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amphioxus相关的网络例句

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与 amphioxus 相关的网络例句 [注:此内容来源于网络,仅供参考]

Recently, CK has been shown to be an acute phase protein in the humoral fluid of amphioxus B.

最近的研究表明文昌鱼体液中的CK是一种急性时相蛋白,但对其免疫功能知之甚少。

In this paper, we report expression and functional analysis of CK gene in amphioxus B. belcheri tsingtauense.

首先,我们用Real-time PCR技术分析细菌外毒素LPS对BbCK基因表达的影响。

These are in line with the notion that amphioxus is an organism transitional from invertebrate to vertebrate in phylogeny.

此外,L34/S29氨基酸序列的显著同源性证明了它们在漫长的进化过程中相当保守。

Studies on gene structure, function and expression in amphioxus will contribute to the understanding of the origin and evolution of the vertebrates.

利用分子生物学手段,研究文昌鱼有关基因的结构、进化和表达,可以从分子水平上来揭示包括人类自身在内的脊椎动物的起源。

The pearson correlation coefficient was 0.682 of the comparision between the sea urchin and amphioxus.

数据库中收录了原始的277538条EST数据,收录了文昌鱼转录层次各方面的数据和结果(http://amphioxus.lnnu.edu.cn/homepage.php)。

Firstly,the presence and location of AAT in amphioxus was studied by Westernblotting and immunohistochemical methods.The results first revealed that AATpresent in amphioxus,a cephalochordate.Also it was demonstrated that AATdistributed in cellular plasma in hepatic diverticulum,the pouch that protrudesforward as an outpocketing of the digestive tube and extends along the right side ofthe posterior part of the pharynx,which has long been considered to be the precursorof vertebrate liver.In vertebrate,AAT is primary synthesized in liver.

我们首先利用免疫组化和Western blotting方法,研究了AAT在文昌鱼的组织表达和定位,首次在头索动物文昌鱼中证明了AAT的存在,结果显示,AAT定位于文昌鱼肝盲囊的细胞浆内,从AAT在文昌鱼中的合成部位来看,在功能上文昌鱼的肝盲囊等同于脊椎动物肝脏,肝盲囊是在发育分化过程中消化道组织向右前方突出沿着咽后部向前扩展和延伸形成的一个囊袋状结构。

These data give insight into the development mechanism and evolution of the amphioxus and vertebrates.A novel gene, AmphiSom, was identified in amphioxus Branchiostoma belcheri tsingtauense, and its sequence and developmental expression pattern were determined.

因此虽然文昌鱼不是脊椎动物的直接祖先,但是它是现存的与脊椎动物直接祖先最接近的无脊椎动物,是研究动物进化和动物胚胎发育的典型材料。

In this paper, the cloning, expression and phylogenetic analysis of AmphiSDHD and AmphiS27 from the gut cDNA library of amphioxus Branchiostoma becheri tisingtauense are carried out.AmphiSDHD, encoding the cytochrome b small subunit in mitochondrial succinate-ubiquinone oxidoreductase, was isolated from the gut cDNA library of amphioxus Branchiostoma belcheri tsingtauense.

本文从青岛文昌鱼(Branchiostoma belcheri tsingtaunese)肠cDNA文库中,分离得到克隆L095和094,经鉴定它们分别编码文昌鱼线粒体琥珀酸-泛醌氧化还原酶中细胞色素b的小亚基和核糖体蛋白S27(AmphiS27)。

These results also provedthe presence of the same acute phase response profile in amphioxus,as observed ineutherians.Thus it pushed the evolutionary existence of the eutherian-like acute phaseresponse back to the protochordate lineage.Fourthly,we determined CAs,including epinephrine、norepinephrin anddopamine,with HPLC method optimized after LPS challenged amphioxus.Theresults demonstrated that E,DE and DA are present in amphioxus humoral fluid,andE was firstly found in amphioxus.

第三,我们用生物化学方法,选取海洋中广泛存在、众多水产动物的常见致病菌-溶藻弧菌作为天然反应原感染文昌鱼,从另外一个角度探讨并丰富文昌鱼体液中的八种炎性蛋白的急性时相反应,结果显示,与LPS感染文昌鱼相比,六种正APPs的浓度变化幅度相对较小,曲线相对平缓,但仍然呈正急性时相反应,蛋白电泳也证实了这一点;而二种负APPs:RBP和白蛋白(Albumin,ALB)浓度实验周期内总体呈下降的趋势,呈负急性时相反应,结论与上述LPS相同。

The phylogenetic analysis based on the amino acids of invertebrate and vertebrate S19 proteins showed that the amphioxus protein was at the base of a clade of vertebrate S19 proteins, indicating that amphioxus is not only the sister group of extant vertebrates but also the basal lineage of chordates.

另外,AmphiS19与脊椎动物各S19蛋白在氨基酸水平上的相似性几乎是等同的。这些结果表明文昌鱼不仅是脊椎动物的姊妹类群,而且是脊索动物谱系进化过程中的基部类群。

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