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首页> 外文期刊>Crop and Pasture Science >Accumulation of cadmium with time in Romney sheep grazing ryegrass-white clover pasture: effect of cadmium from pasture and soil intake
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Accumulation of cadmium with time in Romney sheep grazing ryegrass-white clover pasture: effect of cadmium from pasture and soil intake

机译:放牧黑麦草白三叶草牧场的罗姆尼羊中镉的累积时间:牧场和土壤摄入量对镉的影响

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摘要

Cadmium (Cd) concentrations in various tissues of Romney sheep and rates of accumulation, as affected by Cd concentrations in pasture and soil, DM intake, and animal age, were determined in a 25-month study. After weaning, 6 groups of 10 wether lambs were grazed on a low Cd (0.l8 ¦ 0.08 8g Cd/g DM) or high Cd (0.52 ¦ 0.17 8g Cd/g DM) pasture in 3 replicates. The rate of accumulation of Cd (8g /day) into the liver and kidney was greatest in sheep aged about 6 months (for the low and high Cd pastures: kidney 0.27 and 0.56; liver 0.35 and 1 I), after which it declined with age (kidney 0.02 and 0.03: liver <0901 and 0.05; at 28 months of age). Total content of Cd in the organs continued to increase. In 6-month-old animals, 0.25% of total Cd ingested was retained by the kidney and liver, but this proportion decreased to about 0.05% of Cd intake with 28-month-old animals. Net retention of Cd in the fleece-free body as a percentage of daily Cd intake for both the control and treatment animals was estimated between 0- 35 and 0 5%. Except for muscle tissue from sheep in the treatment group, for which the mean Cd concentration was lower than that of the control group (2.0 ¦ 0.24 and 3 9 ¦ 0.63 r)g Cd/g fresh tissue, respectively), Cd concentrations in kidney, liver, thymus, muscle, and lung tissue increased over the first 3 months for both groups of animals. After 2 years, animals on the treatment pastures had approximately 3-fold greater Cd concentrations in liver, kidney, and duodenal tissue tissue than those grazing the control pastures (liver, 361 ¦ 58 v. 97 ¦ 11; kidney, l485 ¦ 200 v. 352f48; duodenal tissue, 32f 4 v. 18f 2.5 t)g Cd/g FW, respectively). At higher Cd intakes, the adaptive effect of increased metallothionein synthesis enabled the animal to be more efficient in binding Cd, which restricted accumulation of Cd in muscle. The regression ([Cd] kidney = -205 + 0. 981Cdintake + 0 - 726Time; r = 0.82, P < 0.001) gave the best fit for the observed Cd concentration in the kidney tissue. Daily Cd intake was also a better predictor of the Cd concentration in liver tissue than the concentration of Cd in pasture by itself ([Cd]liver, = 24.7 + 0.353Cdintake; r = 0.81, P < 0.001). Accurate predictions of the potential for Cd accumulation in young grazing animals will enable more effective management strategies to be implemented to reduce Cd accumulation and therefore minimise the potential impact relating to both environment and market.
机译:在一项为期25个月的研究中,确定了罗姆尼羊各个组织中的镉(Cd)浓度和积累速率,这些元素受牧场和土壤中的Cd浓度,DM摄入量和动物年龄的影响。断奶后,在低Cd(0.18×0.08 8g Cd / g DM)或高Cd(0.52×0.17 8g Cd / g DM)牧场上放牧6组,每组10只小绵羊。在约6个月大的绵羊中(低和高Cd牧场:肾脏0.27和0.56;肝脏0.35和1 I),Cd在肝脏和肾脏中的Cd积累速率最大(8g /天),之后随着年龄(肾脏0.02和0.03:肝脏<0901和0.05;在28个月大时)。器官中镉的总含量持续增加。在6个月大的动物中,摄入的Cd总量的0.25%被肾脏和肝脏保留,但这一比例下降到28个月大的动物的Cd摄入量的0.05%。在无绒毛体内,Cd的净保留量(相对于对照组和治疗动物的每日Cd摄入量的百分比)估计为0-35至0 5%。除治疗组绵羊肌肉组织的平均Cd浓度低于对照组(分别为2.0×0.24和3 9×0.63 r)g Cd / g新鲜组织)外,肾脏中的Cd浓度两组动物的头3个月肝,胸腺,肌肉和肺组织均增加。 2年后,在放牧牧场上的动物在肝脏,肾脏和十二指肠组织组织中的Cd含量比在放牧牧场上的动物高约3倍(肝脏,361×58 v。97×11;肾脏,l485×200 v 352f48;十二指肠组织,分别为32f 4 v。18f 2.5 t)g Cd / g FW。在较高的镉摄入量下,金属硫蛋白合成增加的适应性作用使动物能够更有效地结合镉,从而限制了镉在肌肉中的积累。回归分析([Cd]肾= -205 +0。981Cdintake+ 0-726Time; r = 0.82,P <0.001)最适合肾脏组织中观察到的Cd浓度。每天摄入的Cd值比牧场本身的Cd值更好地预测了肝脏组织中Cd的浓度([Cd]肝脏= 24.7 + 0.353Cdintake; r = 0.81,P <0.001)。对年轻放牧动物中Cd积累潜力的准确预测将使实施更有效的管理策略以减少Cd积累,从而将与环境和市场相关的潜在影响最小化。

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