日本地球惑星科学連合2025年大会

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[J] 口頭発表

セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS22] 生物地球化学

2025年5月27日(火) 15:30 〜 17:00 102 (幕張メッセ国際会議場)

コンビーナ:福島 慶太郎(福島大学)、木庭 啓介(京都大学生態学研究センター)、山下 洋平(北海道大学 大学院地球環境科学研究院)、大河内 直彦(海洋研究開発機構)、座長:福島 慶太郎(福島大学)、木庭 啓介(京都大学生態学研究センター)

16:45 〜 17:00

[MIS22-12] 酸性の森林土壌においてリンゴ酸とマンガンの添加が溶存有機物の生産を増加させる

*藤井 一至1、早川 智恵2 (1.福島国際研究教育機構、2.宇都宮大学)

キーワード:土壌、森林、溶存有機炭素、リグニン

Lignin solubilization by exoenzymes is a key process driving the production of dissolved organic carbon (DOC) in acidic forest soils. Two potent ligninolytic enzymes are lignin peroxidase (LiP) commonly found in woody debris and manganese peroxidase (MnP) commonly found in organic soil layers. MnP activity requires manganese and chelating organic acids (esp., malate) for stabilizing Mn3+ to oxidize lignin. We test whether manganese and malate addition can increase DOC production by increasing MnP activity. We collected throughfall and soil solution leached from the organic layers and measured the concentrations of DOC in throughfall [A], DOC from the organic horizon [B], DOC from the organic horizon amended with manganese solution [C], DOC from the organic horizon amended with manganese and MnP and malate solution [D], DOC from the organic horizon amended with manganese and MnP and citrate solution [E], and DOC from the organic horizon amended with LiP [F]. DOC derived from native enzyme activity was calculated as B–A, DOC derived from MnP-malate combination was calculated as D–C, DOC derived from MnP-citrate combination was calculated as E–C, and DOC derived from LiP activity was calculated as F–C. Despite the same dose of organic acids, MnP-malate addition lead to significantly higher DOC concentrations, compared to MnP-citrate addition. MnP could produce DOC at the comparable levels with LiP addition. We found that manganese and malate addition can increase lignin solubilization by MnP and DOC production.