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大麦素和高β-葡聚糖大麦品系对大鼠盲肠至远端结肠短链脂肪酸生成和微生物区系的影响。

Effects of BARLEYmax and high-β-glucan barley line on short-chain fatty acids production and microbiota from the cecum to the distal colon in rats.

机构信息

Studies in Human Life Sciences, Graduate School of Studies in Human Culture, Otsuma Women's University, Chiyoda-ku, Tokyo, Japan.

The Institute of Human Culture Studies, Otsuma Women's University Chiyoda-ku, Tokyo, Japan.

出版信息

PLoS One. 2019 Jun 11;14(6):e0218118. doi: 10.1371/journal.pone.0218118. eCollection 2019.

Abstract

We investigated whether supplementation with the barley line BARLEYmax (Tantangara; BM), which contains three fermentable fibers (fructan, β-glucan, and resistant starch), modifies the microbiota in cecal and distal colonic digesta in addition to short-chain fatty acids (SCFAs) production more favorably than supplementation with a high-β-glucan barley line (BG012; BG). Male Sprague-Dawley rats were randomly divided into 3 groups that were fed an AIN-93G-based diet that contained 5% fiber provided by cellulose (control), BM or BG. Four weeks after starting the respective diets, the animals were sacrificed and digesta from the cecum, proximal colon and distal colon were collected and the SCFA concentrations were quantified. Microbiota in the cecal and distal colonic digesta were analyzed by 16S rRNA sequencing. The concentrations of acetate and n-butyrate in cecal digesta were significantly higher in the BM and BG groups than in the control group, whereas the concentration of total SCFAs in cecal digesta was significantly higher only in the BM group than in the control group. The concentrations of acetate and total SCFAs in the distal colonic digesta were significantly higher only in the BM group than in the control group. The abundance of Bacteroidetes in cecal digesta was significantly higher in the BM group than in the control group. In contrast, the abundance of Firmicutes in cecal digesta was significantly lower in the BM and BG groups than in the control group. These results indicated that BM increased the concentration of total SCFAs in the distal colonic digesta. These changes might have been caused by fructan and resistant starch in addition to β-glucan. In conclusion, fermentable fibers in BM reached the distal colon and modified the microbiota, leading to an increase in the concentration of total SCFAs in the distal colonic digesta, more effectively compared with the high-β-glucan barley line (BG).

摘要

我们研究了富含三种可发酵纤维(果聚糖、β-葡聚糖和抗性淀粉)的 BARLEYmax(坦唐加拉;BM)大麦品种补充剂是否除了更有利地产生短链脂肪酸(SCFA)之外,还能改变盲肠和远端结肠内容物中的微生物群,而高-β-葡聚糖大麦品种(BG012;BG)补充剂则不能。雄性 Sprague-Dawley 大鼠随机分为 3 组,分别用含 5%纤维的基于 AIN-93G 的饮食喂养,纤维由纤维素(对照)、BM 或 BG 提供。在开始各自的饮食 4 周后,处死动物并收集盲肠、近端结肠和远端结肠的内容物,并定量测定 SCFA 浓度。通过 16S rRNA 测序分析盲肠和远端结肠内容物中的微生物群。BM 和 BG 组盲肠内容物中的乙酸和正丁酸浓度明显高于对照组,而仅 BM 组盲肠内容物中的总 SCFA 浓度明显高于对照组。BM 组远端结肠内容物中的乙酸和总 SCFA 浓度仅明显高于对照组。BM 组盲肠内容物中的拟杆菌门丰度明显高于对照组。相反,BM 和 BG 组盲肠内容物中的厚壁菌门丰度明显低于对照组。这些结果表明,BM 增加了远端结肠内容物中的总 SCFA 浓度。这些变化可能是由果聚糖和抗性淀粉以及β-葡聚糖引起的。总之,BM 中的可发酵纤维到达远端结肠并改变了微生物群,导致远端结肠内容物中的总 SCFA 浓度增加,与高-β-葡聚糖大麦品种(BG)相比,效果更显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2732/6559638/e515f06e4faa/pone.0218118.g001.jpg

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