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将茎气体交换与叶片叶绿素荧光测量进行田间整合,以研究原位光合作用的长期调控。

Field integration of shoot gas-exchange and leaf chlorophyll fluorescence measurements to study the long-term regulation of photosynthesis in situ.

作者信息

Oivukkamäki Jaakko, Aalto Juho, Pfündel Erhard E, Tian Manqing, Zhang Chao, Grebe Steffen, Salmon Yann, Hölttä Teemu, Porcar-Castell Albert

机构信息

Optics of Photosynthesis Laboratory, Institute for Atmospheric and Earth System Research (INAR)/Forest Sciences, Viikki Plant Science Center, Latokartanonkaari 7-9, 00014 University of Helsinki, Helsinki, Finland.

Hyytiälä Forestry Field Station, Hyytiäläntie 124, 00014 University of Helsinki, Korkeakoski, Finland.

出版信息

Tree Physiol. 2025 Jan 25;45(1). doi: 10.1093/treephys/tpae162.

Abstract

Understanding the diurnal and seasonal regulation of photosynthesis is an essential step to quantify and model the impact of the environment on plant function. Although the dynamics of photosynthesis have been widely investigated in terms of CO2 exchange measurements, a more comprehensive view can be obtained when combining gas-exchange and chlorophyll fluorescence (ChlF). Until now, integrated measurements of gas-exchange and ChlF have been restricted to short-term analysis using portable infrared gas analyzer systems that include a fluorometer module. In this communication we provide a first-time demonstration of long-term, in situ and combined measurements of photosynthetic gas-exchange and ChlF. We do so by integrating a new miniature pulse amplitude modulated-fluorometer into an existing system of automated chambers to track photosynthetic gas-exchange of leaves and shoots in situ. The setup is used to track the dynamics of the light and carbon reactions of photosynthesis at a 20-min resolution in leaves of silver birch (Betula pendula Roth) during summertime. The potential of the method is illustrated using the ratio between electron transport and net assimilation (ETR/ANET), which reflects the internal electron use efficiency of photosynthesis. The setup successfully captured the diurnal patterns in the ETR/ANET during summertime, including a large increase in noon ETR/ANET in response to a period of high temperatures and relatively low soil moisture, pointing to a drastic decrease in electron-use efficiency. The observations emphasize the value of combined and long-term in situ measurements of ChlF and gas-exchange, opening new opportunities to investigate, model and quantify the regulation of photosynthesis in situ and the connection between ChlF and photosynthetic gas-exchange. The next steps, potential and limitations of the approach are discussed.

摘要

了解光合作用的昼夜和季节调节是量化和模拟环境对植物功能影响的重要一步。尽管光合作用的动态变化已通过二氧化碳交换测量进行了广泛研究,但结合气体交换和叶绿素荧光(ChlF)可获得更全面的观点。到目前为止,气体交换和ChlF的综合测量仅限于使用包含荧光计模块的便携式红外气体分析仪系统进行短期分析。在本通讯中,我们首次展示了光合作用气体交换和ChlF的长期、原位和联合测量。我们通过将一种新型微型脉冲幅度调制荧光计集成到现有的自动气室系统中,以原位跟踪叶片和嫩枝的光合作用气体交换来实现这一点。该装置用于在夏季以20分钟的分辨率跟踪白桦(Betula pendula Roth)叶片光合作用的光反应和碳反应的动态变化。使用电子传递与净同化率(ETR/ANET)之比来说明该方法的潜力,该比值反映了光合作用的内部电子利用效率。该装置成功捕获了夏季ETR/ANET的昼夜模式,包括中午ETR/ANET因高温和相对较低的土壤湿度而大幅增加,这表明电子利用效率急剧下降。这些观察结果强调了ChlF和气体交换联合长期原位测量的价值,为原位研究、建模和量化光合作用调节以及ChlF与光合气体交换之间的联系开辟了新机会。本文还讨论了该方法的后续步骤、潜力和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c166/11775469/6739de1f7660/tpae162f1.jpg

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