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glycerol - 3 - phosphate transfer. this system is the chain of deoxyribonucleic acid.

机译:甘油-3-磷酸盐转移。该系统是脱氧核糖核酸的链。

摘要

the geology of the PG was stronger than my air of change, of glycerol - 3 - phosphate transfer. i know (ATase) biotechnology to produce active with the dna chain, specifically the pumpkin origin of glycerol - 3 - uc778uc0b0uc544 room transfer. in the cDNA (ATase) about 1 / 3, and the central area (KpnI and Hind III of cutting parts) of the corresponding area ATase cDNA spinach and a change in the charge of the chimera gene, or cDNA, about 1 / 6 of the central zone (Hind III and Sac i of cutting parts) the use of cDNA spinach substitution by,the origin of the cDNA ATase or spinach, about 1 / 3 of the measuring area (3 'KpnI and EcoRI of cutting parts) of the corresponding area cDNA pumpkin ATase and change into a chimera gene related to technology.;the above chimera gene is unsaturated fatty acid, strong gas selective it can be found that ATase chimera. the low temperature sensitivity of the dna chain of the plant, at present, to make the low temperature tolerance of plants the first known use of ATase gene, more strong and more, i can give the plants.
机译:PG的地质比甘油3-磷酸盐的转移强于我的变化。我知道(ATase)生物技术可以产生具有dna链的活性,特别是南瓜的甘油来源-3- uc778 uc0b0 uc544房间转移。在cDNA(ATase)中大约1 / 3,并且相应区域ATase cDNA菠菜的中央区域(切割部分的KpnI和Hind III)和嵌合基因或cDNA电荷的变化大约1 /中心区域的6个区域(切割部件的第III类和Sac i类)使用cDNA菠菜替代品,即cDNA ATase或菠菜的起源,约1 // 3的测量区域(切割部件的3'KpnI和EcoRI )的相应区域的南瓜南瓜ATase并转变为与技术有关的嵌合体基因。;上述嵌合体基因是不饱和脂肪酸,对气体的选择性很强,可以发现ATase嵌合体。目前,植物的dna链的低温敏感性使植物的低温耐受性成为ATase基因的第一个已知用途,而且强度更高,而且我可以给植物提供。

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