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Waddington相关的网络例句

查询词典 Waddington

与 Waddington 相关的网络例句 [注:此内容来源于网络,仅供参考]

Mr. Serjeant Parry stated, in reply to a Question by Mr. Waddington

作为对 Waddington 先生问题的回应, Serjeant Parry 先生说到

Waddington told him though looking at the matter from a different standpoint and urged by different arguments, still he had very nearly come to his Mr.

Waddington 告诉他,通过站在不同的角度上看待这件事情以及在不同争论的促进下,他仍然和 Mr。

Waddington, the former Under Secretary at the Home Office, came almost to the opinions that he Mr.

Waddington 和他的主张几乎基本上一致。

First introduced by C.H. Waddington in 1939 to name "the causal interactions between genes and their products, which bring the phenotype into being,"3 epigenetics was later defined as heritable changes in gene expression that are not due to any alteration in the DNA sequence.4

Waddington首先引进以命名"基因和它们的产物间的因果交互作用,并把表现型带入生物",表观遗传学后来定义为不归因DNA序列任何改变的基因表达的遗传学改变。

First introduced byC.H. Waddington in 1939 to name "the causal interactions betweengenes and their products, which bring the phenotype into being," 3 epigenetics was later defined as heritable changes in gene expressionthat are not due to any alteration in the DNA sequence.

首先, C.H。 Waddington 在1939年命名为"基因和产物偶然的相互作用使表现型成为客观存在",表观遗传学后来被定义为基因表达的遗传改变,而不是由于 DNA 序列的任何改变。

First introduced by C.H. Waddington in 1939 to name "the causal interactions between genes and their products, which bring the phenotype into being,"3 epigenetics was later defined as heritable changes in gene expression_r that are not due to any alteration in the DNA sequence.4

Waddington首先引进以命名"基因和它们的产物间的因果交互作用,并把表现型带入生物",表观遗传学后来定义为不归因DNA序列任何改变的基因表达的遗传学改变。

In 1942, Conrad Waddington coined the term "epigenetics" to describe this idea that an organism's experience may cause its genes to behave (or "express themselves") differently.

在1942年 Conrad Waddington发明了表观遗传学这一术语来描述生物体所经历的后天环境能够显著影响内部基因的外在表现。

Though the Waddington and von Bertalanffy programs have not been confirmed in the typical accomplishments and representations in molecular biology in general, and molecular genetics in particular, there are interesting advances that fall between those searches for broad theories couched in mathematically precise differential equation form, and the narrow classes of mechanisms, usually described in qualitative multilevel causal language, that constitute the vast majority of current biomedical explainers.

Waddington 和 von Bertalanffy氏方法,尽管其贡献和代表性并没有在一般意义上得到分子生物学或者在特别意义上得到分子遗传学的确认,但还是在以下方面产生了有益的进展,即,它使我们的广泛的理论搜寻进步到精确的数学微分方程式的形式和通常以定性的多级因果语言来描述的机理的狭窄类别之间,由此构建了当代生物医学因果辨析的主体内容。

Though the Waddington and von Bertalanffy programs have not been confirmed in the typical accomplishments and representations in molecular biology in general, and molecular genetics in particular, there are interesting advances that fall between those searches for broad theories couched in mathematically precise differential equation form, and the narrow classes of mechanisms, usually described in qualitative multilevel causal language, that constitute the vast majority of current biomedical explainers.

朋友,追加点分如何?虽然Waddington和冯Bertalanffy节目在分子生物学和分子遗传学的典型的成就和表示法未一般来说,被证实特别是,有下跌在那些查寻之间以数学上精确微分方程形式横卧的宽广的理论的有趣的前进和在定性多重原因语言,通常描述的机制狭窄的类,构成绝大多数的当前生物医学的解说员。

First introduced by C.H. Waddington in 1939 to name "the causal interactions between genes and their products, which bring the phenotype into being,"3 epigenetics was later defined as heritable changes in gene expression that are not due to any alteration in the DNA sequence.4

Waddington首先引进以命名&基因和它们的产物间的因果交互作用,并把表现型带入生物&,表观遗传学后来定义为不归因DNA序列任何改变的基因表达的遗传学改变。

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