安徽农学通报 >
2026 , Vol. 32 >Issue 6: 126 - 128
DOI: https://doi.org/10.16377/j.cnki.issn1007-7731.2026.06.033
生物技术引论与实验课程混合式教学模式探索
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代培红(1979—),女,河北东光人,硕士,副教授,从事棉花抗逆分子生物学科研教学等工作。 |
Copy editor: 张琴
收稿日期: 2025-04-09
网络出版日期: 2026-03-27
基金资助
新疆维吾尔自治区高校本科教育教学研究和改革项目(XJGXPTJG-202328)
Exploration of the blended teaching mode in the course of Introduction to Biotechnology and Experiment
Received date: 2025-04-09
Online published: 2026-03-27
本文基于生物技术引论与实验课程常规实验教学现状,针对课程体系、教学模式、评价标准及课程思政融合等方面的优化提升需求,从课程体系重构、教学模式创新、评价方法优化及课程思政渗透等方面展开论述,构建线上线下混合式新型实验教学体系并提出针对性改革策略。改革实践中,搭建模块化线上学习平台,整合标准化操作视频、三维动态演示动画等多元化资源,形成完整的线上学习体系;构建梯度化线下实验教学模式,采用师生双主体策略与多元化教学方法,强化学生主体地位与探究能力;建立实验全过程动态评价体系,实行线上30%、线下70%的综合考核,实现客观全面评价;有机融合课程思政与专业知识,强化育人实效。教学实践表明,该改革方案获得学生广泛认可,96.6%的学生认为该模式有助于知识建构,课程先后获评2023年校级、2024年省部级一流本科课程,有效提升学生综合素养。本文为相关实验课程教学改革提供参考。
代培红 , 马丽 , 李月 . 生物技术引论与实验课程混合式教学模式探索[J]. 安徽农学通报, 2026 , 32(6) : 126 -128 . DOI: 10.16377/j.cnki.issn1007-7731.2026.06.033
Based on the conventional experimental teaching status of the course Introduction to Biotechnology and Experiment, and targeting the needs for improvement in the curriculum system, teaching model, evaluation criteria, and integration of ideological and political education, this study discussed the restructuring of the curriculum system, innovation of teaching model, optimization of evaluation methods, and integration of ideological and political elements. It established a new online-offline blended experimental teaching system and proposed targeted reform strategies. In the reform practice, the research team constructed a modular online learning platform and integrated diversified resources such as standardized operation videos and 3D dynamic demonstration animations to form a complete online learning system. It developed a progressive offline experimental teaching mode, adopted a teacher-student dual-subject strategy and diversified teaching methods, and strengthened students’ dominant position and inquiry ability. A dynamic evaluation system covering the whole experimental process was set up, and a comprehensive assessment with 30% online and 70% offline components was adopted to achieve objective and comprehensive evaluation. Ideological and political elements were organically integrated with professional knowledge to enhance the educational effect. Teaching practice showed that the reform was widely recognized by students, with 96.6% of them agreeing that the model contributes to knowledge construction. The course was successively awarded university-level first-class undergraduate course in 2023 and provincial and ministerial-level first-class undergraduate course in 2024, which effectively improved students’ comprehensive literacy. This paper provides a reference for the teaching reform of related experimental courses.
| [1] |
覃阳,谢慧明,李玉洁,等. 人工智能项目式综合实验教学平台设计与实践[J]. 实验室研究与探索,2024,43(9):135-141.
|
| [2] |
张立全,张彦桃. 以OBE理念为导向的生物技术大实验教学实践[J]. 实验科学与技术,2025,23(4):106-112.
|
| [3] |
钱丽丽,马云云,张改. 基于OBE理念的微生物学检验实验课程线上线下混合教学模式的构建[J]. 卫生职业教育,2023,41(21):89-92.
|
| [4] |
代培红,张霞,苏秀娟,等. 论《生物技术引论与实验》课程说课模式的设计[J]. 教育教学论坛,2019(39):229-230.
|
| [5] |
杨绳岩,孟祥珍,王新,等. 基于OBE理念的物理化学实验线上线下混合式“八环节”教学法的构建与探索[J]. 大学化学,2024,39(11):28-37.
|
| [6] |
邓洁,朱华,高进涛,等. 基于BOPPPS混合式教学模式在生物化学实验教学中的初探[J]. 工业微生物,2024,54(6):188-190.
|
| [7] |
陈定,孙珂. 高职院校课程思政质量提升实践研究[J]. 云南开放大学学报,2024,26(4):82-87.
|
| [8] |
李燕,吕典秋. 新农科背景下作物学实验课程教学内容改革探索[J]. 安徽农学通报,2025,31(6):131-134.
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