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Comparison of plasma tryptophan-related metabolites in crossbred Pietrain and Duroc pigs

机译:血浆色氨酸与跨越Pietrain和Duroc猪的血浆色氨酸相关代谢物的比较

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Besides being incorporated into proteins, Trp, an indispensable AA, is involved in numerous metabolic pathways. Previous data showed that Trp conversion into kynurenine (Kyn) and nicotinamide (Nam) differs among studies, and such differences cannot be explained by different dietary niacin supplies. We hypothesized that pig genotype influences Trp metabolism and thus the conversion of Trp into its metabolites. The objective of this study was to compare plasma appearance of Trp and related metabolites in 12 Duroc and 12 Pietrain crossbred postweaning pigs fed 2 contrasting dietary Trp levels. Within each genotype, 6 pigs were fed a basal (B-Trp: 17% and 15% standardized ileal digestible [SID] Trp: Lys for starter and prestarter diets) or supplemented (S-Trp: 24% and 23% SID Trp: Lys for starter and prestarter diets) Trp diet. Growth was monitored, and plasma fasted concentrations were measured over 4 wk, and then pigs were fitted with a jugular catheter for frequent blood samplings. After overnight fasting, 350 g of the experimental diets were offered to each pig, and plasma concentrations of Trp, Kyn, Nam, and 5-hydroxytryptamine (5-HT) were measured for 6 h. The activities of Trp-degrading enzymes were measured in different tissues collected after pig slaughtering. Plasma Trp fasted concentrations did not differ between B-Trp and S-Trp diets and increased from weaning to 2 and 4 wk after weaning for Pietrain but not for Duroc crossbred pigs (time x genotype, P = 0.001). Plasma Kyn concentrations were greater 4 wk after weaning (P = 0.002) than at weaning and for Pitrain compared to Duroc genetics (P = 0.008). Plasma Nam concentrations were greater for pigs fed the S-Trp diet than for those fed the B-Trp diet (P = 0.0001) and for Duroc than for Pietrain genetic lines (P = 0.001); this difference tends to be greater at weaning than after (P = 0.055). Our data showed an increase in plasma concentrations of Trp, Kyn, Nam, and 5-HT according to time after a meal and to the dietary Trp content. However, postprandial plasma concentrations of Trp metabolites and enzyme activities were not significantly different between Duroc and Pierain crossbred pigs. In conclusion, our results suggest that Nam endogenous synthesis capacity from Trp is greater in Duroc than in Pitrain crossbred pigs, but this was apparent only at weaning.
机译:除了被掺入蛋白质中,TRP是不可缺少的AA,参与许多代谢途径。以前的数据表明,TRP转化为犬藻(KYN)和烟酰胺(NICOTINAMIDE(NAM)的不同之处在于研究,并且这种差异不能通过不同的膳食烟酸供应解释。我们假设猪基因型影响TRP代谢,从而将TRP转化为其代谢物。本研究的目的是将TRP的血浆外观与12 Duroc和12个Pietrain杂交后切换猪的血浆外观进行比较2喂养2对比的膳食TRP水平。在每种基因型内,将6只猪饲喂基础(B-TRP:17%和15%标准化ilieLigestible [SID] TRP:用于启动和预饮食的LYS)或补充(S-TRP:24%和23%SID TRP:懒惰的饮食和预孕饮食)TRP饮食。监测生长,并在4周上测量血浆禁食浓度,然后猪配有颈静脉导管,用于频繁血液采样。禁食过夜后,向每只猪提供350克的实验饮食,测定6小时的TRP,kyn,Nam和5-羟基 - 羟基胺(5-HT)的血浆浓度。在猪屠宰后收集的不同组织中测量TRP降解酶的活性。血浆TRP禁食浓度在B-TRP和S-TRP饮食之间没有差异,并在断奶后从断奶后从断奶后增加,但不适用于Duroc杂种猪(时间x基因型,P = 0.001)。断奶后血浆kyn浓度大于4周(p = 0.002),而不是在断奶和柠檬黄与Duroc遗传学(p = 0.008)。饲喂S-TRP饮食的猪的血浆Nam浓度大于喂食B-TRP饮食(P = 0.0001)和Duroc的猪而不是Pietrain遗传系(P = 0.001);断奶趋于大于后的这种差异(p = 0.055)。我们的数据显示在膳食后的时间和膳食TRP含量的时间内增加TRP,Kyn,Nam和5-HT的血浆浓度。然而,Duroc和Pierain杂交猪之间的TRP代谢物和酶活性的餐后血浆浓度没有显着差异。总之,我们的结果表明,Duroc的Nam内源性合成容量大于北杂交猪,但仅在断奶时显而易见。

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