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为了比较饲料中添加鱼油、茶籽油、亚麻籽油以及碘酸钾对中华鳖()稚鳖生长和脂类代谢的影响,本研究配制了4种油脂含量为10%的饲料,分别为鱼油料(FO,对照组)、鱼油+碘酸钾料(FO+PI,碘酸钾添加量为75 mg/kg)、茶籽油料(TO)和亚麻籽油料(LO),饲喂初重为(5.06±0.05)g的中华鳖66 d。FO+PI组和LO组中华鳖稚鳖的存活率显著低于FO组(<0.05)。各组中华鳖稚鳖血浆中葡萄糖、总胆固醇和甘油三酯水平无显著差异(ACACA)的表达水平,上调了中华鳖-499的表达水平(-23b的表达水平(<0.05)。FO+PI组和TO组的稚鳖肝脏细胞内脂滴空泡较少,同时TO显著影响了肠道组织的黏膜褶。结论认为,相比于鱼油组,在饲料中添加10%茶籽油、亚麻籽油和添加75 mg/kg碘酸钾不会引起稚鳖生长差异,但是亚麻籽油和碘酸钾降低了稚鳖的存活率,茶籽油和碘酸钾影响肝脏的脂类代谢。  相似文献   
2.
In order to analyze the behavior and phytoxicity of iodine in soil, the chemical forms of soil iodine must be identified. Therefore, a method for quantitative speciation of iodine in soil was proposed. Iodine extracted from soil samples with tetrametBPyIammonium hydroxide (TMAH) was separated into humic and fnalvic acid fractions at pH4 1.5 after the addition of ascorbic acid into the TMAH extract to reduce iodate into iodide. Since the iodide in the TMAH extract was recovered in the fdvic acid fraction by this procedure, iodine contained in the haamic acid fraction was considered to be organically bound. Podine in the fulvic acid fraction was separated into organic iodine bound to fnlvic acids and the total inorganic iodine. Furthermore, iodine soluble from soil in 0.1 mol L-1 potassium chloride was assumed to correspond to the amount of total iodide in soil, and from the difference in the concentration of total inorganic iodine and soluble iodide, the amount of iodate was calculated. By the application of this method, iodine in soil was separated into four fractions: organic iodine bound to humic acids, organic iodine bound to fulvic acids, iodate, and iodide. This speciation method was applied to two soils. It was found that s Barge proportion of iodine in soil occurred in an organicalPy bound form.  相似文献   
3.
通过温室盆栽试验,以普通碘肥为对照,研究了包膜控释碘肥对生菜富碘及某些生理特性的影响。结果表明, 施碘处理与不施碘相比显著提高生菜叶片的碘含量。在两种施碘水平下(I 10和20 mg/kg,土),与普通碘肥相比,控释碘酸钾和控释碘化钾均显著提高生菜叶片的碘含量,分别提高了46.60%~61.16%、 46.59%~58.53%; 同时提高了生菜生物量、 叶片叶绿素含量、 维生素C含量及抗氧化酶活性[超氧化物歧化酶(SOD)、 过氧化物酶(POD)和过氧化氢酶(CAT)],降低了生菜叶片硝态氮和丙二醛(MDA)含量; 碘酸根离子处理的土壤碘的淋失率高于碘离子处理; 施用控释碘酸钾和控释碘化钾后,土壤淋溶液中碘淋失量峰值出现时间延后,碘淋失率较普通碘肥分别降低了45.99%~50.97%、 39.18%~46.29%,差异显著。碘肥用量试验的结果表明,与施碘10 mg/kg相比,施碘20 mg/kg时显著提高了生菜叶片的碘含量,但对生菜品质及生理指标无显著影响。与普通碘肥相比,控释碘肥不仅显著提高了生菜叶片对碘的富集,还减少了碘素从土壤中的流失量,提高了碘肥的利用率。施用控释碘肥是培育富碘蔬菜的有效途径之一。  相似文献   
4.
Background and Aims : Agronomic biofortification of food crops with iodine may improve the dietary intake of this trace element, which is essential for human development and health. So far, little is known about the suitability of this technique in pome fruits. The objectives of this study were (1) to investigate uptake and translocation of exogenously applied iodine in apple trees, (2) to identify possible strategies of iodine biofortification for this type of fruit, and (3) to evaluate interactions between foliar applied iodine and selenium. Methods : Apple trees were cultivated in a plastic tunnel for two growing seasons. Iodine was applied via leaves or substrate. During the 2nd year, simultaneous foliar application of iodine and selenium were tested as well. At harvest time, iodine and selenium content in leaves and fruits were determined. The phytoavailable iodine concentration in the growing medium was analyzed following an extraction with calcium chloride. In addition, the dynamics of iodine applied as potassium iodide and iodate in a peat‐based substrate was investigated in an incubation experiment without plants. Results : The iodine concentration in washed apples increased more than 100‐fold, valuing around 50 µg (100 g FM)?1 by foliar application of iodine as compared to the control treatment. However, this level was only achieved in fruits which were directly wetted by the spray solution. The translocation of leaf‐absorbed iodine to fruits was negligible. Following a substrate fertilization, the fruit iodine content remained rather low due to a strong retention of iodine in the growing medium. When using foliar sprays, the addition of selenium did not affect the iodine enrichment of the apple fruits. Conclusions : Foliar fertilization of iodine seems to be a promising method to biofortify apples with iodine. The level of I achieved in apple fruits by means of foliar fertilization can significantly contribute to the daily I intake requirement of humans.  相似文献   
5.
在磷酸介质中,碘酸钾与碘化钾反应生成I-^3配阴离子,它可进一步与乙基紫形成离子缔合物,此时不仅能引起吸收光谱的变化,而且能导致共振瑞利散射(RRS)的显著增强并产生新的RRS光谱,其最大散射波长位于319nm.在一定条件下,其散射强度△I与碘酸钾浓度成正比,其线性范围在2.33×10^-3~3.00μg·mL^-1之间,方法具有极高的灵敏度,对碘酸钾的检出限为0.70ng·mL^-1,也具有良好的选择性,可用于食盐中碘酸钾的直接测定。  相似文献   
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