107 resultados para Prawn Penaeus-japonicus
Residues of enrofloxacin, furazolidone and their metabolites in Nile tilapia (Oreochromis niloticus)
Resumo:
The residues of enrofloxacin and its metabolite in Nile tilapia (Oreochromis niloticus) were studied after oral dose of 50 mg/kg for 7 days. To find the differences between Nile tilapia and Chinese shrimp (Penaeus chinensis), the residues of enrofloxacin in P chinensis were also studied under the same conditions. The results showed that enrofloxacin metabolized into ciprofloxacin in both Nile tilapia and P chinensis, the maximal concentration of enrofloxacin in muscle, liver and plasma of Nile tilapia were 3.61 mu g/g, 5.96 mu g/g, 1.25 mu g/ml respectively, and ciprofloxacin in muscle was 0.22 mu g/g. The maximal concentration of enrofloxacin and ciprofloxacin in P chinensis were 1.68 mu g/g and 0.07 mu g/g respectively. The predicted withdrawal time for Nile tilapia was 22 days, and P. chinensis was 12 days under our experiment conditions. The residues of fitrazolidone [3-(5-nitrofurfurylidenamino)-2-oxazolidinone] and its main metabolite 3-amina-2-oxazolidinone (AOZ) in Nile tilapia were first determined by HPLC/MS. Results showed that after oral dose of 30 mg/kg for 7 days, the maximum concentration of farazolidone in Nile tilapia was 413 mu g/kg after 6 h, whereas AOZ residue reached its maximum (31 mu g/kg) right after stopping treatment. In contrast to the high metabolic rate of furazolidone, AOZ was very difficult to eliminate in vivo, thus the withdrawal time of furazolidone in Nile tilapia was 22 days at least. (c) 2005 Elsevier B.V. All rights reserved.
Resumo:
通过对贵州花江峡谷喀斯特石漠化区4种典型石漠化植物群落中11种常见植物种叶片的δ^13C值测定,研究了各植物种对影响植物碳同位素分馏的主要环境因子(土壤储水量、大气相对湿度、光照强度、土壤厚度)的响应,分析了石漠化梯度中不同土层土壤储水量、大气相对湿度、土壤有机质、年均气温、光照强度等环境因子梯度变化与植物叶片δ^13C值的关系。结果表明,大部分物种的δ^13C值对环境因子的变化趋势表现为随环境水分好转呈下降趋势,即水分利用效率下降;也有部分物种呈稳定不变或逆势上升趋势。相关性分析表明,清香木(Pistacia weinmannifolia)、石岩枫(Mallotus repandus)、红背山麻杆(Alchornea trewioides)的主导因子是土层储水量;肾蕨(Nephrolepis cordifolia)、野桐(Mallotus japonicus var。floccosus)的主导因子是土壤厚度;肾蕨、八角枫(Alangium chinense)、构树(Broussonetia papyrifera)的主导因子是光照强度;而广西密花树(Rapanea kwangsiensis)、圆叶乌桕(Sapium rot undifolium)和灰毛浆果楝(Cipadessa cinerascens)则分辨不出主导因子,即环境影响因素更为综合。总体而言,叶片高δ^13C值是对低水分、高光、低资源环境的适应.