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Dietary Na does not reduce dietary Cu uptake by juvenile rainbow trout

机译:膳食Na不会减少青少年虹鳟的膳食铜摄取量

摘要

Rainbow trout Oncorhynchus mykiss fry in moderately hard water were exposed to control or high levels of dietary Cu (c. 6 and 580 ug Cu g food-1) at one of three levels of Na (1.5, 3.0 or 4.5%) in the diet, i.e. six experimental groups. Fish were fed a 4% body mass ration daily for 28 days and 10 individuals from each group were sampled every 7 days. Concentrations of Cu and Na were measured in the gills, liver, gut and remaining carcass of sampled fish. Growth was not affected and no consistent differences were found in mass, total lengths (LT) or indices of body condition among any of the groups on any sampling day. Copper concentration was significantly higher in tissues of Cu-exposed groups, although within treatment types (control Cu v. high Cu diet), it did not differ consistently among groups that received different levels of dietary Na. Tissue Na concentration did not differ among any of the groups and did not show any marked changes over time. In Cu-exposed groups, the proportion of total body Cu burden contained in the liver approximately doubled over time, from c. 30% on day 7 to c. 60% on day 28. In unexposed fish, the liver maintained c. 25% of the total Cu burden throughout the experiment. In contrast, the proportion of the total body Cu burden contained in the gut decreased somewhat over time in Cu-exposed fish, from c. 40% on day 7 to c. 30% on day 28, and remained fairly stable at c. 25-30% in control groups, i.e. approximately equal to liver values. In all groups, the carcass contained by far the largest portion of the total Na content (80%). Measurements made 36 h post-feeding indicated that all six groups had much higher Na efflux relative to influx, suggesting that the fish were eliminating excess Na taken up from the diet, and differences in Na influx rates were small. Na efflux rate was significantly higher in the high Cu and high Na group than in the high Cu and low Na group. The results indicate that at the concentrations used in this experiment, dietary Na has little effect on dietary Cu uptake by juvenile rainbow trout, and dietary Cu has little effect on Na homeostasis..
机译:在中等硬水中将虹鳟Oncorhynchus mykiss鱼苗暴露于饮食中Na(1.5%,3.0%或4.5%)三种水平之一的对照或高水平的饮食Cu(c。6和580 ug Cu g food-1)中。 ,即六个实验组。每天给鱼类喂4%的定量配给饲料,持续28天,每7天从每组中取样10个人。测量了fish鱼,肝脏,肠道和剩余ut体中铜和钠的浓度。生长不受影响,在任何采样日的任何一组之间,体重,总长度(LT)或身体状况指标均未发现一致的差异。暴露于铜的组的组织中的铜浓度显着较高,尽管在治疗类型内(对照铜与高铜饮食),在接受不同水平饮食钠的各组中铜的浓度并不一致。各组之间的组织Na浓度均无差异,并且随时间推移未显示任何明显变化。在暴露于Cu的组中,肝脏中所含的全身Cu负荷的比例随时间从c大约翻倍。第7天到c天的30%在第28天时占60%。在未暴露的鱼中,肝脏保持c。在整个实验过程中,总铜负荷的25%。相反,暴露于含铜鱼中,肠道中含铜总量在肠道中的比例随时间的推移有所下降。第7天到第c天占40%。在第28天时达到30%,并在c时保持相当稳定。对照组为25%至30%,即大约等于肝脏值。在所有组中,the体占总Na含量的最大部分(> 80%)。喂食后36小时进行的测量表明,所有六组的Na流出量均相对于流入量高得多,这表明鱼正在消除从饮食中摄取的过量Na,并且Na流入量的差异很小。高铜高钠组的Na外排率显着高于高铜低钠组。结果表明,在该实验中使用的浓度下,日粮Na对幼体虹鳟对日粮Cu的吸收几乎没有影响,日粮Cu对Na稳态的影响很小。

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