129 research outputs found

    试论区域海洋生态系统管理是海洋综合管理的新发展

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    区域海洋管理是对一定海洋地理空间范围内具有重要意义的区域系统进行的自觉干预和内外协调的活动。文章讨论海洋区域、区域海洋管理的概念、管理区域划分、区域海洋基本思想和管理方式等,试论区域海洋生态系统管理是海洋综合管理的新发展,认为区域海洋管理必须以生态系统管理为核心,以社会-经济-自然复合生态系统为管理对象,才能使区域海洋社会经济能够在可持续的生态系统支持下发展

    不同脂肪源对异育银鲫的生长、体组成和肌肉脂肪酸的影响

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    配制了十种等氮等能的饲料饲喂3.53 g的异育银鲫幼鱼12周,探讨异育银鲫对不同脂肪源的利用效果。十种饲料中分别添加8%的鱼油(FO)、椰子油(CNO)、玉米油(CO)、亚麻油(LO)、大豆油(SO)、菜籽油(RO)、1∶1鱼油-椰子油(FCNO)、1∶1鱼油-玉米油(FCO)、1∶1鱼油-亚麻油(FLO)和1∶1∶1∶1鱼油-椰子油-玉米油-亚麻油混合油(MIX)。每组饲料三个平行,每个平行30尾。实验在循环水养殖系统中进行,水温控制在(24±1)℃。结果表明,在单一脂肪源中,豆油组和椰子油组的增重率最高,其次是菜籽油组,鱼油、玉米油和亚麻油组的增重率最低。与相应的单一脂肪源相比,饲料中鱼油与椰子油、玉米油或亚麻油1∶1混合后使用提高了异育银鲫的生长。摄食不同脂肪源饲料的异育银鲫血清生化指标、各组织的水分和脂肪含量差异不明显(P>0.05)。肌肉脂肪酸与饲料脂肪源呈明显正相关。摄食豆油和菜籽油饲料的鱼体肌肉中20:4n-6较高,而摄食亚麻油饲料的鱼则含有较高的20:5n-3和22:6n-3,表明异育银鲫具有转化18:2n-6和18:3n-3为高不饱和脂肪酸的能力。从实验可以看出,豆油、椰子油和菜籽油是异育银鲫饲料中良好的脂肪源

    饲喂不同浓度黄曲霉毒素B_1饲料对异育银鲫成鱼的生长和毒素积累的影响

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    以含不同浓度黄曲霉毒素B1(AFB1)的配合饲料饲喂异育银鲫(Carassius auratus gibelio)成鱼56d,研究异育银鲫成鱼[(122.3±0.7)g]生长、生理反应、肝脏组织学变化、卵巢发育以及鱼体各组织中的AFB1的毒素积累状况。实验分为5个实验组,不同实验组饲料中AFB1含量分别为0、5、20、50、500μg/kg饲料(实测值分别为2.59、4.12、12.39、46.23、454.07μg/kg饲料),每个处理3个平行。在整个实验过程中各实验组均未表现出外部形态和行为异常,各组存活率均达到100%。各实验组异育银鲫成鱼终末体重、摄食率(FR)、特定生长率(SGR)和饲料效率(FE)均无显著差异。饲料AFB1水平对异育银鲫血清总胆固醇(TC)含量、血清谷丙转氨酶(GPT)、谷草转氨酶(GOT)和碱性磷酸酶(AKP)活性均无显著影响。各毒素组血清超氧化物岐化酶(SOD)活性与对照无显著差异。各毒素组肝脏和卵巢均未见明显的组织学病理变化。肌肉和性腺中的AFB1积累量低于FDA食品安全限定标准(5μg/kg)。肝胰脏中的AFB1积累和饲料中的AFB1水平呈对数关系。饲喂AFB1≥50μg/kg饲料使异育银鲫成鱼肝脏AFB1积累超过安全限量标准。结果表明,异育银鲫成鱼至少可耐受AFB1含量达500μg/kg饲料(实测值:454.07μg/kg饲料)56d

    Raman Spectroelectrochemical Study on Bioactive Molecules

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    本文概述了采用电化学现场拉曼光谱技术研究氧化物歧化酶在L 半胱氨酸修饰金电极表面的电子迁移反应以及腺嘌呤共存条件下超氧化物歧化酶在金电极表面的电子迁移反应和不同电位下银电极表面烟酰胺腺嘌呤二核苷酸的吸附等体系的反应吸附特性 .所得结果对于分析和研究生物活性分子电化学过程机理具有重要意义 .Electron?transfer reaction is known to be one of the key reactions for generating biological functions. Mechanism revelation at a molecular level of such kind reactions is to be very helpful for us to understand life essence. In fact, surface enhanced Raman scattering (SERS) is one of the most powerful tools for the study on metal?electrolyte and metal?vacuum interfaces since 1970's. Moreover, Raman spectroscopic study in enzymology has provided attractive results during last twenty?five years. For the study of electron?transfer reaction mechanism of some oxidoreductases and SERS of some other biological macromolecules, an electrochemical in situ Raman spectroscopic technique was established in author's lab and some research works have been done on it in the past two years. A brief review of these works is given in this paper. The electrochemical in situ Raman spectroscopic measurements were carried out using a Super LABRAM Raman spectrometer (Dilor, France) coupled with a CHI604A Electrochemical Analyzer (CH Instr., USA). A Teflon spectroelectrochemical cell with a quartz plate window was designed for the in situ measurements. The working electrode was pretreated with oxidation?reduction cycles for each measurement. The electrolyte solutions were purged with nitrogen prior to all measurements, and all the measurements were carried out under the nitrogen atmosphere. Copper, zinc superoxide dismutase (SOD) is an important oxidoreductase for organism metabolism. The established spectroelectrochemical technique was first used to characterize the cyclic voltammetric process of SOD at L?cysteine modified gold electrode as well as the process of electrochemical modification of L?cysteine molecules on a gold electrode. The obtained Raman spectra reveal that the L?cysteine modified gold electrode improves effectively the reversibility of electron?transfer reactions of SOD. Besides L?cysteine molecules, it was interesting that adenine was also an effective electron?transfer promoter for SOD at gold electrode. A strong peak at 355 cm -1 can be observed in the Raman spectrum of adenine molecules adsorbed on gold electrode. It was inferred that the peak maybe related to the chemical interaction between adenine molecules adsorbed and gold electrode surface. As shown in Fig.1, for the mixture of SOD and adenine at gold electrode under a polarization potential 55 mV (vs. SCE), both the characteristic Raman lines of SOD and adenine molecules appeared. Therefore it was reasonable to conclude that SOD and adenine molecules should be co?adsorbed on gold electrode surface under such a potential, which is slightly lower than the reduction peak potential of SOD on adenine?modified gold electrode. Moreover, two new peaks appeared remarkably at 445 cm -1 and 610 cm -1 are likely to be related to the active site of SOD. It suggests that the co?adsorption mechanism of SOD and adenine molecules on the gold electrode surface results in effective approaching of the active site of SOD to the electrode surface.作者联系地址:上海师范大学化学系!上海200234,上海师范大学化学系!上海200234,上海师范大学化学系!上海200234,上海师范大学化学系!上海200234,上海师范大学化学系!上海200234,上海师范大学化学系!上海200234Author's Address: Dept. of Chem., Shanghai Teachers Univ., Shanghai 200234,Chin

    长吻--对鱼粉等六种商品饲料中粗蛋白和能量的消化率

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    本试验以三氧化二铬(Cr2O3)为指示物测定Ⅰ龄长吻对鱼粉、猪血粉、豆饼粉、菜籽饼粉、小麦粉和玉米蛋白粉等六种商品饲料原料粗蛋白和总能量的消化率。试验饲料由参考饲料和试验原料以70∶30的比例混合挤压制成颗粒饲料。试验鱼粪便样品用虹吸方式收集,并将测试的消化率结果经过降低10%的校正。由此所得消化率值更能反应长吻的消化生理状况。另外本文对六种饲料的消化率结果进行了讨论

    长吻--对鱼粉等六种商品饲料中粗蛋白和能量的消化率

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    本试验以三氧化二铬(Cr2O3)为指示物测定Ⅰ龄长吻对鱼粉、猪血粉、豆饼粉、菜籽饼粉、小麦粉和玉米蛋白粉等六种商品饲料原料粗蛋白和总能量的消化率。试验饲料由参考饲料和试验原料以70∶30的比例混合挤压制成颗粒饲料。试验鱼粪便样品用虹吸方式收集,并将测试的消化率结果经过降低10%的校正。由此所得消化率值更能反应长吻的消化生理状况。另外本文对六种饲料的消化率结果进行了讨论。</p

    长吻对鱼粉等六种商品饲料中粗蛋白和能量的消化率

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    本试验以三氧化二铬(Cr2O3)为指示物测定Ⅰ龄长吻对鱼粉、猪血粉、豆饼粉、菜籽饼粉、小麦粉和玉米蛋白粉等六种商品饲料原料粗蛋白和总能量的消化率。试验饲料由参考饲料和试验原料以70∶30的比例混合挤压制成颗粒饲料。试验鱼粪便样品用虹吸方式收集,并将测试的消化率结果经过降低10%的校正。由此所得消化率值更能反应长吻的消化生理状况。另外本文对六种饲料的消化率结果进行了讨论

    饲料质量对丰鲤和奥尼罗非鱼氮及能量收支的影响

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    实验比较了丰鲤与奥尼罗非鱼摄食低质和高质两种等能饲料时的氮收支和能量收支。低质饲料的蛋白质含量为34.25%、蛋白质主要来源为豆粕,高质饲料的蛋白质含量为45.44%、蛋白质主要来源为鱼粉。53d的生长结果显示:摄食低质饲料时,奥尼罗非鱼通过降低排泄氮、排泄能和代谢能的比例,使生长氮和生长能的比例显著高于丰鲤,摄食高质饲料时,则通过降低粪氮和粪能的比例取得快速生长的效果;丰鲤生长氮和生长能比例不受饲料质量的显著影响,但高质饲料使排泄氮和代谢能比例显著降低;奥尼罗非鱼的氮收支不受饲料质量的显著影响,但高质饲料使生长能和排泄能的比例显著增高,代谢能的比例显著降低。结果表明,在两种饲料条件下,丰鲤利用氮和能量的能力显著低于奥尼罗非鱼

    用于水污染生物检测的恒流稀释装置

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    本文提出一种用于水污染生物检测的恒流稀释装置,介绍装置的运转原理、结构及其评价。本装置的浓度变异系数在3.05&mdash;11.76%之间,与国外同类产品接近,由于结构简单,运转可靠,不需电力,本装置可广泛用于水生生物毒性试验,特别适于长期的亚致死和慢性毒性试验

    饲料质量对丰鲤和奥尼罗非鱼氮及能量收支的影响

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    实验比较了丰鲤与奥尼罗非鱼摄食低质和高质两种等能饲料时的氮收支和能量收支。低质饲料的蛋白质含量为 34.2 5 %、蛋白质主要来源为豆粕 ,高质饲料的蛋白质含量为 4 5 .4 4 %、蛋白质主要来源为鱼粉。 5 3d的生长结果显示 :摄食低质饲料时 ,奥尼罗非鱼通过降低排泄氮、排泄能和代谢能的比例 ,使生长氮和生长能的比例显著高于丰鲤 ,摄食高质饲料时 ,则通过降低粪氮和粪能的比例取得快速生长的效果 ;丰鲤生长氮和生长能比例不受饲料质量的显著影响 ,但高质饲料使排泄氮和代谢能比例显著降低 ;奥尼罗非鱼
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