蜂蜜主要是水、两种糖、维生素和酶的混合物。
Honey is basically a compound of water, two types of sugar, vitamins and enzymes.
这些酶的非凡转化能力可以通过简单的实验证明。
The remarkable convertive power of these enzymes can be proved by a simple experiment.
这些酶的聚集物提供了一种机制。
尿素酶的活性对溴硝醇比较敏感。
端粒酶系统是端粒和端粒酶的总称。
Telomerase system is the genetic name of telomerase and telomere.
高浓度的磷抑制植酸酶的合成。
Phytase production was inhibited by high level of phosphate.
其反应速度与酶的活性成正例。
The rate of the reaction is directly proportional to the enzyme activity.
研究了鸡肉对胰蛋白酶的吸附作用。
通过对酶的理性设计可以创造新的酶。
同时抑制酪氨酸酶的活性,美白肌肤。
At the same time inhibiting the activity of tyrosinase, the skin whitening.
饲料酶的主要原料是秸秆。
随后对这四种酶的活力单位进行了测定。
Then enzyme activity unit of these four sulfurtransferases was determined.
纤维素酶的作用机制至今尚不完全清楚。
The catalytic mechanism of cellulase is not yet entirely clear.
其发现是人类对于酶的认识的又一次飞跃。
The find of DNAzyme is a leap of knowledge to understand enzyme.
目的:对洋葱中蒜氨酸酶的性质进行研究。
本研究为拓宽胰蛋白酶的应用奠定了基础。
This study will lay a foundation for widening application of trypsin.
什么是连接酶的作用在脱氧核糖核酸复制的?
并且对LDH酶的活性也有一定的促进作用。
Meanwhile, it could have considerable promotive action to the activity of LDH.
钾是某些酶系统的活化剂,能保持酶的活性。
结论物理诱变可以有效提高弹性蛋白酶的酶活。
Conclusion Physical mutagenesis can enhance the activity of elastase.
结果表明,限制性内切酶的表达形式十分混乱。
The results reveal that its expression is rather disordered.
我国纤维素酶的应用研究近年来取得了很大进展。
The cellulase application study has made a great progress recently in China.
但是,目前国内外关于淡水鱼胰蛋白酶的报道很少。
However, till now, very little information regard trypsins from fresh water fish has been reported.
综述了纤维素酶的分子结构、作用机理的研究进展。
It summarizes the progress of the molecular structure and mechanism about cellulase in this paper.
此外,本文还对多酚氧化酶的应用进行简单的论述。
In addition, the application of PPO is briefly discussed in this paper as well.
这些酶的显著地转化能力可以通过一个简单的实验来证实。
The remarkable convertive power of these enzymes can be pif oven by a simple experiment.
研究结果为嗜热木糖异构酶的进一步工业应用奠定了基础。
The results can lay a foundation for application in industry of xylose isomerase.
研究了赤子爱胜蚓纤溶酶活性的提高条件及酶的最适作用条件。
In this paper the best conditions of activity of plasmin were studied.
本文以这两种除草剂为研究对象,研究了他们对土壤酶的影响。
The influence of these two herbicides to soil enzymes were chosen for this study.
通过对基因表达产物——同工酶的研究有助于对不育机制的了解。
Stud ying gene expression product-isozymes is help to understand male sterile mechanism.
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