红紫素
- 与 红紫素 相关的网络例句 [注:此内容来源于网络,仅供参考]
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The resultshows the extent to which the four dye fade due to be oxided from big to small is Acid OrangeⅡ>Neutral Red>Fuchsin Basic>Acid OrangeⅡ.
结果表明:四种染料被氧化脱色的难易程度为:酸性橙Ⅱ>中性红>碱性品红>茜素紫。
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The effects of added α-ionone,β-ionone and abscisic acid on the growth and lycopene biosynthesis of Blakeslea trispora have been investigated.
考察了三孢酸结构类似物α-紫罗酮、β-紫罗酮和脱落酸对番茄红素生产菌Blakeslea trispora的生长和番茄红素合成的影响。
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Triton-X100 has little effect on fermentation, but span-20 and β-ionone could enhance the productivity of lycopene significantly.
研究了不同小分子效应物对三孢布拉氏霉菌合成番茄红素的影响,结果表明:trinton-X100对菌体中番茄红素含量影响较小,span-20、β-紫罗酮和异烟肼可以提高番茄红素的产量,其中添加span-20可使番茄红素产量提高3倍。
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It was known that pyridine and Triton-x100 had a bad effect on the cell growth and lycopene production were studied. The results indicated that pyridine and triton-x100 inhibited cell growth and lycopene synthesis;β-ionone increased cell growth and lycopene synthesis when the concentration was 0.05 ml/L, but when the concentration became higher, there would be a decrease on the lycopene output; span-20 increased cell growth and lycopene synthesis effectively when the concentration reached 2.0ml/L, and the lycopene yield became 2.4×10~(-2) mg/L which was 3-fold than control.
研究了培养基中加入不同浓度的小分子效应物吡啶、Triton-x100、Span-20、β-紫罗酮、异烟肼对番茄红素产量的提高作用,结果显示培养基中加入很低浓度的吡啶(0.1ml/L)就会对菌体产生很强的毒害作用;triton-x100对类胡萝卜素的合成也有很强的抑制作用,试验的浓度为0.2ml/L到5ml/L,结果发现它对菌体的生长和番茄红素的合成都有抑制作用;β-紫罗酮在浓度为0.05ml/L时有很小的促进作用,而浓度升高就有了比较强的抑制效果;span-20在液体培养基中的加量为2.0ml/L时,对番茄红素的合成有很强的促进效果,产量达到了2.4×10~(-2)mg/L,比原始菌株产量提高了2倍,而浓度进一步增大就产生了很强的抑制效果。
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Among these strains, Bjerkandera adusta Y5012, Cerrena unicolor Y5002, Funalia trogii Y4997, Trametes suaveolens D8325 and Trametes versicolor Y4946 showed stronger capacity to decolorize the 6 different dyes. The factors related to decolorization of orange G and alizarin red of strain Cerrena unicolor Y5002 were studied by the method of shaking flask.
在40株菌株中,黑管孔菌Bjerkandera adusta Y5012,一色齿毛菌Cerrena unicolor Y5002,硬毛粗盖孔菌Funalia trogii Y4997,香栓孔菌Trametes suaveolens D8325和云芝栓孔菌Trametes versicolor Y4946对刚果红、橙黄G、茜素红、结晶紫、中性红和亚甲基蓝均显示出较强的脱色能力。
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We have studied the electrochemical oxidation reactions of bilirubin, biliverdin, bile-purpurin and choletelin in H〓O+DMF mixed solvent and found that the oxidation reactions of these bile pigments were greatly sped up by the introduction of water into DMF, and discussed the effect of water on their oxidation mechanisms too, and determined the reaction rate constants in the mixed solvent.
利用现场紫外-可见及时间分辨光谱电化学技术,研究了胆红素、胆绿素、胆汁红紫素及胆黄素在DMF+H〓O混合溶剂中的电化学氧化反应,发现由于水的引入,使上述胆汁色素在DMF中的氧化反应大大加快。研究了反应的动力学,首次求出了反应的速率常数。
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My company's main products: Rhynchophylline Gouteng silymarin (ethanol extract And no residual acetone) silymarin (water-soluble) silybin resveratrol daidzein emodin Suanzaoren extract of soy isoflavones curcumin, artesunate - Song Shupi extract, Hypericum perforatum extract, wild chrysanthemum extract, camptothecin, hawthorn extract, ursolic acid, corn required to extract, Maidong extract, garlic extract, ginsenosides, Chinese wolfberry extract - And asked Jing extract, green tea extract, the extract of small BAI Ju, Kushen extract, valerian extract, Salicylaldehyde glycosides, podophyllotoxin, Monascus Abulimiti of admission, puerarin extract, extract of astragalus, bitter melon extract Of, the thorn Tribulus terrestris extract, the extract of Ginkgo biloba leaves, Zhishi extract, Icariin, grape seed extract, Salvia extract yam extract, blueberry extract, the extract of Andrographolide, white Liu admission of Piti , Filed on Schisandra, Gynostemma extract, the extract of Angelica, Trifolium pratense extract, the extract of Rhodiola, soil Fritillaria saponins, Huang Chunju extract, and Cimicifuga extract, Hypericum perforatum Extract, Polygonum cuspidatum glycosides, genistein, reserpine, synephrine, sinomenine, Ciwujia glycosides, yam saponin, puerarin, peeling hormones, Kawa Ti of admission, lutein, lycopene, pumpkin seeds extract, licorice extract, nettle extract, the extract baicalin, Osthol, Asarum, saw Mr Brown extract, water Zaojiao extract, rutin extract, purple cabbage extract , Motherwort extract, Yanhusuo extract, hops extract, the extract of Magnolia officinalis, Cyclovirobuxine wood extract, Ban Langen extract, ginger extract, dandelion extract, senna extract, aloe extract , Dangshen extract, the extract of honeysuckle, quercetin, etc.
我公司主营产品:钩藤 Gouteng ·水飞蓟素·水飞蓟素·水飞蓟宾·白藜芦醇·大豆甙元·大黄素·大豆异黄酮·酸枣仁提取物·姜黄素,青蒿素松树皮提取物,连翘提取物,野菊花提取物,喜树碱,山楂提取物,熊果酸,玉米须提取物,麦冬提取物,大蒜提取物,人参总皂甙,枸杞提取物,问荆提取物,绿茶提取物,小白菊提取物,苦参提取物,缬草提取物,水杨甙,鬼臼毒素,红曲米提取物,葛根提取物,黄芪提取物,苦瓜提取物,刺蒺藜提取物,银杏叶提取物,枳实提取物,淫羊藿甙,葡萄籽提取物,丹参提取物,山药提取物,越橘提取物,穿心莲提取物,白柳皮提取物,五味子提起物,绞股蓝提取物,当归提取物,红车轴草提取物,红景天提取物,土贝母总皂甙,黄春菊提取物,黑升麻提取物,贯叶连翘提取物,虎杖甙,染料木素,利血平,辛弗林,青藤碱,刺五加甙,薯蓣皂素,葛根素,脱皮激素,卡瓦提取物,叶黄素,番茄红素,南瓜籽提取物,甘草提取物,荨麻提取物,黄芩提取物,蛇床子,细辛,锯叶棕提取物,水皂角提取物,芦丁提取物,紫甘蓝提取物,益母草提取物,延胡索提取物,啤酒花提取物,厚朴提取物,黄杨木提取物,板兰根提取物,生姜提取物,蒲公英提取物,番泻叶提取物,芦荟提取物,党参提取物,金银花提取物,槲皮素,等等
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The experiments confirm that Nuclear fast red bindto DNA to form a 1:1 association complex with the binding constant 7.29×10~5 L/mol,and the major binding mode of Nuclear fast red to DNA is electrostatic binding.However, at high iron strength, the major binding mode changes into intercalativebinding. Part four is about investigation on the interaction of purpurine with DNA.
结果显示,核固红与DNA主要以静电作用模式结合,结合位点为1,结合常数为7.29×10~5L/mol;而在高离子强度下,其主要作用模式改变为嵌插作用;第四部研究了红紫素与DNA的相互作用。
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A reddish crystalline compound,C14H5O23,that is isolated from madder root for use as a biological stain and commercial dye.
羟基茜草素,红紫素一种从茜草属植物中提取出来用作生物染色剂和商业染料的淡红晶状化合物C14H5O2OH
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Stain or blemishA reddish crystalline compound,C14H5O23,that is isolated from madder root for use as a biological stain and commercial dye.
羟基茜草素,红紫素一种从茜草属植物中提取出来用作生物染色剂和商业染料的淡红晶状化合物C14H5O2
- 推荐网络例句
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This one mode pays close attention to network credence foundation of the businessman very much.
这一模式非常关注商人的网络信用基础。
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Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.
扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。
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There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.
双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。