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所在平台: Udemy |
课程主页: https://www.udemy.com/course/recombinant-dna-technology-genetic-engineering/
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课程名称:重组DNA技术与基因工程 课程概述: 重组DNA技术与基因工程是一种利用实验室技术改变生物体DNA组成的过程。基因工程(又称基因修饰)可以涉及改变单个碱基对、删除DNA区域或添加新的DNA片段。例如,基因工程可能涉及将一个物种的基因添加到另一个物种的有机体中,以产生所需的性状。基因工程已广泛应用于癌症治疗、酿造酵母、转基因植物和牲畜等研究和工业领域。该技术涉及细胞遗传物质的改变,包括跨物种转移基因,以产生改良或新型有机体。早在1972年,保罗·伯格就首次制作出了重组DNA分子,结合了猴病毒SV40与lambda病毒。除了插入基因,该过程还可用于去除基因。新的DNA可以随机插入,或有针对性地插入基因组的特定部分。 重组DNA技术与基因工程的重要性在于,它允许基因的改变,从而在不同的生物体间转移遗传物质。通过基因修饰,可以在作物植物中引入外源基因,并在特定组织中表达。这种基因的转移有助于提高作物保护。基因修饰可以通过多种病毒和非病毒方法进行,直接操纵DNA序列可能导致不同的表达水平。选择最佳的基因传递方法是一项复杂的任务,特别是在恰当地转移遗传物质方面。因此,理解细胞内的机制对于设计更有效的基因传递环境起着至关重要的作用。 就业前景: 与该学位直接相关的职业包括:学术研究员、生物医学科学家、临床研究助理、基因组学临床科学家、免疫学临床科学家、遗传顾问、植物育种家/遗传学家、生命科学研究科学家、医学研究科学家等。此外,该学位在其他领域也有用,比如生物技术专家、数据科学家、流行病学家、法医科学家、医学科学联络员、科学实验室技术员、科学作家和中学教师等。 薪资范围: 基因工程领域的候选人在工作或培训期间年薪从2-2.8万人民币不等,研究助理的年薪范围为3.5万至5万人民币,初级科学家的年薪在6-9万人民币之间,而高级科学家的年薪在15-16万人民币之间。在国外,如美国,遗传学家的平均年薪在$159,339到$194,895之间。博士研究员的薪资超过22万人民币(约€29,060/年),而博士后研究员的薪资超过50万人民币(约€50,525/年)。随着经验的增加,私人和政府部门提供的薪资套餐会不断提高。 适合报名对象: 正在攻读生命科学/生物技术/生物科学/BSc/BTech/MSc/MTech的学生,特别是希望在临床研究领域工作的学生。 课程收益: - 终身有效的学习材料 - 演示视频 - 随时随地访问课程,无任何障碍 - 终身录制访问 - 学习手册帮助提升在线课程的价值 - 在技术行业中获得巨大职业选择的竞争优势 - 最优质和最新的课程内容,符合行业标准 - 实施独特的学习策略 - 从经验丰富且持证的培训者那里获得学习经验 - 提高技术知识,以更好地进入工程行业 通过本课程,学员将获得在重组DNA技术和基因工程领域的深厚基础,提高自身职业竞争力。
About Recombinant DNA Technology & Genetic EngineeringGenetic engineering (also called genetic modification) is a process that uses laboratory-based technologies to alter the DNA makeup of an organism. This may involve changing a single base pair (A-T or C-G), deleting a region of DNA or adding a new segment of DNA. For example, genetic engineering may involve adding a gene from one species to an organism from a different species to produce a desired trait. Used in research and industry, genetic engineering has been applied to the production of cancer therapies, brewing yeasts, genetically modified plants and livestock, and more.Genetic engineering, also called genetic modification or genetic manipulation, is the modification and manipulation of an organism's genes using technology. It is a set of technologies used to change the genetic makeup of cells, including the transfer of genes within and across species boundaries to produce improved or novel organisms. New DNA is obtained by either isolating or copying the genetic material of interest using recombinant DNA methods or by artificially synthesizing the DNA. A construct is usually created and used to insert this DNA into the host organism. The first recombinant DNA molecule was made by Paul Berg in 1972 by combining DNA from the monkey virus SV40 with the lambda virus. As well as inserting genes, the process can be used to remove, or "knock out", genes. The new DNA can be inserted randomly, or targeted to a specific part of the genome.Importance of Recombinant DNA Technology & Genetic EngineeringGenetic modification allows changes in genes to transfer genetic material in different organisms. It is possible to introduce foreign genes into crop plants and express these in specific tissues. Transfer of genes can help to improve crop protection. Genetic modification can be done with various viral and non viral methods. Direct manipulation of DNA sequences can lead to different expression levels. Choosing the best method for gene delivery can be a difficult task, particularly to transfer genetic material in a proper way. This review highlights, basic mechanism and importance and different methods used for efficient gene delivery. Hence, understanding of intracellular machinery plays a crucial role for designing a more effective gene delivery environment.Job ScopeJobs directly related to your degree include:Academic researcherBiomedical scientistClinical research associateClinical scientist, genomicsClinical scientist, immunologyGenetic counselorPlant breeder/geneticistResearch scientist (life sciences)Research scientist (medical)Jobs where your degree would be useful include:BiotechnologistData scientistEpidemiologistForensic scientistMedical science liaisonPhysician associateScientific laboratory technicianScience writerSecondary school teacheSalary Range Provided in Genetic Engineering field:Candidate in jobs or training period ranges from 2-2.8 Lakh per annumFor research associate, it ranges from 3.5 lakh to 5 lakh per year.Junior scientists vary from 6-9 lakh per annumWhereas for a senior scientist, it varies between 15-16 lakh per annum in private companies.Not only in India but in foreign also if you are looking for a career the average annual base salary is $159,339 to $194,895 of geneticists in the USA. For example, a doctoral researcher gets a package of more than 22 lakh per annum (i.e. € 29,060/ year) whereas for postdoctoral researchers more than 50 Lakh per annum (€50,525/year). As the experience in this field increases, the salary packages offered in both private and government sector increases.Who can enroll?· Students pursuing their Life Science / Biotechnology / Bioscience / BSc / BTech / MSc / MTech who aspire to work in the clinical research field.What Benefits are you going to get from this course?Lifetime validityDemonstration VideosYou can access the session from anywhere without any hassle.Lifetime recording accessHand-outs will be given to help you maximize the value of online sessionsBeat the rising competition for enormous career options in the Technical sector.Best quality content which is latest and up-to-date with the industry standardsImplement strategies - the super-secret way.The learning experience from experienced and certified Trainers.Increase TECHNICAL KNOWLEDGE to get in the industry after engineering with this amazing strategy.