海藻糖

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  • trehalose;mycose
海藻糖海藻糖
  1. MolecularProperties在海藻糖分子构象分析中的应用

    Application of Molecular Properties to the conformational analysis of trehalose

  2. 海藻糖封闭液在ELISA体系中的应用

    Application of trehalose as blocking reagent in ELISA

  3. 海藻糖对低温储存皮肤β-actin的mRNA转录水平及其蛋白表达的影响

    Effect of trehalose on the protein synthesis and mRNA transcription of β - actin after cryopreserved human skins

  4. 恶臭假单胞菌S1产胞内海藻糖合成酶发酵培养基的优化

    Study on optimization of fermentation conditions with Pseudomonas putida S1

  5. 但是昆虫中只有少数几个物种的海藻糖合成酶基因的cDNA序列得到了克隆,有关其功能的报道更是少数。

    But only a few TPS cDNA clones were obtained from insects and the researches on its function are also minority .

  6. 用TLC对58株细菌酶法合成海藻糖的能力进行初筛和复筛,得到3株海藻糖产量较高的菌。

    Strains of bacteria were screened by TLC for their ability of trehalose production by enzymatic method .

  7. 有关细菌和真菌的海藻糖合成酶的报道已经比较多,大量编码海藻糖合成酶的cDNA序列也得到了克隆。

    There have been many reports about trehalose-6-phosphate synthase in fungi and bacteria , the cDNA sequences encoding TPS have also been cloned .

  8. 海藻糖(trehalose)是一种化学结构稳定、无毒副作用的非还原性双糖,具有独特的生物学特性。

    Trehalose , a disaccharide with stable chemical structure , has no any toxicity .

  9. 选定菌株A、B、C、F和H进行生产性能的测定,包括最适培养温度与比生长速率的测定,并通过热休克培养与加盐培养,对各酵母菌株进行生物量与海藻糖积累试验。

    The production capability of strain A , B , C , F , H was determined , including suitable culture temperature , specific growth rate , biomass and trehalose accumulation .

  10. 本研究探讨以海藻糖(trehalose)为添加剂的血小板悬液冷藏保存方法。

    The study was aimed to explore the trehalose method for storing platelets in cold .

  11. 研究结果如下:猪精子在冷冻干燥过程中,海藻糖的保护效果明显优于EDTA。

    Results show that : The protective effect of trehalose is better than EDTA for boar sperm in the freeze-drying process .

  12. 研究了当海藻糖、蔗糖、乳糖在愈伤组织生长速度达最大时,对愈伤组织中三种同工酶EST、SOD、AMY的影响。

    The isoenzymes of calli which grew on the medium with trehalose , sucrose and lactose were studied when the growth velocity was biggest .

  13. 经统计分析,小鼠早期囊胚存活率海藻糖组显著高于蔗糖组(P<0.05);桑椹胚存活率两组之间差异不显著。

    The survival rate of blastocyst treated with trehalose were significantly higher than that of those treated with sucrose ( P0.05 ); while there was no significant difference between two groups in the survival rate of morula . 3 .

  14. 海藻糖合酶基因工程菌诱导表达条件的研究致病性鸡大肠杆菌pilA和外膜蛋白C原核诱导表达条件的优化

    Study on induction conditions of trehalose synthase genetic engineering bacteria Optimized Expression of pliA and ompC from Avian Pathogenic Escherichia coli

  15. 也有果聚糖、海藻糖和蔗糖等可溶性糖类;Lea蛋白在很多植物抵御干旱胁迫过程中也起到了重要作用。

    Osmolytes , Lea proteins and soluble sugars play an important role in drought-resistance in forest trees .

  16. 并且通过实验发现菌株S1的海藻糖合成酶为胞内酶,酶活力为7.30u/g菌体。

    The trehalose synthase of S1 was detected to be an intracellular enzyme with the activity of 7.30 u / g wet cells .

  17. 利用硫酸-蒽酮反应,定量检测载入到红细胞胞内的海藻糖,同时对胞外游离血红蛋白和负载后红细胞ATP水平进行评价。

    The sulfuric-anthrone reaction was used to determine the intracellular trehalose concentration loaded by RBCs , meanwhile we evaluate extracellular free hemoglobin and ATP level of loaded RBCs .

  18. 选用非渗透性保护剂海藻糖(trehalose),起到稳定细胞膜和蛋白质结构的作用,减轻低温状态下细胞水肿。

    Choose the impermeability protective agent-trehalose which plays an important role in stabilizing hepatocytes membrane and protein structure and abates cell swelling . 3 .

  19. 海藻糖预处理可以缓解高温对膜的伤害,表现为电解质外渗量、MDA含量降低,O2.-和H2O2的积累减少。

    While trehalose pretreatment alleviated heat induced damage to membrane , which was indicative of the decrease in electrolyte leakage , MDA content and the generation of O2 . - and H2O2 .

  20. 此外,含多拷贝11-氨基酸的多肽与海藻糖在保护LDH酶活性上存在协同作用,且二者有着不同的保护机理。

    In addition , the peptides consisted of multi-copies of11-amino acid protect LDH by acting with trehalose synergically , and the protection mechanisms of LEA and trehalose on LDH are different .

  21. 硝酸镧高效催化合成3,4-二氢嘧啶-2(1H)-(硫)酮蒽酮-硫酸法测定海藻糖含量显色条件的改进

    Lanthanum Nitrate as An Efficient Catalyst for the Synthesis of 3,4-Dihydropyrimidine-2 ( 1H ) - ( thio ) ones Improvement of chromogenic conditions on trehalose determination by anthrone-sulphuric acid method

  22. 结果海藻糖负载效率与孵育时间(2h后)、温度(30~40℃)呈良好线性关系。

    Results The loading efficiency was linear to the incubated time ( 2 hours later ) and incubated temperature ( range from 30 ℃ to 40 ℃), respectively .

  23. 一种船用淡水制冰/海水蓄冷装置本研究探讨以海藻糖(trehalose)为添加剂的血小板悬液冷藏保存方法。

    The equipment used freshwater for making ice and seawater for storing cold The study was aimed to explore the trehalose method for storing platelets in cold .

  24. 经微波诱变后获得的高产菌株海藻糖的产量为17.01g/100g干酵母。

    Through microwave mutation the highest yielding of strain was 17.01g / 100g dry yeast .

  25. 采用摇瓶发酵法研究了不同碳源、氮源对恶臭假单胞菌S1干重和胞内海藻糖合成酶酶活力的影响。

    Influences of carbon and nitrogen sources on Pseudomonas putida S1 dry weight and on the activity of intracellular trehalose synthase , were studied in shaking flask scaled Fermentation .

  26. 目的研究人血小板冻干保存前负载海藻糖至细胞内过程中DMSO的作用,优化血小板负载缓冲液配方。

    Objective To study the effect of DMSO on platelets protection during the period of loading trehalose before lyophilization , and to optimize the method of loading buffer .

  27. T6P水平受一组海藻糖-6-磷酸合成酶(TPS)和海藻糖-6-磷酸磷酸酶(TPP)调节。

    T6P levels are potentially modulated by a group of trehalose-6-phosphate synthase ( TPS ) and trehalose-6-phosphate phosphatase ( TPP ) homologues .

  28. 按照确定的筛选方法,从两极地区采集的土壤菌样83株和极地海洋菌20株中最终筛选到一株产海藻糖合成酶转化率最高的一株菌S1,转化率为75.2%。

    Among 83 and 20 strain samples from polar soils and oceans , strain S1 was obtained for the highest trehalose conversion rate from maltose e of about 75.2 % .

  29. 受到Al~(3+)胁迫后,细胞内SOD、海藻糖等明显增加,可能具有增强细胞抗Al~(3+)毒害的作用。

    The SOD activity and trehalose content in the yeast cells increased obviously under the Al ~ ( 3 + ) stress , which probably contributed to the enhancement of Al ~ ( 3 + ) tolerance in yeast .

  30. 本实验目的是研究海藻糖对微生物谷氨酰胺转胺酶(TGase)热稳定性的作用。

    The purpose of this study was to investigate the effects of trehalose on the preservation of Transglutaminase in heat systems .