' glycoproteins stored in goblet cells, with an increase in the staining intensity of neutral mucins, as well as in mucins rich in carboxylated and weakly sulfated glycoconjugates, particularly those rich in sialic acid residues. The integration of transcriptomic and histological results showed that the evaluated MPLE from sage and lemon verbena is responsible for the maintenance of intestinal health, supporting gut homeostasis and increasing the integrity of the intestinal epithelium, which suggests that this phytogenic may be considered as a promising sustainable functional additive for aquafeeds.
从鼠尾草( )和柠檬马鞭草( )中提取的药用植物叶提取物(MPLE),富含类叶升麻苷和熊果酸等三萜类化合物,在以低鱼粉为基础的饮食(48%粗蛋白,17%粗脂肪,21.7 MJ kg,7%鱼粉,15%鱼油)中饲养的金头鲷( )中进行了 92 天的评估。特别是,该研究通过分析肠道黏膜的转录组谱(微阵列分析)和组织学结构,以及杯状细胞中储存的粘蛋白的组织化学特性,重点研究了这些植物化合物对肠道状况的影响。当比较对照和 MPLE 饮食组鱼类肠道的转录组谱时,发现了 506 个差异表达基因(285 个上调和 221 个下调)。肠道转录组相互作用组揭示了一种表达谱,有利于与 1)免疫系统相关的生物学机制,特别是涉及 T 细胞激活和分化,2)肠道完整性(即黏附连接和紧密连接)和细胞增殖,以及 3)细胞蛋白水解途径。组织学分析表明,MPLE 饮食补充剂促进了肠道杯状细胞数量的增加,并改变了杯状细胞中储存的粘蛋白糖蛋白的组成,中性粘蛋白的染色强度增加,以及富含羧基和弱硫酸化糖缀合物的粘蛋白增加,特别是富含唾液酸残基的粘蛋白。转录组和组织学结果的综合表明,评估的来自鼠尾草和柠檬马鞭草的 MPLE 负责维持肠道健康,支持肠道内稳态并增加肠道上皮的完整性,这表明这种植物性化合物可能被视为有前途的水产饲料可持续功能性添加剂。