科微学术

微生物学通报

科学史视角下的“基因工程”课程思政探索与实践
作者:
基金项目:

安徽省高等学校省级质量工程项目(2020szsfkc0744,2020jyxm1566);安徽省高校优秀青年人才支持计划项目(gxyq2020040);合肥师范学院质量工程“课程思政教学名师”项目(2021jxms17);合肥师范学院研究生导师专项科研项目(DSKY17);安徽省第三批“三全育人”综合改革试点工作培育单位项目


Exploration and practice of ideological and political teaching of Genetic Engineering course from the perspective of history of science
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [33]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    课程思政是新时期高校思想政治教育的重要途径之一。科学史记载了科学知识从产生到持续发展的过程,蕴含着丰富的育人价值,能够为专业课的课程思政教学提供新的视角和思路。本文从科学史丰富的育人价值中选择科学精神、科学思维、科学兴趣和科学伦理4个方面的素材;依托“基因工程”课程内容,对有关诺贝尔奖的科学史进行梳理;然后,以4个方面的素材为育人载体,深挖其中蕴含的思政元素,通过实施课程思政教学,帮助学生达成课程思政目标;最后,综合运用问卷和深度访谈相结合的方式评价教学效果。借此引领学生树立正确的价值观,提高思想政治水平,以期为生物学专业的课程思政体系建设提供参考。

    Abstract:

    Curriculum ideology and politics is an important way of ideological and political education in universities in the new era. The history of science records the process from generation to sustainable development of scientific knowledge, which contains rich educational value and provides new perspectives and ideas for the ideological and political teaching of professional courses. In this study, we selected materials in four aspects of scientific spirit, scientific thinking, scientific interest, and scientific ethics from the rich educational values of history of science. Meanwhile, we reviewed the history of Nobel Prize related to Genetic Engineering. Then, taking the materials of the four aspects above as the carrier of education, we excavated the curriculum ideological and political elements contained in the history of Nobel Prize related to Genetic Engineering, and helps students achieve their goals in ideology and politics by carrying out the ideological and political education in the Genetic Engineering course. Finally, we employed questionnaire survey and in-depth interview to evaluate the teaching performance. With such teaching practice, we aim to guide students to establish the correct value concept and improve their ideological and political level, and to provide a reference for the construction of curriculum ideological and political system of biology courses.

    参考文献
    [1] 张大良. 课程思政:新时期立德树人的根本遵循[J]. 中国高教研究, 2021(1): 5-9 Zhang DL. Ideological and political education in curriculum: the fundamental principle of cultivating people with morality in the new era[J]. China Higher Education Research, 2021(1): 5-9 (in Chinese)
    [2] 吴霏. 和谐育人理念下科学史教育的解读[J]. 大学教育, 2013, 2(5): 93-95 Wu F. Interpretation of science history education under the concept of harmonious education[J]. University Education, 2013, 2(5): 93-95 (in Chinese)
    [3] 刘振. 论科学史教育与课程思政建设的有机融合[J]. 南京中医药大学学报(社会科学版), 2021, 22(1): 57-60 Liu Z. Discussion on the organic integration of the education on scientific history and the ideological and political construction in courses[J]. Journal of Nanjing University of Traditional Chinese Medicine: Social Science Edition, 2021, 22(1): 57-60 (in Chinese)
    [4] 常重杰, 杜启艳, 彭仁海, 郑振宇. 基因工程[M]. 第2版. 北京: 科学出版社, 2018 Chang CJ, Du QY, Peng RH, Zheng ZY. Genetic Engineering[M]. 2nd edition. Beijing: Science Press, 2018 (in Chinese)
    [5] 李靖宇, 刘雅琴, 范瑞娟, 张琇, 刘建利. 生物科学史在微生物学教学过程中的育人功能[J]. 教育教学论坛, 2019(2): 32-33 Li JY, Liu YQ, Fan RJ, Zhang X, Liu JL. The educational function of history of biological science during the microbiology teaching[J]. Education Teaching Forum, 2019(2): 32-33 (in Chinese)
    [6] 吴举宏. 生物课程中科学史教育的学理分析及实践反思[J]. 教学与管理, 2017(1): 43-45 Wu JH. Theoretical analysis and practical reflection of history of science education in biology curriculum[J]. Teaching & Administration, 2017(1): 43-45 (in Chinese)
    [7] 袁维新. 科学史融入科学课程的原则、方式和策 略[J]. 课程 教材 教法, 2006, 26(10): 68-72 Yuan WX. The principles, approaches and strategies for the integration of scientific history with science curriculum[J]. Curriculum, Teaching Material and Method, 2006, 26(10): 68-72 (in Chinese)
    [8] 肖媛, 林辉. 生命科学家的社会伦理责任[J]. 医学与哲学, 2005, 26(2): 32-34 Xiao Y, Lin H. Social ethics responsibility of life scientists[J]. Medicine and Philosophy, 2005, 26(2): 32-34 (in Chinese)
    [9] 俞丽萍. 论大学生的科学道德教育: 科学史的视 角[J]. 高等理科教育, 2015(6): 69-74 Yu LP. On the scientific moral education of the university students—from the perspective of the history of science[J]. Higher Education of Sciences, 2015(6): 69-74 (in Chinese)
    [10] 仲伟纲, 李宏印. 走近诺贝尔奖[J]. 自然辩证法研究, 1999, 15(5): 65-69 Zhong WG, Li HY. Approaching the Nobel Prize[J]. Studies in Dialectics of Nature, 1999, 15(5): 65-69 (in Chinese)
    [11] 周雯, 王青松, 蔡望伟, 周代锋. 诺贝尔奖在分子生物学实验第二课堂教学中的应用[J]. 基础医学教育, 2013, 15(7): 692-695 Zhou W, Wang QS, Cai WW, Zhou DF. The application of Nobel Prize in the second classroom teaching of molecular biology experiment[J]. Basic Medical Education, 2013, 15(7): 692-695 (in Chinese)
    [12] 潜伟. 科学文化、科学精神与科学家精神[J]. 科学学研究, 2019, 37(1): 1-2 Qian W. Scientific culture, scientific spirit and scientist spirit[J]. Studies in Science of Science, 2019, 37(1): 1-2 (in Chinese)
    [13] 任衍钢, 卫红萍. 质粒的发现与认识过程[J]. 生物学通报, 2009, 44(10): 57-59 Ren YG, Wei HP. Discovery and recognition of plasmid[J]. Bulletin of Biology, 2009, 44(10): 57-59 (in Chinese)
    [14] 郭贵春, 杨维恒. 中心法则的意义分析[J]. 自然辩证法研究, 2012, 28(5): 1-5 Guo GC, Yang WH. An analysis of the central dogma[J]. Studies in Dialectics of Nature, 2012, 28(5): 1-5 (in Chinese)
    [15] 任本命. 芭芭拉·麦克林托克[J]. 遗传, 2003, 25(4): 371-372 Ren BM. Barbara McClintock[J]. Hereditas, 2003, 25(4): 371-372 (in Chinese)
    [16] 刁生富. 简论中心法则的发展[J]. 佛山科学技术学院学报(自然科学版), 2000, 18(3): 75-80 Diao SF. A brief account of the development of the central dogma[J]. Journal of Foshan University: Natural Science Edition, 2000, 18(3): 75-80 (in Chinese)
    [17] Dominissini D, Nachtergaele S, Moshitch-Moshkovitz S, Peer E, Kol N, Ben-Haim MS, Dai Q, Di Segni A, Salmon-Divon M, Clark WC, et al. The dynamic N1-methyladenosine methylome in eukaryotic messenger RNA[J]. Nature, 2016, 530(7591): 441-446
    [18] 梁祖霞. 遗传工程师的“手术刀”: 限制性内切酶[J]. 生命的化学(中国生物化学会通讯), 1982, 2(3): 8-9 Liang ZX. Genetic engineer’s scalpel: restriction endonuclease[J]. Chemistry of Life: Communication of Chinese Biochemical Society, 1982, 2(3): 8-9 (in Chinese)
    [19] 梁康. 1978年诺贝尔生理学和医学奖[J]. 生理科学进展, 1979, 10(2): 188 Liang K. 1978 Nobel Prize in Physiology and Medicine[J]. Progress in Physiological Sciences, 1979, 10(2): 188 (in Chinese)
    [20] 功勋. 诺贝尔奖金获得者人物简介(二): 沃纳·阿贝尔和汉弥尔登·史密斯[J]. 生命的化学(中国生物化学会通讯), 1983, 3(4): 33-35 Gong X. Brief introduction to Nobel Prize winners (2): Werner Abel and Hamilton Smith[J]. Chemistry of Life: Communication of Chinese Biochemical Society, 1983, 3(4): 33-35 (in Chinese)
    [21] 洪宪华. 开创遗传工程新篇章: 生物学科诺贝尔奖分析[J]. 生命科学, 1992, 4(2): 30-31 Hong XH. Creating a new chapter in genetic engineering: analysis of Nobel Prize in biology[J]. Chinese Bulletin of Life Sciences, 1992, 4(2): 30-31 (in Chinese)
    [22] 强伯勤. 筛选成功三个新的限制性内切酶[J]. 广西农业科学, 1984, 15(1): 21 Qiang BQ, Three new restriction enzymes were successfully screened[J]. Guangxi Agricultural Sciences, 1984, 15(1): 21 (in Chinese)
    [23] 罗锋, 李震, 李洁华, 谭鸿. 浅谈工科本科生科研兴趣和创新能力的培养: 以四川大学高分子科学与工程学院高分子专业建设为例[J]. 教育教学论坛, 2020(50): 67-68 Luo F, Li Z, Li JH, Tan H. Cultivation of engineering undergraduates’ scientific research interest and innovation ability: based on construction of polymer discipline in Sichuan University[J]. Education Teaching Forum, 2020(50): 67-68 (in Chinese)
    [24] Nyutu EN, Cobern WW, Pleasants BAS. The relationship between students’ casual interest in science and their perceptions of the undergraduate laboratory environment[J]. Research in Science Education, 2021: 1-15
    [25] 文远, 袁琪. 保罗·伯格: 基因工程创始人[J]. 少儿科技, 2014(6): 15-16 Wen Y, Yuan Q. Paul Berg: founder of genetic engineering[J]. Children’s Technology, 2014(6): 15-16 (in Chinese)
    [26] 禹宽平. PCR技术的发明者Kary Mullis博士[J]. 生命的化学: 中国生物化学会通讯, 1993, 13(3): 38-39 Yu KP. Dr. Kary Mullis, inventor of PCR technology[J]. Chemistry of Life: Communication of Chinese Biochemical Society, 1993, 13(3): 38-39 (in Chinese)
    [27] 张晓. 让基因沉默的人: 访诺贝尔生理或医学奖得主克雷格·梅洛[J]. 国际人才交流, 2015(3): 32-35, 72 Zhang X. Craig Mello: silencing genes[J]. International Talent, 2015(3): 32-35, 72 (in Chinese)
    [28] Fu Z, Zhang X, Zhou XY, Ur-Rehman U, Yu MC, Liang HW, Guo HY, Guo X, Kong Y, Su YY, et al. In vivo self-assembled small RNAs as a new generation of RNAi therapeutics[J]. Cell Research, 2021, 31(6): 631-648
    [29] 吴易雄, 田勇泉. 转基因动物的伦理问题研究述评[J]. 医学与哲学(人文社会医学版), 2008, 29(4): 52-53 Wu YX, Tian YQ. Commentary on the study of genetically modified animals ethical issue[J]. Medicine & Philosophy: Humanistic & Social Medicine Edition, 2008, 29(4): 52-53 (in Chinese)
    [30] 孙伟平, 戴益斌. 关于基因编辑的伦理反思[J]. 重庆大学学报(社会科学版), 2019, 25(4): 1-9 Sun WP, Dai YB. Ethical reflections on gene editing[J]. Journal of Chongqing University: Social Science Edition, 2019, 25(4): 1-9 (in Chinese)
    [31] 任云晓, 肖茹丹, 娄晓敏, 方向东. 基因编辑技术及其在基因治疗中的应用[J]. 遗传, 2019, 41(1): 18-28 Ren YX, Xiao RD, Lou XM, Fang XD. Research advance and application in the gene therapy of gene editing technologies[J]. Hereditas, 2019, 41(1): 18-28 (in Chinese)
    [32] 王欣. “基因剪刀”将生命科学带入新时代——2020年诺贝尔化学奖简介[J]. 解剖学报, 2021, 52(1): 3-4 Wang X. The genetic scissors bring life sciences to a new era: the Nobel Prize in Chemistry 2020[J]. Acta Anatomica Sinica, 2021, 52(1): 3-4 (in Chinese)
    [33] 左海龙. “教学做考” “以赛代考”结合的课程考核评价研究[J]. 科技经济导刊, 2020, 28(1): 123-124 Zuo HL. Research on curriculum assessment and evaluation based on the combination of “teaching, doing and testing” and “replacing testing with competition”[J]. Technology and Economic Guide, 2020, 28(1): 123-124 (in Chinese)
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

王占军,刘锦轩,王聪,辛淑静,徐忠东,焦春燕. 科学史视角下的“基因工程”课程思政探索与实践[J]. 微生物学通报, 2022, 49(2): 829-840

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2021-09-26
  • 最后修改日期:2021-11-20
  • 在线发布日期: 2022-02-21
文章二维码