日本地球惑星科学連合2024年大会

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[J] 口頭発表

セッション記号 A (大気水圏科学) » A-CG 大気海洋・環境科学複合領域・一般

[A-CG37] 陸域生態系の物質循環

2024年5月28日(火) 15:30 〜 16:45 201A (幕張メッセ国際会議場)

コンビーナ:寺本 宗正(鳥取大学乾燥地研究センター)、加藤 知道(北海道大学農学研究院)、市井 和仁(千葉大学)、伊勢 武史(京都大学フィールド科学教育研究センター)、座長:伊勢 武史(京都大学フィールド科学教育研究センター)

15:30 〜 15:45

[ACG37-07] Evaluation of plant physiological functions of multi-layered forests by active and passive chlorophyll fluorescence observations

*両角 友喜1野田 響1加藤 知道2村岡 裕由3 (1.国立環境研究所、2.北海道大学、3.岐阜大学)

キーワード:光学リモートセンシング、光合成

In temperate regions, forests often exhibit a distinct layer structure; trees in overstory, shrubs, herbs, and grasses in understory. Although the understory is characterized by a low light environment, it is expected that the plants inhabiting there have an important role in the carbon fixation of the whole forest. Thus, the light utilization of leaves of each layer and the vertical structure of the forest would be key to understanding the consequences between the structure and functions of forest ecosystems. A lot of studies have focused on the understory of dense tropical forests and not enough studies have been done in temperate forests. In the present study, we focused on temperate forests to investigate the photosynthetic activity of the understory. Active and passive chlorophyll fluorescence (chlF) was used to assess the plant physiological state of light use. This study aims to evaluate the functions of the understory by detecting the temporal change of fluorescence yield through two different approaches. The active chlF was detected by the pulse amplitude modulation method; the passive chlF (i.e., Solar-Induced chlF: SIF) was retrieved from the Fraunhofer-line approach using field spectroscopy measurements of oxygen A absorption band (760 nm wavelength). The preliminary results include leaf and canopy fluorescence yield at the dwarf bamboo understory in the deciduous broad-leaved forest in the northern Gifu region in spring-fall 2023. This measurement approach will be applied to the other forest types in the future to investigate the structural effect on carbon cycling over a broader scale.