He Zhimin, Liu Na, Cai Yuyang, Yang Na, Li Gen, Xiao Yang, Zhou Xiaomei, Cao Shenping, Qu Fufa, Tang Jianzhou, Liu Suchun, Liu Zhen
Hunan Provincial Key Laboratory of Nutrition and Quality Control of Aquatic Animals, Department of Biological and Environmental Engineering, Changsha University, Changsha 410022, China.
College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China.
Animals (Basel). 2022 Sep 20;12(19):2498. doi: 10.3390/ani12192498.
The nutritional functions of tributyrin (TB) have been extensively studied, but questions remain regarding its influence on the growth of juvenile grass carp () and the regulation pathway to PepT1 in the intestine of grass carp. To answer the remaining questions, feeding trials, cell trials, and peritoneal injection trials were conducted in this study. The results showed that an appropriate level of TB (0.5 g/kg and 1.0 g/kg) supplementation in feed significantly promoted the growth performance of juvenile grass carp. The expressions of intestine genes (CDX2, SP1 and PepT1) related to oligopeptide transportation increased in the 0.5 g/kg TB group of feeding trials and both the 5 mM and 10 mM TB groups of the intestine cell trials, respectively. Subsequently, the injection trials of inhibitors CDX2 and SP1 demonstrated that the inhibition of CDX2 or SP1 decreased the mRNA expression of PepT1. Finally, the results of independent or combined treatments of TB and the inhibitors suggested that CDX2/SP1 mediated TB regulation on PepT1. These findings may help us to better understand the functions of TB on growth and PepT1 oligopeptide transportation, which could be modulated by dietary TB through the CDX2/SP1-PepT1 pathway in juvenile grass carp.
三丁酸甘油酯(TB)的营养功能已得到广泛研究,但关于其对草鱼幼鱼生长的影响以及草鱼肠道中肽转运载体1(PepT1)的调控途径仍存在疑问。为了回答这些问题,本研究进行了饲养试验、细胞试验和腹腔注射试验。结果表明,饲料中添加适量水平的TB(0.5 g/kg和1.0 g/kg)可显著提高草鱼幼鱼的生长性能。在饲养试验的0.5 g/kg TB组以及肠道细胞试验的5 mM和10 mM TB组中,与寡肽转运相关的肠道基因(CDX2、SP1和PepT1)的表达分别增加。随后,CDX2和SP1抑制剂的注射试验表明,抑制CDX2或SP1会降低PepT1的mRNA表达。最后,TB与抑制剂单独或联合处理的结果表明,CDX2/SP1介导了TB对PepT1的调控。这些发现可能有助于我们更好地理解TB对生长和PepT1寡肽转运的功能,在草鱼幼鱼中,膳食TB可通过CDX2/SP1-PepT1途径对其进行调节。