这会比核酸外切酶测序更快,也会更加精确:因为碱基彼此间仍然相连,不会以错误的顺序通过纳米孔。
It would also be more accurate: because the bases are still attached to one another, there is no chance that they will pass through the nanopore in the wrong order.
用9个玉米和水稻线粒体基因探针与酶切条带杂交发现,不育系与保持系线粒体DNA的相同大小酶切片段含有相似的顺序。
Homologous sequences of mtDNA were found between MS and maintainer lines by using 9 probes of maize and rice to hybridize with digested mtDNA.
乙酰胆碱酯酶因其来源不同,其氨基酸顺序及空间结构也存在一定差异。
The amino acid sequences and structure of AChEs from animals are different from each other.
它们似乎含有光合作用所必需的酶,这些酶按一定顺序排列着使光合作用以最大效率发生。
They seem to have the enzymes necessary for photosynthesis arranged in the proper sequence for the most efficient handling of this process.
氨肽酶是一类从多肽链的氮末端顺序逐个水解氨基酸的酶,在蛋白水解液脱苦和蛋白质的深度水解中有重要作用。
Aminopeptidase, a collection of enzymes which can remove amino acid from the N-terminus of peptides one by one, is very important in protein hydrolysate production and debittering.
时间顺序上,POD酶活性在统计学上最先表现出显著的差异性,其次是树体干部电容,之后是树体干部阻抗,最后是PPO酶活性。
The statistical difference of POD was showed firstly, the second index was tree stem capacitance, the third one was tree stem impedance and the last one was PPO.
目的采用顺序特异引物聚合酶链反应(PCR -SSP)建立人类白细胞抗原DR位点的DNA分型方法。
Objective To establish DNA typing for HLA-DR antigens by polymerase chain reaction with sequence-specific primers (PCR-SSP).
采用顺序特异性引物聚合酶链式反应(PCR-SSP)DNA分型技术,首次对35例肾移植供受者和4份标准DNA进行HLA-DR2、DR7、DR9基因配型。
HLA-DR2, DR7, DR9 genotyping by polymerase chain reaction with sequence-specific primers (PCR-SSP)was carried out for 35 individuals and 4 cell lines DNA.
目的采用顺序特异引物聚合酶链反应技术(PCRSSP),建立汉族人群HLAB40交叉反应组高分辨度dna分型方法。
Objective To establish a method of high resolution DNA typing for HLA B40 cross reactive groups (CREG) in Chinese with polymerase chain reaction with sequence specific primers (PCR SSP).
接穗和砧木的小孢子叶球的过氧化物酶同工酶都出现干扰酶带,尤其对砧木影响较大,同时还影响其顺序表达;
The peroxidase isozyme of microstrobilus in scion and stock appear interfere isozymes, especially affect on the stock; and influence on their genes sequential expression ;
第24天和第48天,在同一盐度下,各消化器官蛋白酶活力和淀粉酶活力高低顺序依次均为:幽门盲囊、肠道、胃和肝脏;
On the 24th and 48th day, at the same salinity, the protease and amylase activity in descending order were as follows: pyloric caeca, intestine, stomach and liver;
第24天和第48天,在同一盐度下,各消化器官蛋白酶活力和淀粉酶活力高低顺序依次均为:幽门盲囊、肠道、胃和肝脏;
On the 24th and 48th day, at the same salinity, the protease and amylase activity in descending order were as follows: pyloric caeca, intestine, stomach and liver;
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