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通过添加裙带菜和褐藻胶裂解酶的饮食来增强断奶仔猪的回肠功能:一项联合蛋白质组学和代谢组学分析。

Enhanced ileum function in weaned piglets via Laminaria digitata and alginate lyase dietary inclusion: A combined proteomics and metabolomics analysis.

机构信息

LEAF - Linking Landscape, Environment, Agriculture and Food Research Centre, Associate Laboratory TERRA, Instituto Superior de Agronomia, Universidade de Lisboa, Tapada da Ajuda, 1349-017 Lisboa, Portugal.

LIST- Luxembourg Institute of Science and Technology, Biotechnologies and Environmental Analytics Platform (BEAP), Environmental Research and Innovation Department (ERIN), 5, rue Bommel, L-4940 Hautcharage, Luxembourg.

出版信息

J Proteomics. 2023 Oct 30;289:105013. doi: 10.1016/j.jprot.2023.105013. Epub 2023 Sep 27.

Abstract

Laminaria digitata, a brown seaweed with prebiotic properties, can potentially enhance the resilience of weaned piglets to nutritional distress. However, their cell wall polysaccharides elude digestion by monogastric animals' endogenous enzymes. In vitro studies suggest alginate lyase's ability to degrade such polysaccharides. This study aimed to assess the impact of a 10% dietary inclusion of L. digitata and alginate lyase supplementation on the ileum proteome and metabolome, adopting a hypothesis-generating approach. Findings indicated that control piglets escalated glucose usage as an enteric energy source, as evidenced by the increased abundance of PKLR and PCK2 proteins and decreased tissue glucose concentration. Additionally, the inclusion of seaweed fostered a rise in proteins linked to enhanced enterocyte structural integrity (ACTBL2, CRMP1, FLII, EML2 and MYLK), elevated peptidase activity (NAALADL1 and CAPNS1), and heightened anti-inflammatory activity (C3), underscoring improved intestinal function. In addition, seaweed-fed piglets showed a reduced abundance of proteins related to apoptosis (ERN2) and proteolysis (DPP4). Alginate lyase supplementation appeared to amplify the initial effects of seaweed-only feeding, by boosting the number of differential proteins within the same pathways. This amplification is potentially due to increased intracellular nutrient availability, making a compelling case for further exploration of this dietary approach. SIGNIFICANCE: Pig production used to rely heavily on antibiotics and zinc oxide to deal with post-weaning stress in a cost-effective way. Their negative repercussions on public health and the environment have motivated heavy restrictions, and a consequent search for alternative feed ingredients/supplements. One of such alternatives is Laminaria digitata, a brown seaweed whose prebiotic components that can help weaned piglets deal with nutritional stress, by improving their gut health and immune status. However, their recalcitrant cell walls have antinutritional properties, for which alginate lyase supplementation is a possible solution. By evaluating ileal metabolism as influenced by dietary seaweed and enzyme supplementation, we aim at discovering how the weaned piglet adapts to them and what are their effects on this important segment of the digestive system.

摘要

裙带菜是一种具有益生元特性的褐藻,它可能增强断奶仔猪对营养应激的适应能力。然而,它们的细胞壁多糖被单胃动物的内源性酶所消化。体外研究表明,褐藻胶裂解酶具有降解这些多糖的能力。本研究采用产生假说的方法,旨在评估日粮中添加 10%裙带菜和褐藻胶裂解酶对回肠蛋白质组和代谢组的影响。研究结果表明,对照组仔猪增加了葡萄糖的利用作为肠道能量来源,这表现为 PKLR 和 PCK2 蛋白丰度增加和组织葡萄糖浓度降低。此外,添加海藻促进了与增强肠细胞结构完整性相关的蛋白质的增加(ACTBL2、CRMP1、FLII、EML2 和 MYLK)、提高的肽酶活性(NAALADL1 和 CAPNS1)和增强的抗炎活性(C3),这表明肠道功能得到改善。此外,喂海藻的仔猪表现出与细胞凋亡(ERN2)和蛋白水解(DPP4)相关的蛋白质丰度降低。褐藻胶裂解酶的添加似乎通过增加同一途径中的差异蛋白数量放大了仅喂海藻的初始效果。这种放大作用可能是由于细胞内营养物质的可用性增加,这为进一步探索这种饮食方法提供了有力的依据。

意义

过去,猪的生产严重依赖抗生素和氧化锌来以经济有效的方式应对断奶应激。它们对公共健康和环境的负面影响促使人们对其进行了严格限制,从而促使人们寻找替代饲料成分/补充剂。其中一种替代品是裙带菜,这是一种褐藻,其益生元成分可以帮助断奶仔猪应对营养应激,改善其肠道健康和免疫状态。然而,它们顽固的细胞壁具有抗营养特性,而褐藻胶裂解酶的添加是一种可能的解决方案。通过评估日粮中添加海藻和酶对回肠代谢的影响,我们旨在发现断奶仔猪如何适应这些物质,以及它们对这个重要消化段的影响。

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