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Animal Genetics covers the fields of immunogenetics, biochemical genetics and molecular genetics.

动物遗传学》包含的研究领域有免疫遗传学、生物化学遗传学和分子遗传学。

The International Society for Animal Genetics evolved from a series of annual workshops for comparing methods for detecting red cell antigens and variants of proteins to a society focusing on basic and applied research within the fields of immunogenetics, biochemical genetics and molecular genetics.

这是国际畜牧遗传学学会的网站。该学会是从一系列用比较方法检测红细胞抗原和不同蛋白质的年工作室发展到从事基础和应用研究的学会,其内容包括免疫遗传学、生化遗传学和分子遗传学。

Its aims to advance the development of Immunogenetics in Europe as a discipline of medicine research and training, to provide a forum for exchange of scientific information for young scientists and others working in the field, to create a formal organisation of workers in the field of immunogenetics, histocompatibility testing and transplantation, and to promote use of immunogenetic databases.

其主要目的有:促进欧洲免疫遗传学领域的医学研究和培训,为青年科学家和相关工作者提供信息交流论坛,为免疫遗传学、组织相容和移植工作者创立一个正式组织,并促进免疫遗传学数据库的使用。

Population genetics is one of theory cores in evolutionary biology, genetics and conservation genetics.

群体遗传学是进化生物学、遗传学和保护遗传学研究和发展的一个理论基础和核心内容。

The major contents contained genomics of medical and industrial important microbes; molecular technology used in uncultivable microbes; virus molecular genetics; Streptomyces molecular genetics; filament fungal molecular genetics; yeast molecular genetics and microbial breeding.

本课程主要讲解医学微生物及工业微生物代表菌株的基因组学;难培养微生物的分子生物学研究技术;病毒分子遗传学;链霉菌分子遗传学;丝状真菌分子遗传学;酵母分子遗传学及微生物育种等内容。

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.

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。

Department of Biological Sciences is primarily dedicated to teaching and research in biology including insect and vertebrate molecular ecology, historical biogeography and population genetics; conservation genetics, crustacean endocrinology, physiology and biochemistry of gametes, vertebrate physiology, systematics, ecology, and zoogeography of freshwater and marine fishes, molecular genetics, reproductive physiology, evolutionary genetics.

生物科学系主要致力于生物学的教学与研究,其研究领域包括昆虫和脊椎动物分子生态学,历史生物地理学和种群遗传学,保护遗传学,甲壳类内分泌学,配子生理生化,脊椎动物生理学,淡水和海洋鱼类系统学、生态学、动物地理学,分子遗传学,生殖生理学等。

Reactive oxygen species causing DNA oxidative damage comes from two kinds of ways:one is from cellular normal physiological metabolism;the other is from outer environment.Redox-sensitive green fluorescent protein was expressed in Saccharomyces cerevisiae.Recombinant cells were evaluated in monitoring the changes in the redox state of living cells when challenged with toxicologically relevant metal ions NaAsO_2 or Pb(NO_3)_2 by measuring emission intensity at 510 nm with a Hitachi F6500 fluorescence spectrophotometer,roGFP expressed in yeast responded not only to typical membrane-permeant oxidants H_2O_2 and reductants DTT,but also to toxicological metal ion-induced intracellular redox changes in a dose-dependent manner.Moreover,exposure of yeast cells to NaAsO_2 or Pb(NO_3)_2 at concentrations that induced redox changes reported by roGFP caused up to 2~3 fold increases in DNA mutation frequency.This mutagenic effect was largely caused by oxidative stress since blocking the production of hydryl radicals with thiourea significantly reduced the mutation rate as well as delayed the cell death.

本文将对氧化还原状态变化敏感的绿色荧光蛋白roGFP1-R12,在酵母细胞中实现了多拷贝强表达;荧光扫描经强氧化剂H_2O_2和还原剂DTT以及环境中重金属NaAsO_2或Pb(NO_3)_2处理后的酵母细胞悬液,测定510 nm处的荧光发射强度结果显示,表达的绿色荧光蛋白对氧化还原水平敏感,且在510 nm处的荧光强度与一定的重金属浓度呈正相关,即roGFP1-R12在510nm处的荧光发射值随重金属浓度的增高而增强,从而说明重金属对细胞的毒性在一定程度上很可能是通过破坏细胞内的氧化还原平衡发生作用;同时通过该绿色荧光蛋白对胞内氧化还原状态变化的响应情况可以来实时检测环境中的重金属;遗传学的点突变频率及致死率实验数据表明,重金属能导致菌体的点突变频率和致死率升高,且活性氧的清除剂巯基脲能明显降低这种点突变和致死率,说明由重金属引发的这种点突变和致死效应在很大程度上是依赖于重金属对细胞诱导产生的氧化胁迫。

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。

The follwing three aspects are considered. First, gene has been regarded as the research objective and a history of genetics is the history of further understanding of the substantiality of the gene. Second, based on the highly developed molecular genetics, the genetics of scientific morphology is changed into the biological technology of technological morphology. And third, the development of the biological technology sufficiently shows the dual character of the new technology as a two-bladed sword, and it...

讲述3个方面:第一,遗传学研究者自始至终把基因作为研究对象,一部遗传学史,就是人们对基因实体性认识不断深化的历史;第二,在分子遗传学高度发展基础上,科学形态的遗传学转化成技术形态的生物技术,作为一种活跃的生产力走向了产业化道路;第三,生物技术的发展充分显示新技术犹如双刃剑的两面性和对社会伦理的冲击与挑战,对社会提出了新课题。

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