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禁食和再投喂对莫桑比克罗非鱼肠道中编码寡肽转运体(PepT1)的基因slc15a1a基因表达的影响。

Effects of fasting and refeeding on gene expression of slc15a1a, a gene encoding an oligopeptide transporter (PepT1), in the intestine of Mozambique tilapia.

作者信息

Orozco Zenith Gaye A, Soma Satoshi, Kaneko Toyoji, Watanabe Soichi

机构信息

Department of Aquatic Bioscience, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1, Yayoi, Bunkyo, Tokyo 113-8657, Japan.

Department of Aquatic Bioscience, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1, Yayoi, Bunkyo, Tokyo 113-8657, Japan.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2017 Jan;203:76-83. doi: 10.1016/j.cbpb.2016.09.006. Epub 2016 Sep 30.

Abstract

The tissue distribution of slc15a1a, a gene that encodes an oligopeptide transporter, PepT1, and its response to fasting and refeeding were investigated in the intestinal epithelium of Mozambique tilapia for a better understanding of its role on nutrient absorption. The slc15a1a was predominantly expressed in the absorptive epithelia of the anterior part of the intestine, suggesting that digested oligopeptides are primarily absorbed in the anterior intestine. The response of slc15a1a to fasting was evaluated at 1, 2, 4, 7 and 14days after the last feeding. Fasting revealed a biphasic effect, where short-term fasting significantly upregulated slc15a1a expression and long-term fasting resulted in downregulation. The expression level continued to decrease and fell below the pre-fasted level from day 4 to 14. Proximal (the hepatic loop, HL) and distal parts (the proximal major coil, PMC) of the anterior intestine showed different magnitudes of responses to fasting; slc15a1a expression in the PMC showed greater upregulation and downregulation than that in the HL. Refeeding significantly stimulated slc15a1a expression at day 3, although the expression did not exceed the pre-fasted level. Observed responses of slc15a1a to fasting and refeeding suggest that the expression level of this gene can serve as a sensitive indicator of the changes that may occur in altering nutritional conditions. These findings contribute to a better understanding of the role of PepT1 in nutrition and of the complex mechanisms underlying the absorption of oligopeptides and amino acids in the intestine, and may lead to development of possible means to manipulate the absorption processes for the improvement of growth and other metabolic and physiological conditions in fish.

摘要

为了更好地了解编码寡肽转运体PepT1的基因slc15a1a在莫桑比克罗非鱼肠上皮中的作用,研究了其组织分布及其对禁食和重新投喂的反应。slc15a1a主要在肠道前部的吸收上皮中表达,这表明消化后的寡肽主要在前肠被吸收。在最后一次投喂后的第1、2、4、7和14天评估slc15a1a对禁食的反应。禁食呈现出双相效应,短期禁食显著上调slc15a1a的表达,而长期禁食则导致其下调。从第4天到第14天,表达水平持续下降并低于禁食前水平。前肠的近端(肝环,HL)和远端部分(近端主盘曲,PMC)对禁食的反应程度不同;PMC中slc15a1a的表达上调和下调幅度均大于HL。重新投喂在第3天显著刺激了slc15a1a的表达,尽管该表达未超过禁食前水平。观察到的slc15a1a对禁食和重新投喂的反应表明,该基因的表达水平可作为营养状况改变时可能发生变化的敏感指标。这些发现有助于更好地理解PepT1在营养中的作用以及肠道中寡肽和氨基酸吸收的复杂机制,并可能为开发操纵吸收过程的可能方法提供依据,以改善鱼类的生长及其他代谢和生理状况。

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