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Calcium balance in Daphnia grown on diets differing in food quantity, phosphorus and calcium

机译:通过食物,磷和钙含量不同的饮食而生长的水蚤中的钙平衡

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摘要

1. The influences of dietary phosphorus (P) and food concentration on the calcium (Ca) balance in Daphnia magna were examined in this study at two different ambient Ca concentrations (0.5 and 10 mg Ca Lp#). Daphnia were grown by feeding the young adults differentially under contrasting dietary P conditions [molar C : P ratio = c. 900 and c. 90 as low P (LP) and high P (HP), respectively], ambient Ca concentrations [0.5 mg and 10 mg Ca Lp# as low Ca (LCa) or high Ca (HCa), respectively] and food levels [0.15 or 1.5 mg C Lp# as low food (LF) or high food (HF), respectively] for 5 days. 2. The specific Ca contents of daphniids (1.9-6.5% of dry weightp#) increased with increasing Ca concentration, food level and dietary P content, although the food level did not affect the Ca content in the HPHCa treatment. A radioactive tracer method showed that the food level did not affect the influx of Ca from the water under LP conditions, but the Ca influx under HP conditions doubled with a HF level. A LP condition also led to a decrease in Ca influx with a HF level. 3. During the 3 days of efflux, generally only a small proportion of Ca (2.6-3.3%) was retained by the daphniids, but this retention increased (14-23%) under low ambient Ca concentrations and under P-limitation. Excretion was the most important pathway for Ca loss (accounting for 50-60% of body Ca), followed by moulting (20-47%), but the relative contribution of these two pathways (excretion and moulting) did not vary among all the different treatments. The absolute loss of Ca through excretion and moulting, on the contrary, differed with different ambient Ca concentrations and dietary P conditions. A HF level led to an increase in the loss rates in most cases. 4. Our study strongly suggested that there is an interaction between an essential metal (Ca) and macronutrients (C and P) in freshwater crustaceans with HCa and P contents. The results imply that variation in environmental nutrient conditions may change the Ca budget in crustaceans and may affect the dynamics of Ca in the epilimnion of freshwaters.
机译:1.在这项研究中,研究了在两种不同的环境Ca浓度(0.5和10 mg Ca Lp#)下,日粮中磷(P)和食物浓度对钙(Ca)平衡的影响。水蚤是通过在不同的饮食P条件下[摩尔C:P之比= c]喂养不同的年轻人而生长的。 900和c。分别为低P(LP)和高P(HP)的90],环境Ca浓度[分别为低Ca(LCa)或高Ca(HCa)的0.5 mg和10 mg Ca Lp#]和食物水平[0.15或1.5毫克C Lp#分别作为低食物(LF)或高食物(HF),持续5天。 2.尽管食物水平不影响HPHCa处理中的钙含量,但瑞香的特定Ca含量(干重的p-1.9-6.5%p#)随Ca浓度,食物水平和饮食中P含量的增加而增加。放射性示踪法显示,在LP条件下,食物水平不会影响Ca从水中的流入,但是在HP条件下,Ca的流入会随着HF水平的增加而增加一倍。 LP条件还导致随着HF水平的Ca流入减少。 3.在流出的3天中,蚤形虫通常只保留一小部分Ca(2.6-3.3%),但是在低环境Ca浓度和P限制下,这种保留增加(14-23%)。排泄是造成钙流失的最重要途径(占体内钙的50-60%),其次是蜕皮(20-47%),但是这两种途径(排泄和蜕皮)的相对贡献在所有人群中都没有变化。不同的治疗方法。相反,由于排泄和换羽引起的钙绝对损失随环境钙浓度和饮食磷条件的不同而不同。在大多数情况下,HF水平导致损失率增加。 4.我们的研究强烈建议在具有HCa和P含量的淡水甲壳类动物中,必需金属(Ca)与大量营养素(C和P)之间存在相互作用。结果表明,环境养分条件的变化可能会改变甲壳类动物的钙平衡,并可能影响淡水上浮过程中钙的动力学。

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