这个前景是美好的,因为从细菌到牛都可以用来合成荧光蛋白质。
A tantalizing prospect because almost any organism, from a bacterium to a cow, can be programmed to synthesize GFP.
目前尚未了解这种在珊瑚和其他无脊椎动物身上发现的荧光蛋白质的功能。
The function of such fluorescent proteins in corals and other invertebrates is unknown
她和其他四只猎兔犬都能制造一种可以在紫外线照射下发红光的荧光蛋白质。
She and four other beagles all produce a fluorescent protein that glows red under ultraviolet light.
自然存在的荧光蛋白质(gfp)是杂乱分布的,如同普通电灯发出的光线。
The natural fluorescence of GFP is incoherent, just like the light emitted by a normal light bulb.
虽然不含有随处可得的荧光素,他们含有一种叫做“发光蛋白”,实际上就是和氧气连接的荧光素蛋白质。
Instead of having freely available luciferin, they contain molecules called photoproteins which are, in effect, luciferin proteins that already have oxygen bound to them.
尽管绿色荧光蛋白是由238个氨基酸组成蛋白质,是一种微小的、疏水性膜渗透的荧光分子。
While GFP is a protein that consists of 238 amino acids, the new technique USES a small, hydrophobic, and membrane-permeable fluorescent molecule.
通过使用DNA技术,研究人员现在可以连接到其他有趣的绿色荧光蛋白基因,但在其他无形,蛋白质。
By using DNA technology, researchers can now connect GFP to other interesting, but otherwise invisible, proteins.
通过使用DNA技术,研究人员现在可以连接到其他有趣的绿色荧光蛋白基因,但在其他无形,蛋白质。
By using DNA technology, researchers can now connect GFP to other interesting, but otherwise invisible, proteins.
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