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所在平台: Udemy |
课程主页: https://www.udemy.com/course/the-complete-biology-respiration-in-plants-glycolysis/
课程评论:没有评论
**课程名称:** 植物呼吸作用:糖酵解(The Complete Biology Respiration in Plants Glycolysis) **课程概述:** 本课程深入解析植物呼吸作用的首个关键环节——糖酵解。糖酵解是将葡萄糖分解以产生能量的过程,它会生成丙酮酸、ATP、NADH 和水。该过程发生在细胞质中,不需要氧气,同时存在于有氧和无氧生物体内。 课程将提供两种深入学习糖酵解的方式:一种是全景式细节解析,涵盖其十个完整步骤;另一种是侧重于关键步骤和原理的“精华版”,无需追溯每一个原子的去向。 **课程内容亮点:** * **基础概念:** 详细介绍糖酵解作为细胞呼吸第一阶段的作用,并强调其不依赖氧气的特性,这使得它在无氧生物中也至关重要。 * **通用性:** 通过比较人类和乳酸菌(Lactobacillus acidophilus)处理葡萄糖的方式,说明糖酵解在不同生物体中的普遍性。 * **学习灵活性:** 提供从全面到简化多种学习选择,满足不同学习目标和背景的需求。 **适合人群:** 对植物呼吸作用、糖酵解过程及其在生物体内的作用感兴趣的学生和研究人员。
The NEW course with everything you need to know about Respiration in Plants Glycolysis and learn deep understanding of Glycolysis is the process in which glucose is broken down to produce energy. It produces two molecules of pyruvate, ATP, NADH and water. The process takes place in the cytoplasm of a cell and does not require oxygen. It occurs in both aerobic and anaerobic organisms.Glycolysis has ten steps, and depending on your interests-and the classes you're taking-you may want to know the details of all of them. However, you may also be looking for a greatest hits version of glycolysis, something that highlights the key steps and principles without tracing the fate of every single atom. Let's start with a simplified version of the pathway that does just that.In organisms that perform cellular respiration, glycolysis is the first stage of this process. However, glycolysis doesn't require oxygen, and many anaerobic organisms-organisms that do not use oxygen-also have this pathway.Suppose that we gave one molecule of glucose to you and one molecule of glucose to Lactobacillus acidophilus-the friendly bacterium that turns milk into yogurt. What would you and the bacterium do with your respective glucose molecules?Glycolysis has ten steps, and depending on your interests-and the classes you're taking-you may want to know the details of all of them. However, you may also be looking for a greatest hits version of glycolysis, something that highlights the key steps and principles without tracing the fate of every single atom. Let's start with a simplified version of the pathway that does just that.