Plant Research Laboratory, Michigan State University, East Lansing, MI, USA.
Department of Plant Biology, Michigan State University, East Lansing, MI, USA.
Methods Mol Biol. 2024;2790:1-26. doi: 10.1007/978-1-0716-3790-6_1.
Measurements of in vivo photosynthesis are powerful tools that probe the largest fluxes of carbon and energy in an illuminated leaf, but often the specific techniques used are so varied and specialized that it is difficult for researchers outside the field to select and perform the most useful assays for their research questions. The goal of this chapter is to provide a broad overview of the current tools available for the study of photosynthesis, both in vivo and in vitro, so as to provide a foundation for selecting appropriate techniques, many of which are presented in detail in subsequent chapters. This chapter will also organize current methods into a comparative framework and provide examples of how they have been applied to research questions of broad agronomical, ecological, or biological importance. This chapter closes with an argument that the future of in vivo measurements of photosynthesis lies in the ability to use multiple methods simultaneously and discusses the benefits of this approach to currently open physiological questions. This chapter, combined with the relevant methods chapters, could serve as a laboratory course in methods in photosynthesis research or as part of a more comprehensive laboratory course in general plant physiology methods.
活体光合作用测量是探测受光叶片中碳和能量最大通量的有力工具,但通常所使用的特定技术变化多样且专业化,以至于该领域以外的研究人员很难为其研究问题选择和执行最有用的测定方法。本章的目的是提供一个广泛的概述,介绍目前可用于活体和离体光合作用研究的工具,以便为选择适当的技术提供基础,其中许多技术在后面的章节中都有详细介绍。本章还将把当前的方法组织到一个比较框架中,并举例说明它们如何应用于具有广泛农艺学、生态学或生物学重要性的研究问题。本章最后认为,活体光合作用测量的未来在于能够同时使用多种方法,并讨论了这种方法对目前开放的生理学问题的好处。本章与相关的方法章节结合,可以作为光合作用研究方法的实验室课程,或作为更全面的一般植物生理学方法实验室课程的一部分。