1)Trichoderma reesei瑞氏木霉
1.Construction of Heterogeneous Genes Expression System of Filamentous Fungus Trichoderma reesei;丝状真菌瑞氏木霉外源基因表达系统的构建
2.Recombinant Aspergillus niger Glucose Oxidase Expressed in Trichoderma reesei;瑞氏木霉表达黑曲霉葡萄糖氧化酶
3.Preliminary analysis of the function region deletion in xylanase Ⅱ promoter from Trichoderma reesei;瑞氏木霉木聚糖酶Ⅱ启动子功能区缺失分析的初探
英文短句/例句
1.Preliminary Study of the Humanization of N-glycosylation Pathways in Trichoderma Reesei;瑞氏木霉N-糖基化途径的人源化改造初探
2.Agrobacterium-mediated T-DNA Insertional Mutagenesis and Identification of the Morphological and Metabolic Mutants in Trichoderma Reesei;农杆菌介导的瑞氏木霉T-DNA插入突变及生长代谢突变子分析
3.Expression of Human Erythropoietin in Trichoderma Reesei and Preliminary Glycosylation Analysis;促红细胞生成素在瑞氏木霉中的表达及糖基化初步研究
4.Phage Display of the Cellobiohydrolase I Produced by Trichoderma Reesei;瑞氏木霉纤维素二糖水解酶CBHI噬菌体展示系统的构建
5.Construction of Expression Vectors in T.reesei with Multicopies Strategy;多拷贝策略构建瑞氏木霉外源基因系列表达载体
6.Agrobacterium-mediated Transformation (AMT) and the Expression of Green Fluorescent Protein in Trichoderma Reesei;农杆菌介导的瑞氏木霉转化及绿色荧光蛋白的表达研究
7.Protein Engineering and Expression of the Endoglucanase Ⅱ from Trichoderma Reesei;瑞氏木霉内切葡聚糖酶Ⅱ蛋白质工程改造和表达研究
8.Purification of β-endoglucanase in T. reesei QM9414 and its enzymological study瑞氏木霉β-内切葡聚糖酶的纯化及其部分酶学性质研究
9.Induction of Apoptosis by Hydrogen Peroxide in Trichoderma Reesei and the Flow Cytometric Assessment of Protoplast Viability;过氧化氢诱导的瑞氏木霉细胞凋亡研究及原生质体细胞活力流式细胞术检测
10.Expression of Recombinant Trichoderma Reesei Endoglucanase II in Escherichia coli and Properties of the Recombinant Enzyme瑞氏木霉内切葡聚糖酶II在大肠杆菌中的重组表达及重组酶性质测定
11.Cellulase Production from Mixed Fermentation of Trichoderma reesei RUT C-30 and Apsergillus niger NL02里氏木霉与黑曲霉混合发酵产纤维素酶的研究
12.TrATG5 Gene is Involved in the Development of Trichoderma ReeseiTrATG5基因对里氏木霉生长发育的影响
13.Purification and Characterization of Cellulases from the Fungus Trichoderma Reesei;里氏木霉纤维素酶的分离纯化与酶学性质研究
14.Studies on Cellulase Induced by Waste Molasses of Ethanol from Trichoderma Knoningii;糖蜜酒精废液诱导康氏木霉产纤维素酶的研究
15.Study on Antagonistic Mechanism and Fermentation Condition of Trichoderma Koningii;康氏木霉的拮抗机制及发酵条件的初步研究
16.Cloning and Expression of Cellulase (EGⅠ) from T. Knoningii in Escherichia Coli;康氏木霉纤维素酶基因(EGⅠ)的克隆与表达
17.The Study of Purification and Application of Cellulases from Trichoderma Reesei;里氏木霉纤维素酶的分离纯化及应用的研究
18.Effect and Control of Dissolved Oxygen on the Cellulase Production by Trechoderma Reesei;溶解氧对里氏木霉产纤维素酶的作用与控制
相关短句/例句
Trichoderma reesei QM9414瑞氏木霉QM9414
1.Study on production of cellulase using bagasse by Trichoderma reesei QM9414;瑞氏木霉QM9414利用蔗渣发酵产纤维素酶的研究
3)endoglucanase Ⅰ瑞氏木霉内切葡聚糖酶
1.Phage display of endoglucanase Ⅰ from Trichoderma reesei and its cellulose-binding domain;瑞氏木霉内切葡聚糖酶Ⅰ及其CBD的噬菌体表面展示系统的构建
4)trichoderma koningii康氏木霉
1.Study of cellulase produced by trichoderma koningii ZJ4;康氏木霉ZJ4摇瓶发酵产纤维素酶的研究
2.Optimization Study on Solid Fermentation for Cellulase Production from Trichoderma Koningii— Optimization of Substrate Material and Technical Conditions;康氏木霉固体发酵生产纤维素酶优化研究——培养基用料与工艺条件优化
3.STUDY ON FORAGE PROTEIN PRODUCTION BY TWO-STEP MIXED CULTURE FERMENTATION WITH Pleurotus ostreatus AND Trichoderma koningii;糙皮侧耳和康氏木霉二步混合发酵生产饲料蛋白的研究
5)Trichoderma reesei里氏木霉
1.Cellulase production by Trichoderma reesei from bagasse pretreated by alkali and microwave;碱与微波联合处理蔗渣对里氏木霉发酵产纤维素酶的影响
2.Present situation of research on selective biosynthesis of Trichoderma reesei xylanases for xylo-oligosaccharides production;低聚木糖生产用里氏木霉木聚糖酶选择性合成的研究现状
3.Screening of Recombinant Trichoderma reesei 306 and Its Enzyme-Producing Property;里氏木霉306菌株筛选及其产酶特性的研究
6)Trichoderma koningii zj4康氏木霉zj4
1.Whenstrawpowder was used as primary carbon source,Trichoderma koningii zj4could produce relatively highcellulase.本文以稻草为主要碳源,对几种真菌产纤维素酶的能力进行了比较研究,其中康氏木霉zj4产酶能力最强。
延伸阅读
‘芽黄’红瑞木‘芽黄’红瑞木 [山茱萸科] [山蒾属]拉丁名:cornus alba‘bud`s yellow’产地分布:分布于我国东北和内蒙古、陕西、甘肃、青海等省区;朝鲜、俄罗斯也有分布。形态特征:干直立丛生。单叶对生,卵形或椭圆形,顶生聚伞花序,花小白色,花期6-7月。枝条鲜黄色。生长习性:喜光,耐寒,耐湿,耐瘠薄。园林用途:红瑞木茎干入冬后成鲜红色,为著名的冬季观茎树种,宜丛植于庭园草坪,建筑物前或常绿树前。因根系发达,又耐潮湿,也可植于河边、湖畔、堤岸等处。此外,还可以格局枝条不同的颜色,栽植成各种色块、色带、不同色彩相互映衬,观赏效果甚佳。下雪后,再白色的映衬下,枝条颜色更加鲜艳夺目,为北方的冬季增加了新的情趣。
