伴孢晶体,parasporal crystal
1)parasporal crystal伴孢晶体
1.Bacillus thuringiensis is a kind of widely used biotic pesticide,which produces a poisonous parasporal crystal along with producing the spores.苏云金杆菌是一种广泛应用的生物农药,苏云金杆菌在形成芽孢的同时,产生具有毒杀性的伴孢晶体
2.In this paper,the purification methods of Bacillus thuringiensis parasporal crystal,including density gradient centrifugation method,liquid double-phase method,isoelectric point deposition,anion-exchange column,alkalinelysis,high-speed .综述了苏云金芽孢杆菌伴孢晶体纯化的方法,包括等密度梯度离心法、液体双相分离法、等电点沉淀法、离子交换分离法、碱裂解法、高速离心法和生物物理法等。
3.Parasporal crystal, an intracellular protein crystal produced by Bacillus thuringiensis (Bt) during sporulation, are toxic to insects, and used as a successful bio-pesticide wildly.应用拉曼镊子研究了来自同一亚种的两个苏云金芽孢杆菌(Bacillus thuringiensis,Bt)菌株的单个伴孢晶体蛋白的拉曼光谱。
英文短句/例句

1.The Elementary Investigation of the Origin of 20-kb DNA in Crystalline Inclusion from Bacillus Thuringiensis;苏云金芽孢杆菌伴孢晶体中20-kb DNA来源的初步研究
2.Superexpression and Bioactivity of cry1Ac Gene from 20-kb DNA Associated with Cry1A Crystal Protein from Bacillus Thuringiensis;苏云金杆菌伴孢晶体20-kb DNA中cry1Ac基因的高效表达和生物活性研究
3.Suitable culture conditions for the growth and parasporal crystal production of Bacillus thuringiensis strain YJ-2000苏云金杆菌菌株YJ-2000生长和伴孢晶体形成的适宜培养条件
4.The parasporal inclusions consist of one or more insecticidal proteins in the form of a crystal or crystal-complex.这种类孢内含体由1-2个蛋白晶体或晶体复合物组成。
5.Structural characterization of cancer cell-killing crystal protein Parasporin-4 from Bacillus thuringiensis苏云金芽孢杆菌Ⅳ型抗癌晶体蛋白的分子模建
6.Bt Cry1Ac Insecticidal Crystal Protein Family and its Molecular Design苏云金芽孢杆菌Cry1Ac杀虫晶体蛋白及其分子设计
7.A decrease in chaperone activity from nuclear crystallin has been showed in age-dependent fashion.晶状体核的α-晶体蛋白具有年龄依赖性分子伴侣作用的降低。
8.Pre-implant IOL in Manual Small Incision Cataract Surgery in Lens Subluxation with Cataract预植入人工晶状体治疗过熟期白内障伴晶状体半脱位
9.Character of α-Crystallin Molecular Chaperone Activity in Selenite Cataract硒性白内障α-晶体蛋白的分子伴侣特性
10.α Crystallin acts as a molecular chaperone to protect esterase against inactivation.α-晶体蛋白作为分子伴侣可保护酯酶免于失活
11.CONCLUSION These results suggest that infrasound can influence the molecular chaperone activity of α crystallin.结论 次声可影响α-晶体蛋白的分子伴侣活性
12.Change of α-Crystallin Acting as Molecular Chaperone Activity with Ageing老化过程中α-晶体蛋白分子伴侣活性的变化
13.The Effect of ATP on the Molecular Chaperone Function and Construction of α-Crystallin;ATP对α-晶体蛋白分子伴侣功能及结构的影响
14.IDENTIFICATION OF CRY-TYPE GENES OF 31 BACILLUS THURINGIENSIS ISOLATES AND ANALYSIS OF THEIR EXPRESSION PRODUCT31株苏云金芽孢杆菌杀虫晶体蛋白基因型鉴定及表达产物研究
15.Construction of Bacillus Thuringiensis Engineered Strains and Study on Insecticidal Crystal Proteins;高效广谱苏云金芽孢杆菌工程菌的构建及杀虫晶体蛋白的研究
16.Genetic Modification of Crystal Proteins from Bacillus Thuringiensis and the Preliminary Characterization of plcR Gene;苏云金芽孢杆菌杀虫晶体的遗传改良及plcR基因功能研究
17.Cloning and Expression Study of Insecticidal Crystal Protein Genes from Bacillus Thuringiensis 4.0718 Strain;苏云金芽孢杆菌4.0718菌株杀虫晶体蛋白基因的克隆及表达研究
18.Identification of the Insecticidal Crystal Protein Gene of the Bacillus thuringiensis;PCR法鉴定苏云金芽孢杆菌菌株的杀虫晶体蛋白基因
相关短句/例句

crystal[英]['kr?stl][美]['kr?stl?]伴孢晶体
1.Formation and Decomposition of Crystal of Bacillus thuringiensis;苏云金芽孢杆菌伴孢晶体的形成及降解
2.The present paper deals with the morphology and toxicity of parasporal crystals of Bacillus thuringiensis strain LSZ9408, which has been rejuvenated by infecting Plutella xylostella L.本文通过对虫体复壮前后BtLSZ9408菌株伴孢晶体的形态结构观察、杀虫毒力测定,发现BtLZS9408伴孢晶体以菱形结构为主(比例>85%),其余为正方形结构(比例占3%)、不规则结构(比例<12%);虫体复壮后菌株伴孢晶体中菱形结构比例提高、不规则结构比例下降,菱形晶体平均轴长增大,杀虫毒力显著提高。
3)Bt-crystal toxinBt伴孢晶体
1.GCSC-BtA was composed of Bt-crystal toxin and Avermectin, and had similar mechanism of toxicity to Avermectin against Plutella xylostella.Bt A是由 Bt伴孢晶体和阿维菌素制成的 ,对小菜蛾幼虫作用方式与阿维菌素相似 ,主要表现为胃毒和触杀作用 ,但效果比阿维菌素好。
4)Parasporal crystal shapes伴孢晶体形态
5)Bacillus thuringiensis parasporal crystal苏云金芽孢杆菌伴孢晶体
6)Bacillus thuringiesis gene苏云金芽孢杆菌伴孢晶体蛋白基因
延伸阅读

晶体管-晶体管逻辑电路晶体管-晶体管逻辑电路transistor-transistorlogic集成电路输入级和输出级全采用晶体管组成的单元门电路。简称TTL电路。它是将二极管-晶体管逻辑电路(DTL)中的二极管,改为使用多发射极晶体管而构成。TTL电路于1962年研制成功,基本门电路的结构和元件参数,经历了3次大的改进。同DTL电路相比,TTL电路速度显著提高,功耗大为降低。仅第一代TTL电路产品,就使开关速度比DTL电路提高5~10倍。采用肖特基二极管的第三代TTL电路,开关时间可缩短到3~5纳秒。绝大部分双极型集成电路,都是TTL电路产品。