School of Biosciences and Birmingham Institute of Forest Research, University of Birmingham, Birmingham, UK.
Research School of Biology, The Australian National University, Canberra, Australian Captial Territory, Australia.
Plant Cell Environ. 2024 Sep;47(9):3344-3364. doi: 10.1111/pce.14815. Epub 2024 Feb 6.
Gas exchange measurements enable mechanistic insights into the processes that underpin carbon and water fluxes in plant leaves which in turn inform understanding of related processes at a range of scales from individual cells to entire ecosytems. Given the importance of photosynthesis for the global climate discussion it is important to (a) foster a basic understanding of the fundamental principles underpinning the experimental methods used by the broad community, and (b) ensure best practice and correct data interpretation within the research community. In this review, we outline the biochemical and biophysical parameters of photosynthesis that can be investigated with gas exchange measurements and we provide step-by-step guidance on how to reliably measure them. We advise on best practices for using gas exchange equipment and highlight potential pitfalls in experimental design and data interpretation. The Supporting Information contains exemplary data sets, experimental protocols and data-modelling routines. This review is a community effort to equip both the experimental researcher and the data modeller with a solid understanding of the theoretical basis of gas-exchange measurements, the rationale behind different experimental protocols and the approaches to data interpretation.
气体交换测量使我们能够深入了解植物叶片中支撑碳和水通量的过程,这反过来又有助于从单个细胞到整个生态系统等各种尺度上理解相关过程。鉴于光合作用对全球气候讨论的重要性,(a)促进对广大社区使用的实验方法所依据的基本原则的基本理解,以及(b)确保在研究社区内的最佳实践和正确的数据解释非常重要。在这篇综述中,我们概述了可以通过气体交换测量来研究的光合作用的生化和生物物理参数,并提供了如何可靠地测量这些参数的分步指导。我们就使用气体交换设备的最佳实践提出了建议,并强调了实验设计和数据解释中潜在的陷阱。支持信息包含示例数据集、实验方案和数据建模例程。这篇综述是社区的一项努力,旨在使实验研究人员和数据建模人员都对气体交换测量的理论基础、不同实验方案背后的原理以及数据解释方法有一个坚实的理解。